Pharmacy Guide

Patient leaflets and SmPCs, drug interaction checker, official dosages and NHS pharmacy opening hours — all in one place.

Pharmacy Guide

Patient leaflets and SmPCs, drug interaction checker, official dosages and NHS pharmacy opening hours — all in one place.

← Back to all medicines

Potassium Chloride 0.15 % w/v and Glucose 5% w/v Solution for Infusion -BP

⚠ This medicine appears to have been discontinued

The electronic medicines compendium (emc) no longer publishes a Summary of Product Characteristics for this product, which usually means it is no longer marketed in the UK. The patient leaflet below is kept for reference, but the product may not be available.

If you were prescribed this medicine, other products containing Glucose monohydrate, Potassium chloride may still be available. Do not stop your treatment — ask your pharmacist or GP what to use instead.

Active substance: Glucose monohydrate, Potassium chloride

Source: electronic medicines compendium (emc)
Official leaflet: Read the PIL on emc

What it is and what it is used for

for 2. What you need to know before you are given Potassium 0.15 & Glucose Infusion 3. How you will be given Potassium 0.15 & Glucose Infusion 4. Possible side effects 5. How to store Potassium 0.15 & Glucose Infusion 6. Content of the pack and other information

in situations that may cause potassium chloride and water loss including:

  • when you cannot eat or drink, due to illness or after surgery
  • pronounced sweating due to high fever
  • extensive skin loss, as can occur in severe burns

What you need to know before you take it

Potassium 0.15 & Glucose Infusion Do NOT receive Potassium 0.15 & Glucose Infusion if you are suffering from any of the following conditions

  • higher levels of potassium in the blood than normal (hyperkalaemia)
  • higher levels of chloride in the blood than normal (hyperchloraemia)
  • severe kidney failure (when your kidneys do not work well and you require dialysis)
  • uncompensated heart failure. This is heart failure that is not adequately treated and causes symptoms such as: 1. What Potassium 0.15 & Glucose − shortness of breath Infusion is and what it is used − swelling of the ankles • Addison's disease (poor function of the adrenal gland. for The adrenal gland produces hormones that help to control the concentrations of the chemicals in the body). Potassium 0.15 & Glucose Infusion is a solution of
  • diabetes that is not adequately treated, allowing potassium chloride and glucose in water. Potassium your blood sugar levels to rise above normal chloride is a chemical substance (often called a "salt") (uncompensated diabetes) found in the blood. Glucose is one of the body's sources
  • states of glucose intolerance, for example: of energy. This solution for infusion provides 200 − metabolic stress (when the body's metabolism does kilocalories per litre. not function correctly, e.g. due to severe illness) Potassium 0.15 & Glucose Infusion is used as a source of − hyperosmolar coma (unconsciousness). This is a carbohydrate (sugar) in the prevention and treatment of: type of coma that can occur if you have diabetes
  • a loss of potassium from the body (potassium and do not receive enough medicine. depletion, e.g. after treatment with certain diuretics − a higher amount of sugar in the blood than normal [water tablets]) (hyperglycaemia)
  • a low level of potassium in the blood (hypokalaemia) − a higher amount of lactate in the blood than normal (hyperlactataemia)
  • if you are allergic to potassium chloride and glucose monohydrate or any other ingredients of this medicine (listed in Section 6). TH-30-02-216 1a

Warning and precautions

  • the amount of chemicals such as sodium and potassium in your blood (your plasma electrolytes)
  • the blood concentration of a substance called creatinine (your plasma creatinine)
  • the blood concentration of a substance called urea (your BUN levels)
  • the acidity of your blood and urine (your acid-base balance)
  • your heart tracing (ECG)

Please tell your doctor if you have or have had any of the following medical conditions:

  • heart failure
  • respiratory failure (lung disease)
  • any type of heart disease or poor heart function
  • poor kidney function (special monitoring may be required in the above conditions)
  • adrenocortical insufficiency (this disease of the adrenal gland affects hormones that control the concentration of chemicals in the body).
  • a loss of water from the body (acute dehydration, e.g. from vomiting or diarrhoea)
  • extensive tissue damage (as can occur in severe burns)
  • head injury within the past 24 hours
  • a high pressure within the skull (intracranial hypertension)
  • if you have recently had a stroke
  • allergy to corn (Potassium 0.15 & Glucose Infusion contains sugar derived from corn, see section 4)
  • if you have a condition that could cause high levels of vasopressin, a hormone regulating fluid in your body. You may have too much vasopressin in your body because, for example:
  • you have had a sudden and serious illness
  • you are in pain
  • you have had surgery
  • you have infections, burns or brain disease
  • you have diseases linked to your heart, liver, kidneys or central nervous system
  • because you are taking certain medicines (see also below "other medicines and Potassium 0.15 & Glucose Infusion"). This may increase the risk of low level of sodium in your blood and can lead to headache, nausea, seizures, lethargy, coma, swelling of the brain and death. Brain swelling increases the risk of death and brain damage. People who are at higher risk of brain swelling are:
  • children
  • women (particularly if you are of a fertile age)
  • people who have problems with their brain fluid levels, for example, because of meningitis, bleeding in the skull or a brain injury

Your doctor will take into account if you are receiving parenteral nutrition (nutrition given by infusion into a vein). During long term treatment with Potassium 0.15 & Glucose Infusion you may need to be given extra nutrition As Potassium 0.15 & Glucose Infusion contains sugar (glucose), it can cause a high level of sugar in the blood (hyperglycaemia). If this occurs, your doctor may:

  • adjust the speed of infusion
  • give you insulin to reduce the blood sugar levels This is particularly important if you are diabetic. Children Potassium 0.15 & Glucose Infusion should be given with special care in children. In newborns, especially born premature and with low birth weight are at increased risk of developing a too low or too high level of sugar in the blood (hypo or hyperglycemia) due to infusion of glucose solutions. Low level of sugar in the newborn can cause prolonged seizures, coma and brain damage. High level of sugar has been associated with bleeding into the brain, late onset bacterial and fungal infection, infection in the intestinal track (necrotizing enterocolitis), affects eyes (retinopathy of prematurity), lungs problems (bronchopulmonary dysplasia), prolonged length of hospital stay, and death. Pediatric patients should be closely monitored. In cases where normal regulation of the water content of the blood is disturbed due to increased secretion of Antidiuretic Hormone (ADH), the infusion of fluids with a low concentration of sodium chloride (hypotonic fluids) may result in a low level of sodium in the blood (hyponatraemia). This can lead to headache, nausea, seizures, lethargy, coma, swelling of the brain (cerebral oedema) and death; therefore these symptoms (acute symptomatic hyponatraemic encephalopathy) are considered a medical emergency.

Other medicines and Potassium 0.15 & Glucose Infusion

When you are given this infusion, your doctor will take blood and urine samples and monitor:

  • the amount of fluid in your body
  • the amount of sugar (glucose)
  • your vital signs

Tell your doctor or nurse if you are taking, have recently taken or might take any other medicines.

2a

It is particularly important that you inform your doctor if you are taking medicines that increase TH-30-02-216

the concentration of potassium in the blood, such as:

  • potassium-sparing diuretics (certain water tablets, e.g. amiloride, spironolactone, triamterene)
  • angiotensin converting enzyme (ACE) inhibitors (used to treat high blood pressure)
  • angiotensin II receptor antagonists (used to treat high blood pressure)
  • cyclosporin (used to prevent rejection of a transplant)
  • tacrolimus (used to prevent rejection of a transplant and to treat some skin diseases)
  • medicines that contain potassium (e.g. potassium supplements, salt substitutes containing potassium) Some medicines act on the hormone vasopressin. These may include:
  • anti-diabetic medication (chlorpropamide)
  • cholesterol medicine (clofibrate)
  • some cancer drugs (vincristine, ifosfamide, cyclophosphamide)
  • selective serotonin reuptake inhibitors (used to treat depression)
  • antipsychotics or opioids for severe pain relief
  • medicines for pain and/or inflammation (also known as NSAIDs)
  • medicines that imitate or strengthen the effects of vasopressin such as desmopressin (used to treat increased thirst and urination), terlipressin (used to treat bleeding of the gullet) and oxytocin (used to induce labour)
  • anti-epileptic medication (carbamazepine and oxcarbazepine)
  • diuretics (water tablets). Potassium 0.15 & Glucose Infusion must not be added or given through the same needle with citrate anticoagulated/preserved blood. This can damage the red blood cells or cause them to clump together.

Potassium 0.15 & Glucose Infusion with food and drink You should ask your doctor about what you can eat or drink.

Pregnancy, breast-feeding and fertility Ask your doctor or nurse for advice before taking this medicine. If you are pregnant or breast-feeding, think you may be pregnant or are planning to have a baby, ask your doctor or nurse for advice before taking this medicine. Changes in the potassium levels in your blood can affect how well your heart and your unborn baby's heart work. Your doctor will therefore carefully monitor the levels of the chemicals in your blood. Potassium 0.15 & Glucose Infusion can be given during pregnancy. The amount you are given must be carefully controlled by your doctor.

However, if another medicine is to be added to your solution for infusion during pregnancy or breast-feeding you should:

  • consult your doctor
  • read the Package Leaflet of the medicine that is to be added.

Driving and using machines Potassium 0.15 & Glucose Infusion does not affect your ability to drive or use machines.

How to take it

Potassium 0.15 & Glucose Infusion Potassium 0.15 & Glucose Infusion will be given to you by a doctor or nurse. Your doctor will decide on how much you need and when it is to be given. This will depend on your age, weight, condition, state of hydration (the amount of water in your body) and the reason for treatment. The amount you are given may also be affected by other treatments you are receiving. You should NOT be given Potassium 0.15 & Glucose Infusion if there are particles floating in the solution or if the pack is damaged in any way. The speed of infusion will be decided by your doctor. If you require a large volume or rapid infusion of Potassium 0.15 & Glucose Infusion, your doctor may monitor your ECG (heart tracing). Potassium 0.15 & Glucose Infusion will usually be given to you through a plastic tube attached to a needle in a vein. Usually a vein in your arm is used to give you the infusion. However, your doctor may use another method to give you the medicine. Before and during the infusion, your doctor will monitor:

  • potassium
  • the amount of fluid in your body
  • the acidity of your blood and urine
  • the amount of electrolytes in your body (particularly sodium, in patients with high levels of the hormone vasopressin, or if you are are taking other medicines which increase the effects of vasopressin). If you suffer from poor kidney function, you may receive a lower dose. Any unused solution should be thrown away. You should NOT be given an infusion of Potassium 0.15 & Glucose Infusion from a bag that has been partly used.

If you receive more Potassium 0.15 & Glucose Infusion than you should If you are given too much Potassium 0.15 & Glucose Infusion (over-infusion), or you are given your infusion too quickly, this TH-30-02-216 3a

may lead to the following symptoms:

  • water overload with build up of liquid in the tissues causing swelling
  • pins and needles in the arms and legs (paresthesia)
  • muscle weakness
  • an inability to move (paralysis)
  • an irregular heartbeat (cardiac arrhythmias)
  • heart block (a very slow heartbeat)
  • cardiac arrest (the heart stops beating; a lifethreatening situation)
  • confusion
  • acidification of the blood (acidosis) leading to tiredness, confusion, lethargy and increased breathing rate If you develop any of these symptoms you must inform your doctor immediately. Your infusion will be stopped and you will be given treatment depending on the symptoms. If a medicine has been added to your Potassium 0.15 & Glucose Infusion before over-infusion occurs, that medicine may also cause symptoms. You should read the Package Leaflet of the added medicine for a list of possible symptoms.

Stop receiving your Potassium 0.15 & Glucose Infusion Your doctor will decide when to stop giving you this infusion. If you have any further questions on the use of this product, ask your doctor.

Possible side effects

Like all medicines, Potassium 0.15 & Glucose Infusion can cause side effects, although not everybody gets them. The side effects that may occur due to the administration technique include:

  • fever (febrile response)
  • infection at the site of infusion
  • local pain or reaction (redness or swelling at the site of infusion)
  • irritation and inflammation of the vein into which the solution is infused (phlebitis). This can cause redness, pain or burning and swelling along the path of the vein into which the solution is infused.
  • the formation of a blood clot (venous thrombosis) at the site of infusion, which causes pain, swelling or redness in the area of the clot
  • escape of the infusion solution into the tissues around the vein (extravasation). This can damage the tissues and cause scarring.
  • an excess of fluid in the blood vessels

(hypervolaemia)

  • hypersensitivity reactions, including a serious allergic reaction called anaphylaxis (potential manifestation in patients with allergy to corn)
  • chills Low levels of sodium in the blood that may be acquired during hospitalization (nosocomial hyponatraemia) and related neurological disorders (acute hyponatremic encephalopathy). Hyponatraemiacan lead to irreversible brain injury and death due to cerebral oedema/swelling (see also in section 2 "warnings and precautions")

Reporting of side effects If you get any side effects talk to your doctor or nurse. This includes any possible side effects not listed in this leaflet. You can also report side effects directly via the national reporting options below. By reporting side effects you can help provide more information on the safety of this medicine. Ireland HPRA Pharmacovigilance Earlsfort Terrace IRL – Dublin 2 Tel: +353 1 6764971 Fax: +353 1 6762517 Website: www.hpra.ie e-mail: [email protected] Malta ADR Reporting Website: www.medicinesauthority.gov.mt/adrportal United Kingdom Yellow Card Scheme Website: www.mhra.gov.uk/yellowcard

How to store it

Potassium 0.15 & Glucose Infusion Keep this medicine out of the sight and reach of children. Potassium 0.15 & Glucose Infusion does not require special storage conditions. Potassium 0.15 & Glucose Infusion should NOT be given to you after the expiry date which is stated on the bag after EXP. The expiry date refers to the last day of that month. You should not be given Potassium 0.15 & Glucose Infusion, if there are particles floating in the solution or if the unit is damaged in any way. TH-30-02-216 4a

Baxter Healthcare Ltd. Caxton Way, Thetford Norfolk IP24 3SE United Kingdom

Contents of the pack and other information

What Potassium 0.15 & Glucose Infusion contains

Bieffe Medital Sabiñánigo Ctra de Biescas, Senegüé 22666 Sabiñanigo (Huesca) Spain

The active substances are:

  • potassium chloride: 1.5 g per litre
  • glucose (as monohydrate): 50 g per litre.

Manufacturers for Ireland:

The other ingredients are

  • hydrochloric acid, concentrated
  • water for injections

Baxter SA Boulevard René Branquart, 80 7860 Lessines Belgium

What Potassium 0.15 & Glucose Infusion looks like and contents of the pack

Bieffe Medital Sabiñánigo Ctra de Biescas, Senegüé 22666 Sabiñanigo (Huesca) Spain

Potassium 0.15 & Glucose Infusion is a clear solution, free from visible particles. It is supplied in polyolefin/ polyamide plastic bags (Viaflo). Each bag is wrapped in a sealed, protective, outer plastic overpouch.

This leaflet was last revised in June 2023

The bag sizes are:

  • 500 ml
  • 1000 ml

For information about Potassium 0.15 & Glucose Infusion or to request this leaflet in formats such as audio or large print please contact the Marketing Authorisation Holder: Tel: + 44 (0) 1635 206345.

The bags are supplied in cartons. Each carton contains one of the following quantities:

  • 20 bags of 500 ml
  • 10 or 12 bags of 1000 ml Not all pack sizes may be marketed

Marketing Authorisation Holder and Manufacturers Marketing Authorisation Holder : United Kingdom Baxter Healthcare Ltd Caxton Way, Thetford, Norfolk, IP24 3SE United Kingdom Ireland and Malta Baxter Holding B.V. Kobaltweg 49, 3542CE Utrecht, Netherlands Manufacturers for Great Britain: Baxter SA Boulevard René Branquart, 80 7860 Lessines Belgium

Baxter and Viaflo are trademarks of Baxter International lnc.

5a

TH-30-02-216

6a

TH-30-02-216

Potassium Chloride 0.15% w/v & Glucose 5% w/v Solution for Infusion BP The following information is intended for healthcare professionals only:

connected to the syringe. When using an infusion pump all clamps on the intravenous administration set must be closed before removing the administration set from the pump, or switching the pump off. This is required regardless of whether the administration set has an anti free flow device. The intravenous infusion device and administration equipment must be frequently monitored.

Handling and Preparation Use only if the solution is clear, without visible particles and if the container is undamaged. Administer immediately following the insertion of infusion set. Do not remove unit from overwrap until ready for use. The inner bag maintains the sterility of the product. Do not use plastic containers in series connections. Such use could result in air embolism due to residual air being drawn from the primary container before the administration of the fluid from the secondary container is completed. Pressurizing intravenous solutions contained in flexible plastic containers to increase flow rates can result in air embolism if the residual air in the container is not fully evacuated prior to administration. Use of a vented intravenous administration set with the vent in the open position could result in air embolism. Vented intravenous administration sets with the vent in the open position should not be used with flexible plastic containers.

Discard after single use. Discard any unused portion. Do not reconnect partially used bags.

1. Opening a. b.

c.

Remove the Viaflo container from the overpouch just before use. Check for minute leaks by squeezing inner bag firmly. If leaks are found, discard solution, as sterility may be impaired. Check the solution for limpidity and absence of foreign matters. If solution is not clear or contains foreign matters, discard the solution.

2. Preparation for administration

The solution should be administered with sterile equipment using an aseptic technique. The equipment should be primed with the solution in order to prevent air entering the system. Additives may be introduced before infusion or during infusion through the re-sealable medication port. When additive is used, verify isotonicity prior to parenteral administration. Thorough and careful aseptic mixing of any additive is mandatory. Solutions containing additives should be used immediately and not stored unless dilution has taken place in controlled and validated aseptic conditions. Adding medication or using an incorrect administration technique might cause the appearance of fever reactions due to the possible introduction of pyrogens. In case of adverse reaction, infusion must be stopped immediately.

Use sterile material for preparation and administration. a. Suspend container from eyelet support. b. Remove plastic protector from outlet port at bottom of container:

  • grip the small wing on the neck of the port with one hand,
  • grip the large wing on the cap with the other hand and twist,
  • the cap will pop off. c. Use an aseptic method to set up the infusion. d. Attach administration set. Refer to complete directions accompanying set for connection, priming of the set and administration of the solution.

Paediatric population In order to avoid potentially fatal over infusion of intravenous fluids to the neonate, special attention needs to be paid to the method of administration. When using a syringe pump to administer intravenous fluids or medicines to neonates, a bag of fluid should not be left 1b

TH-30-02-216

3. Techniques for injection of additive medications

5. Incompatibilities of additive medications As with all parenteral solutions, incompatibility of the additive medications with the solution must be assessed before addition. In the absence of compatibility studies, this solution must not be mixed with other medicinal products. It is the responsibility of the physician to judge the incompatibility of an additive medication with the Potassium 0.15 & Glucose Infusion, by checking for eventual colour change and/or eventual appearance of precipitate, insoluble complexes or crystals. The Instructions for Use of the medication to be added must be consulted. Before adding a drug, verify it is soluble and/or stable in water at the pH of the Potassium 0.15 & Glucose Infusion (pH: 3.5 to 6.5).

The solution should not be administered in the atrium or ventricle to avoid localised hyperkalaemia, but in large peripheral or central vein to diminish the risk of causing sclerosis. Warning: Additives may be incompatible (see paragraph 5 "Incompatibilities of additive medications" below). To add medication before administration a. Disinfect medication port. b. Using syringe with 19 gauge (1.10 mm) to 22 gauge (0.70 mm) needle, puncture re-sealable medication port and inject. c. Mix solution and medication thoroughly. For high-density medication such as potassium chloride, tap the ports gently while ports are upright and mix. Caution: Do not store bags containing added medications. To add medication during administration a. Close clamp on the set. b. Disinfect medication port. c. Using syringe with 19 gauge (1.10 mm) to 22 gauge (0.70 mm) needle, puncture re-sealable medication port and inject. d. Remove container from IV pole and/or turn to an upright position. e. Evacuate both ports by tapping gently while the container is in an upright position. f. Mix solution and medication thoroughly. g. Return container to in use position, re-open the clamp and continue administration.

As a guidance the following medications are incompatible with Potassium 0.15 & Glucose Infusion (non-exhaustive listing):

  • amphotericin B
  • dobutamine Glucose should not be administered through the same infusion equipment as whole blood as haemolysis and clumping can occur. Those additives known to be incompatible should not be used.

4. In-use shelf life (Additives) Chemical and physical stability of any additive medication at the pH of the Potassium 0.15 & Glucose Infusion in the Viaflo container should be established prior to use. From a microbiological point of view, the diluted product must be used immediately unless dilution has taken place in controlled and validated aseptic conditions. If not used immediately, in-use storage times and conditions are the responsibility of the user.

Baxter and Viaflo are trademarks of Baxter International lnc.

2b

TH-30-02-216

Frequently asked questions about Potassium Chloride 0.15 % w/v and Glucose 5% w/v Solution for Infusion -BP

How do I take Potassium Chloride 0.15 % w/v and Glucose 5% w/v Solution for Infusion -BP?

Potassium Chloride 0.15 % w/v and Glucose 5% w/v Solution for Infusion -BP comes as infusion. Always follow the dose your doctor or pharmacist has given you, and read the leaflet that comes with the medicine.

What is the active substance in Potassium Chloride 0.15 % w/v and Glucose 5% w/v Solution for Infusion -BP?

The active substance in Potassium Chloride 0.15 % w/v and Glucose 5% w/v Solution for Infusion -BP is glucose monohydrate, potassium chloride.

Are there equivalent medicines to Potassium Chloride 0.15 % w/v and Glucose 5% w/v Solution for Infusion -BP?

Medicines with the same active substance, strength and form include: 5% GLUCOSE INTRAVENOUS INFUSION SOLUTION, Potassium Chloride 0.15 % w/v and Glucose 10 % w/v Solution for Infusion BP, Potassium Chloride 0.15 % w/v, Sodium Chloride 0.18 % w/v and Glucose 4% w/v, Solution for Infusion. In total there are 26 equivalent products. They are interchangeable only if your prescriber or pharmacist says so.

Where does this information come from?

This leaflet reproduces the patient information leaflet approved for Potassium Chloride 0.15 % w/v and Glucose 5% w/v Solution for Infusion -BP, as published on the electronic medicines compendium (emc). The version printed inside your medicine’s packaging is the one that applies to you.

Can I get Potassium Chloride 0.15 % w/v and Glucose 5% w/v Solution for Infusion -BP without a prescription?

Whether a medicine is available over the counter or on prescription only depends on its licence. Check the leaflet, or ask your pharmacist — they can tell you straight away.

About this leaflet

The text above reproduces the patient information leaflet approved for this medicine, restructured for easier reading.

Medical disclaimer: This page is for information only and does not replace advice from your doctor or pharmacist. Always read the leaflet supplied with your medicine. If you are unwell, call NHS 111; in an emergency, call 999.

Medicines with the same active substance: Glucose monohydrate (60 medicines), Glucose monohydrate, potassium chloride (3 medicines), Potassium chloride (66 medicines)
See every medicine containing this substance, or browse the full A–Z of active substances.
⚕For healthcare professionals — Summary of Product Characteristics (SmPC)Full SmPC: dosage, interactions, contraindications, warnings+
Technical information intended for healthcare professionals (doctors and pharmacists). The Summary of Product Characteristics (SmPC) is the official document approved by the MHRA/EMA. It does not replace the patient leaflet or a doctor’s advice.

4.1. Therapeutic indications

Prevention and treatment of potassium depletion and/or hypokalaemia in cases where supply of water and carbohydrates is required due to restriction of the intake of fluids and electrolytes by normal routes.

4.2. Posology and method of administration

Posology

Adults, the Elderly and Children

The choice of specific potassium chloride and glucose concentration, dosage, volume, rate and duration of administration depends on the age, weight, and clinical conditions of the patient, concomitant therapy, and administration should be determined by a physician. For patients with electrolyte and glucose abnormalities and for paediatric patients, consult a physician experienced in intravenous fluid therapy.

Doses may be expressed in terms of mEq or mmol of potassium, mass of potassium or mass of potassium salt:

1g KCl = 525 mg of K+ or 13.4 mEq or 13.4 mmol of K+ and Cl- .

1 mmol K+ = 39.1 mg K+

General posology

The recommended dosage for the treatment of carbohydrates and fluid depletion is :

- for adults : 500 ml to 3 Litres/24h

Use in Paediatric Population:

- 0-10 kg body weight : 100 ml/kg/24h

- 10-20 kg body weight : 1000 ml + (50 ml /kg over 10 kg) /24h

- > 20 kg body weight : 1500 ml + (20 ml/kg over 20 kg)/24h

The infusion rate should not exceed the patient's glucose oxidation capacities in order to avoid hyperglycaemia. Therefore, the maximum dose ranges from 5mg/kg/min for adults to 10-18 mg/kg/min for babies and children depending on the age and the total body mass.

The infusion rate and volume depends on the age, weight, clinical and metabolic conditions of the patient, concomitant therapy and should be determined by the consulting physician experienced in paediatric intravenous fluid therapy (see Section 4.4).

Posology for prevention and treatment of potassium depletion

Typical dose of potassium for the prevention of hypokalaemia may be up to 50 mmols daily and similar doses may be adequate in mild potassium deficiency. The maximal recommended dose of potassium is 2 to 3 mmol/kg/24H.

When used for the treatment of hypokalaemia, the recommended dosage is 20 mmols of potassium over 2 to 3 hours (i.e. 7-10 mmol/h) under ECG control.

The maximum recommended administration rate should not exceed 15-20 mmol/h.

Patient with renal impairment should receive lower doses.

In any case, the dosage given under “General Posology” should not be exceeded.

Method of administration

The administration is performed by intravenous route using sterile and non-pyrogenic equipment.

Intravenous potassium should be administered in a large peripheral or central vein to diminish the risk of causing sclerosis. If infused through central vein, be sure the catheter is not in the atrium or ventricle to avoid localized hyperkalaemia.

Solutions containing potassium should be administered slowly.

Do not administer unless the solution is clear and the seal is intact (see section 6.6).

When introducing additives, compatibility must be confirmed before use (see section 6.2 and 6.6).

Rate of administration

As administered intravenously, potassium should not be given faster than 15 to 20 mmols/h to avoid dangerous hyperkalaemia. A gradual increase of flow rate should be considered when starting administration of glucose-containing products.

Monitoring

Fluid balance, serum glucose, serum sodium and other electrolytes should be monitored before and during administration, especially in patients with increased non-osmotic vasopressin release (syndrome of inappropriate antidiuretic hormone secretion, SIADH) and in patients co-medicated with vasopressin agonist drugs due to the risk of hyponatraemia. Monitoring of serum sodium is particularly important for physiologically hypotonic fluids.

Potassium Chloride 0.15 % w/v and Glucose 5% w/v Solution may become extremely hypotonic after administration due to glucose metabolisation in the body (see sections 4.4, 4.5 and 4.8).

Adequate urine flow must be ensured and careful monitoring of plasma-potassium and other electrolyte concentrations is essential. Higher dosage or high speed infusion must be performed under ECG control. Electrolyte supplementation may be indicated according to the clinical needs of the patient.

4.3. Contraindications

The solution is contra-indicated in patients presenting with:

• Known hypersensitivity to the product

• Hyperkalaemia

• Clinically significant hyperglycaemia

• Hyperchloremia that is not related to the concentration effect associated to a volume depletion

• Severe renal insufficiency (with oliguria/anuria)

• Uncompensated cardiac failure

• Addison's disease.

The solution is also contraindicated in case of uncompensated diabetes, other known glucose intolerances (such as metabolic stress situations), hyperosmolar coma and hyperlactatemia.

4.4. Special warnings and precautions for use

Glucose intravenous infusions are usually isotonic solutions. In the body, however, glucose containing fluids can become extremely physiologically hypotonic due to rapid glucose metabolization (see section 4.2).

Depending on the tonicity of the solution, the volume and rate of infusion and depending on a patient's underlying clinical condition and capability to metabolize glucose, intravenous administration of glucose can cause electrolyte disturbances most importantly hypo- or hyperosmotic hyponatraemia.

Hyponatraemia

Patients with non-osmotic vasopressin release (e.g. in acute illness, pain, post-operative stress, infections, burns, and CNS diseases), patients with heart-, liver- and kidney diseases and patients exposed to vasopressin agonists (see section 4.5) are at particular risk of acute hyponatraemia upon infusion of hypotonic fluids.

Acute hyponatraemia can lead to acute hyponatraemic encephalopathy (brain oedema) characterized by headache, nausea, seizures, lethargy and vomiting. Patients with brain oedema are at particular risk of severe, irreversible and life-threatening brain injury.

Children, women in the fertile age and patients with reduced cerebral compliance (e.g. meningitis, intracranial bleeding, and cerebral contusion) are at particular risk of the severe and life-threatening brain swelling caused by acute hyponatraemia.

Rapid correction of hyponatremia may cause serious neurologic complications, in particular in paediatric patients (see Paediatric Use).

Hypo and hyperosmolality, serum electrolytes and water imbalance

Depending on the volume and rate of infusion and depending on a patient's underlying clinical condition and capability to metabolize glucose, intravenous administration of Potassium Chloride 0.15% w/v and Glucose 5% w/v solution may cause:

• Hypo-osmolality

• Hyperosmolality, osmotic diuresis and dehydration

• Electrolyte disturbances such as

o Hyponatraemia (see Hyponatraemia),

o Hypophosphatemia,

o Hypomagnesemia,

• Acid-base imbalance

• Overhydration/hypervolemia and, for example, congested states, including central (e.g., pulmonary congestion) and peripheral edema. Particular caution should be taken in patients with conditions that may cause sodium retention, fluid overload, and edema (central and peripheral).

• Hyponatremia and a decrease in extracellular sodium concentrations related to hyperglycaemia causing a transcellular shift of water.

• Infusion of Potassium Chloride 0.15% w/v and Glucose 5% w/v solution corresponds to the increasing body's load of free water, possibly leading to hypoosmotic hyponatremia.

Clinical evaluation and periodic laboratory determinations may be necessary to monitor changes in fluid balance, electrolyte concentrations, and acid-base balance during prolonged parenteral therapy or whenever the condition of the patient or the rate of administration warrants such evaluation.

Particular caution is advised in patients at increased risk of and from water and electrolyte disturbances that could be aggravated by increased free water load.

Hyperglycaemia

Rapid administration of glucose solutions may produce substantial hyperglycaemia and hyperosmolar syndrome. In order to avoid hyperglycaemia the infusion rate should not exceed the patient's ability to utilize glucose.

To reduce the risk of hyperglycaemia-associated complications, the infusion rate must be adjusted and/or insulin administered if blood glucose levels exceed levels considered acceptable for the individual patient.

Intravenous glucose should be administered with caution in patients with, for example:

• impaired glucose tolerance (such as in diabetes mellitus, renal impairment, or in the presence of sepsis, trauma, or shock),

• severe malnutrition (risk of precipitating a refeeding syndrome),

• thiamine deficiency, e.g., in patients with chronic alcoholism (risk of severe lactic acidosis due to impaired oxidative metabolism of pyruvate),

• water and electrolyte disturbances that could be aggravated by increased glucose and/or free water load

Other groups of patients in whom Potassium Chloride 0.15% w/v and Glucose 5% w/v solution should be used with caution include:

• Patients with ischemic stroke. Hyperglycaemia has been implicated in increasing cerebral ischemic brain damage and impairing recovery after acute ischemic strokes.

• Patients with severe traumatic brain injury (in particular during the first 24 hours following the trauma). Early hyperglycaemia has been associated with poor outcomes in patients with severe traumatic brain injury.

• Newborns (See Paediatric glycaemia-related issues).

Prolonged intravenous administration of glucose and associated hyperglycaemia may result in decreased rates of glucose-stimulated insulin secretion.

Infusion of solutions containing glucose could be contraindicated in the first 24 hours following head trauma and blood glucose concentration should be closely monitored during intracranial hypertension episodes.

Administration of glucose containing solutions may lead to hyperglycemia. In this case, it is recommended not to use this solution after acute ischemic strokes as hyperglycemia has been implicated in increasing cerebral ischemic brain damage and impairing recovery.

Hyperkalaemia

Caution should be taken to patients with conditions predisposing to hyperkalaemia and/or associated with increased sensitivity to potassium, such as patients with:

• acute dehydration,

• extensive tissue injury or burns,

• certain cardiac disorders such as congestive heart failure or atrioventricular (AV) block (especially if they receive digitalis),myocardial infarction

• potassium-aggravated skeletal muscle channelopathies (e.g., Hyperkalaemic periodic paralysis, paramyotonia congenita, and potassium-aggravated myotonia/paramyotonia).

• Renal or adrenocortical insufficiency

Caution should be taken to patients who are at risk of experiencing hyperosmolality, acidosis, or undergoing correction of alkalosis (conditions associated with a shift of potassium from intracellular to extracellular space) and patients treated concurrently or recently with agents or products that can cause hyperkalaemia (see Interactions with Other Medicinal Products and Other Forms of Interaction, Section 4.5).

Caution should be taken for patients with cardiac arrhythmia. Arrhythmias can develop at any time during hyperkalaemia. Frequently, mild or moderate hyperkalaemia is asymptomatic and may be manifested only by increased serum potassium concentrations and, possibly, characteristic ECG changes.

Regular monitoring of clinical status, blood glucose level, plasma electrolyte concentrations, plasma creatinine levels, BUN level, acid-base balance and ECG is essential in patients receiving potassium therapy, particularly those with cardiac or renal impairment.

Hypokalaemia

The infusion Potassium Chloride 0.15% w/v and Glucose 5% w/v solution may result in reduction in potassium level worsening hypokalaemia. Monitor patient for signs of arrhythmias, muscle weakness, paralysis, heart block, and rhabdomyolysis, particularly:

• in persons with metabolic alkalosis,

• in persons with thyrotoxic or hypokalemic periodic paralysis,

• in persons with increased gastrointestinal losses (e.g., diarrhoea, vomiting),

• in persons on prolonged low potassium diet (e.g., undernourished or cachectic patients),

• in persons with primary hyperaldosteronism,

• in patients treated with medications that increase the risk of hypokalaemia (e.g. hydrochlorothiazide, loop diuretics, beta-2 agonists, or insulin).

Hypersensitivity Reactions

• Hypersensitivity/infusion reactions, including anaphylaxis, have been reported with Potassium Chloride 0.15% w/v and Glucose 5% w/v Solution (see section 4.8).

• Stop the infusion immediately if signs or symptoms of hypersensitivity/infusion reactions develop. Appropriate therapeutic countermeasures must be instituted as clinically indicated.

• Solutions containing glucose should be used with caution in patients with known allergy to corn or corn products.

Refeeding syndrome

Refeeding severely undernourished patients may result in the refeeding syndrome that is characterized by the shift of potassium, phosphorus, and magnesium intracellularly as the patient becomes anabolic. Thiamine deficiency and fluid retention may also develop. Careful monitoring and slowly increasing nutrient intake while avoiding overfeeding can prevent these complications.

Paediatric Use

The infusion rate and volume depends on the age, weight, clinical and metabolic conditions of the patient, concomitant therapy, and should be determined by a consulting physician experienced in paediatric intravenous fluid therapy.

Paediatric glycaemia-related issues

• Newborns, especially those born premature and with low birth weight, are at increased risk of developing hypo- or hyperglycaemia. Close monitoring during treatment with intravenous glucose solutions is needed to ensure adequate glycaemic control, in order to avoid potential long term adverse effects (see section 4.6).

• Hypoglycaemia in the newborn can cause, e.g.,

o prolonged seizures,

o coma, and

o cerebral injury.

• Hyperglycaemia has been associated with

o cerebral injury, including intra-ventricular haemorrhage,

o late onset bacterial and fungal infection,

o retinopathy of prematurity,

o necrotizing enterocolitis,

o increased oxygen requirements,

o prolonged length of hospital stay

o death

Paediatric hyponatraemia-related issues

• Children (including neonates and older children) are at increased risk of developing hyponatraemia as well as for developing hyponatraemic encephalopathy.

• The infusion of hypotonic fluids together with the non-osmotic secretion of ADH may result in hyponatraemia.

• Acute hyponatraemia can lead to acute hyponatraemic encephalopathy (brain edema) characterized by headache, nausea, seizures, lethargy and vomiting. Patients with brain edema are at particular risk of severe, irreversible and life-threatening brain injury.

• Plasma electrolyte concentrations should be closely monitored in the paediatric population.

• Rapid correction of hyponatraemia is potentially dangerous (risk of serious neurologic complications). Dosage, rate, and duration of administration should be determined by a physician experienced in paediatric intravenous fluid therapy.

In order to avoid potentially fatal over infusion of intravenous fluids to the neonate, special attention needs to be paid to the method of administration. When using a syringe pump to administer intravenous fluids or medicines to neonates, a bag of fluid should not be left connected to the syringe.

When using an infusion pump all clamps on the intravenous administration set must be closed before removing the administration set from the pump, or switching the pump off. This is required regardless of whether the administration set has an anti free flow device.

The intravenous infusion device and administration equipment must be frequently monitored.

Blood

Potassium Chloride 0.15% w/v and Glucose 5% w/v Solution should not be administered simultaneously with blood through the same administration set because of the possibility of pseudoagglutination or haemolysis.

Due to the risk of pseudo-agglutination precipitated by its glucose content, Potassium Chloride 0.15 % w/v and Glucose 5% w/v Solution must not be added to or administered simultaneously through the same tubing with citrate anticoagulated/preserved blood.

Elderly Use

When selecting the type of infusion solution and the volume/rate of infusion for an elderly patient, consider that elderly patients are generally more likely to have cardiac, renal, hepatic, and other diseases or concomitant drug therapy.

4.5. Interaction with other medicinal products and other forms of interaction

No studies have been conducted by Baxter.

Both the glycaemic effects and its effects on water and electrolyte balance should be taken into account when using Potassium Chloride 0.15% w/v and Glucose 5% w/v Solution in patients treated with other substances that affect glycaemic control, or fluid and/or electrolyte balance.

Potassium Chloride 0.15% w/v and Glucose 5% w/v Solution should be used with caution in patients treated concurrently or recently with agents or products that can cause Hyperkalaemia or increase the risk of hyperkalaemia, such as potassium sparing diuretics (e.g. amiloride, spironolactone, triamterene) corticosteroids, ACE inhibitors, ciclosporin, tacrolimus and drugs that contain potassium.

Administration of potassium in patients treated with such agents is associated with an increased risk of severe and potentially fatal hyperkalaemia, in particular in the presence of other risk factors for hyperkalaemia.

Regarding medications that increase the risk of hyponatraemia or sodium and fluid retention, such as corticosteroids, see Special Warnings and Precautions for Use.

Glucose should not be administered through the same infusion equipment as whole blood as haemolysis and clumping can occur (see section 4.4).

Drugs leading to an increased vasopressin effect

The below listed drugs increase the vasopressin effect, leading to reduced renal electrolyte free water excretion and increase the risk of hospital acquired hyponatraemia following inappropriately balanced treatment with i.v. fluids (see sections 4.2, 4.4 and 4.8).

• Drugs stimulating vasopressin release, e.g.: Chlorpropamide, clofibrate, carbamazepine, vincristine, selective serotonin reuptake inhibitors, 3.4-methylenedioxy-N-methamphetamine, ifosfamide, antipsychotics, narcotics

• Drugs potentiating vasopressin action, e.g.: Chlorpropamide, NSAIDs, cyclophosphamide

• Vasopressin analogues, e.g.: Desmopressin, oxytocin, terlipressin

Other medicinal products increasing the risk of hyponatraemia also include diuretics in general and antiepileptics such as oxcarbazepine.

4.6. Fertility, pregnancy and lactation

Pregnancy

Intrapartum maternal intravenous glucose infusion may result in foetal hyperglycaemia and metabolic acidosis as well as rebound neonatal hypoglycaemia due to foetal insulin production (see paediatric use).

The potential risks and benefits for each specific patient should be carefully considered before administration.

Fertility

There is no information on the effects of Potassium Chloride 0.15% w/v and Glucose 5% w/v Solution on fertility.

Lactation

There is no information on the effects of Potassium Chloride 0.15% w/v and Glucose 5% w/v Solution on lactation.

Hyperkalemic and hypokalemic serum levels lead to impaired cardiac function of the maternal and foetal hearts. Therefore, the maternal electrolyte levels are to be controlled regularly.

As long as the maternal electrolyte serum levels are kept within the physiological range, there are no potential concerns regarding administration of Potassium Chloride 0.15% and Glucose 5% solution during pregnancy and lactation.

Potassium Chloride 0.15 % w/v and Glucose 5% w/v Solution should be administrated with special caution for pregnant women during labour particularly if administered in combination with oxytocin due to the risk of hyponatraemia (see section 4.4, 4.5 and 4.8).

4.7. Effects on ability to drive and use machines

There is no information on the effects of Potassium Chloride 0.15% w/v and Glucose 5% w/v Solution on the ability to operate an automobile or other heavy machinery.

4.8. Undesirable effects

The following adverse reactions have been reported in the post-marketing experience, listed by MedDRA System Organ Class (SOC), then by Preferred Term in order of severity, where feasible.

Frequencies cannot be estimated from the available data as all listed adverse reactions are based on spontaneous reporting.

Table 1 Tabulated list of adverse reactions

System Organ Class

Adverse reactions

(Preferred terms)

Frequency

Immune system disorders

Anaphylactic reaction**

Hypersensitivity**

Not known

Metabolism and nutrition disorders

Hypokalaemia

hospital acquired

Hyponatraemia***

Nervous system disorders

Hyponatraemic encephalopathy***

General disorders and administration site conditions

Infusion site reactions including, Infusion site pain, Infusion site vesicles, Infusion site pruritus, Infusion site phlebitis, Chills, Pyrexia

Cardiac disorders

Cardiac arrest*

(*) as a manifestation of rapid intravenous administration and/or of hyperkalaemia

(**) Potential manifestation in patients with allergy to corn, see section 4.4.

(***) Hospital acquired hyponatraemia may cause irreversible brain injury and death due to development of acute hyponatraemic encephalopathy (see sections 4.2 and 4.4).

Venous thrombosis, extravasation, hypervolaemia, sweating, thrombophlebitis, vein irritation and hyperkalaemia have been reported in the post marketing experience with other solutions of similar composition.

Reporting of suspected adverse reactions

Reporting suspected adverse reactions after authorisation of the medicinal product is important. It allows continued monitoring of the benefit/risk balance of the medicinal product. Healthcare professionals are asked to report any suspected adverse reactions via:

United Kingdom

Yellow Card Scheme

Website: www.mhra.gov.uk/yellowcard or search for MHRA Yellow Card in the Google Play or Apple App Store

4.9. Overdose

Excess administration of Potassium Chloride 0.15% w/v and Glucose 5% w/v Solution can cause:

• Hyperglycaemia adverse effects on water and electrolyte balance, and corresponding complications. For example, severe hyperglycaemia and severe dilutional hyponatraemia and their complications, can be fatal.

• Hyponatraemia (which can lead to CNS manifestations including seizures, coma, cerebral edema and death).

• Fluid overload (which can lead to central and/or peripheral edema).

• Hyperkalaemia, if hyperkalaemia is present or suspected, discontinue the infusion immediately and institute close ECG, laboratory and other monitoring and, as necessary, corrective therapy to reduce serum potassium levels. Manifestations of hyperkalaemia may include:

- disturbances in cardiac conduction and arrhythmias, including bradycardia, heart block, asystole, ventricular tachycardia, ventricular fibrillation

- hypotension

- muscle weakness up to and including muscular and respiratory paralysis, paresthesia of extremities gastrointestinal symptoms (ileus, nausea, vomiting, abdominal pain)

• Arrhythmias and conduction disorders, in addition to arrhythmias and conduction disorders, the ECG shows progressive changes that occur with increasing potassium levels. Possible changes include:

- peaking of T waves,

- loss of P waves, and

- QRS widening

However, the correlation between potassium levels and ECG changes is not precise, and whether or at which potassium level certain ECG signs develop depends on factors such as patient sensitivity, the presence of other electrolyte disorders, and the rapidity of the development of hyperkalaemia. The presence of any ECG findings that are suspected to be caused by hyperkalaemia should be considered a medical emergency.

• See also section 4.4 and 4.8

▪ When assessing an overdose, any additives in the solution must also be considered.

▪ Clinically significant overdose of Potassium Chloride 0.15% w/v and Glucose 5% w/v Solution may, therefore, constitute a medical emergency.

Interventions include discontinuation of Potassium Chloride 0.15% w/v and Glucose 5% w/v Solution administration, dose reduction, administration of insulin and other measures as indicated for the specific clinical constellation.

💬 Ask about this leaflet

Ask anything about Potassium Chloride 0.15 % w/v and Glucose 5% w/v Solution for Infusion -BP. The assistant answers only from this leaflet — if the leaflet does not cover it, it will say so. It does not give medical advice.

Answers come from the patient leaflet published on the electronic medicines compendium (emc). They are not medical advice. Ask a pharmacist or your GP if you are unsure. For urgent help call NHS 111, or 999 in an emergency.

Pharmacies in major towns and cities — see the list
Pharmacies by county and region — see the full list

Browse all 2,009 towns and cities →