MAGNESIUM SULPHATE INJECTION BP 50%W/V
MAGNESIUM SULPHATE HEPTAHYDRATE
What it does
Heptahydrate is a substance used in various medicinal products.
Commonly used for: treatment of certain conditions related to hydration, used in pharmaceutical formulations
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Source: Pharmacy and Poisons Board · fetched 2026-01-28 21:05:53 · updated 2026-03-23 03:50:55
About this medicine
Heptahydrate is a substance used in various medicinal products.
What it treats
- treatment of certain conditions related to hydration
- used in pharmaceutical formulations
How it works
Heptahydrate helps to maintain or restore hydration in the body.
Who it's for
This substance is generally used for individuals needing hydration support.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
Clinical monograph: hepta
BNF-referencedHeptachlor is a polychlorinated cyclodiene insecticide, primarily used for pest control. It has been largely discontinued in many countries due to its toxicity and environmental persistence. Heptachlor is known to affect the central nervous system of insects and can have significant implications for human and environmental health.
Dosage
Children: Refer to BNF for Children for specific dosing guidance, as heptachlor usage is largely restricted.
Adults: Refer to BNF for specific dosing information, as heptachlor is not commonly used in clinical settings due to safety concerns.
Mechanism of action
Heptachlor mimics the action of picrotoxin, inhibiting gamma-aminobutyric acid (GABA)-stimulated chloride uptake, which leads to nerve excitation in insects. It competes for binding sites in the brain, causing central nervous system stimulation and resulting in increased transmitter release. This mechanism can lead to increased excitability and potentially toxic effects in target organisms.
Pharmacodynamics
As a neurotoxic agent, heptachlor causes hyperactivity and central nervous system stimulation in insects. Its effects on GABA receptors disrupt normal inhibitory neurotransmission, resulting in uncontrolled neuronal firing. While primarily studied in insects, similar mechanisms may be inferred in higher organisms, including potential neurotoxic effects in humans.
Pharmacokinetics
Heptachlor is lipophilic, leading to significant bioaccumulation in organisms and environmental persistence. It is metabolized in the liver to heptachlor epoxide, which is the more toxic form. The elimination half-life varies but can be prolonged due to its fat solubility and tendency to accumulate in fatty tissues.
Pregnancy
Heptachlor is classified as a category B drug. Animal studies have not shown any harm to the fetus, but there are no adequate and well-controlled studies in pregnant women. Use only if clearly needed.
Breast-feeding
It is not known if heptachlor is excreted in human milk. Caution should be exercised when administering heptachlor to a nursing mother.
Storage
Store in a cool, dry place, away from direct sunlight. Keep container tightly closed and out of reach of children.
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Clinical monograph: heptahydrate
Heptahydrate, commonly referred to as heptahydrate salts, refers to a class of compounds that contain seven molecules of water in their crystalline structure. These compounds are used in various pharmaceutical formulations and can influence the solubility and bioavailability of the active ingredients. The presence of water molecules can also impact the stability and shelf-life of the drug formulation.
Dosage
Children: Refer to specific formulation guidelines for pediatric dosing, as heptahydrate is generally used in conjunction with other active ingredients.
Adults: Refer to specific formulation guidelines for dosing, as heptahydrate is typically a component rather than an active agent.
Mechanism of action
Heptahydrate itself does not have a specific pharmacological action as it is generally a structural component in formulations. However, the active ingredients in heptahydrate formulations may exert their effects through various mechanisms depending on their specific pharmacology.
Pharmacodynamics
Pharmacodynamics of heptahydrate salts is largely influenced by the active pharmaceutical ingredients they are combined with. The presence of water molecules can enhance solubility, thereby improving the absorption and overall efficacy of the drug when administered. The hydration state can also play a role in the release profile of the drug from solid dosage forms.
Pharmacokinetics
The pharmacokinetics of heptahydrate formulations depend on the specific active ingredient they harbor. The dissolution rate can be affected by the hydration state, leading to variations in absorption rates. Generally, the pharmacokinetic profile would include absorption, distribution, metabolism, and excretion characteristics of the active pharmaceutical ingredients rather than the heptahydrate component itself.
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Molecular reference: hepta
PubChem CID 3589Molecular formula: C10H5Cl7
Mechanism of action
EVIDENCE INDICATES THAT CYCLODIENE-TYPE-INSECTICIDES, EG, HEPTACHLOR EPOXIDE, MIMIC ACTION OF PICROTOXININ. THESE INSECTICIDES INHIBIT THE GAMMA-AMINOBUTYRIC ACID-STIMULATED CHLORIDE UPTAKE IN COXAL MUSCLE OF AMERICAN COCKROACH, & DIRECTLY COMPETE AGAINST LABELED DIHYDROPICROTOXININ FOR BINDING IN THE RAT BRAIN SYNAPTOSOMES. MOREOVER, SEVERAL CYCLODIENE RESISTANT INSECT STRAINS ARE RESISTANT TO PICROTOXININ. THIS CROSS-RESISTANCE IS SPECIFIC TO PICROTOXININ & DOES NOT EXTEND TO OTHER NEUROEXCITANTS. THESE INSECTICIDES, LIKE PICROTOXININ, CAUSE CENTRAL NERVOUS EXCITATION BY STIMULATING TRANSMITTER RELEASE. THESE RESULTS INDICATE THAT SOME OF THE NERVE EXCITATION SYMPTOMS THAT INSECTICIDES CAUSE ARE LIKELY DUE TO THEIR INTERACTION WITH PICROTOXININ RECEPTOR. HEPTACHLOR WAS EVALUATED FOR GENOTOXICITY & EPIGENETIC MEMBRANE EFFECTS. IT WAS NON-GENOTOXIC IN ARLHGPRT MUTAGENESIS ASSAY IN WHICH THE GENOTOXIC CARCINOGENS 7,12-DIMETHYLBENZ(A)ANTHRACENE & BENZO(A)PYRENE INDUCED SIGNIFICANT INCR IN MUTANT INCIDENCE. HEPTACHLOR INHIBITED INTERCELLULAR COMMUNICATION BETWEEN CULTURED LIVER CELLS, A PROPERTY DEMONSTRATED BY MANY TUMOR PROMOTING AGENTS, WHEREAS, BENZO(A)PYRENE DID NOT PRODUCE THIS EPIGENETIC EFFECT. The actions of the polychlorocycloalkane insecticide heptachlor, and its epoxide metabolite, were examined on GABA receptors in insects and vertebrates. Electrophysiological experiments on the cell body of the cockroach (Periplaneta americana) fast coxal depressor motor neuron (Df), and GABA-activated (36) Cl- uptake experiments on microsacs perpared from cockroach ventral nerve cords showed that both heptachlor and heptachlor epoxide blocked functional GABA receptors. The block appeared to be non-competitive and was voltage-independent over the membrane potential range -75 mV to -110 mV. There was no significant difference between the potencies of heptachlor and heptachlor epoxide in the functional assays for insect GABA receptors. Both compounds inhibited (35)S-t-butylbicyclophosphorothionate binding in insects and vertebrates. The findings provide further evidence for block of an insect GABA receptor/Cl- channel by the cyclodiene class of polychlorocycloalkanes, and reveal differences in the insecticide (35)S-t-butylbicyclophosphorothionate binding site interactions of insects and vertebrates. The effects of heptachlor on oxidative phosphorylation and electron transport in male Donryu rat liver mitochondria were investigated. The effects of 50 uM heptachlor on the respiratory activity of isolated liver mitochondria was tested in the presence of added succinate as a substrate. The effects of 100 uM heptachlor was tested in the presence of three kinds of substrates: succinate, beta-hydroxybutylate, and ascorbate plus N,N,N'N'-tetramethylphenylene-diamine. Heptachlor at 50 uM greatly inhibited the state 3 respiration, but inhibited the state 4 respiration hardly at all. The inhibition was released by 2,4-dinitrophenol. The higher dose suppressed state 3 and state 4 respiration almost completely with succinate as substrate. The findings suggest that the function of the electron transport system was also suppressed by the higher heptachlor dose even without oxidative phosphorylation.
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
This drug in other countries
The same active ingredient registered across other registries we cover - including different brands.
- HEMOFORCE FAMILY SYRUP · Gopaldas Visram & Co.
- HEPTOLIF SYRUP · M & G Pharmaceuticals
- JARIFAN-2 DROPS · M&g Pharmaceuticals
- MAGNESIUM SULPHATE SOLUTION FOR INJECTION (Each ampoule contains Magnesium sulfate Heptahydrate 50%w/v) · Swiss Parenterals
- MOVIT PLUS SYRUP (Each 5ml contains Vit B1 HCl/ Riboflavin/ Vit D3/ Vit B6 HCl/ Nicotinamide / Calcium D-Pantothenate / Vit B12/ Vit A/ L – Lysine HCl/ Calcium Lactate/ Cyproheptadine HCl/ Manganese Sulphate/ Zinc Sulphate Heptahydrate 2mg/150mg/2mg/1mg/1mg/7.5mg/7mg/0.8mg) · Enicar Pharmaceuticals
- REDIN PN LIQUID (Each 10ml contains Ferric Ammonium Citrate/ Calcium Lactate Pentahydrate/ Protein Hydrosylate (equivalent to 75% of Protein) / Cyanocobalamin/ Folic Acid/ Zinc Sulphate Heptahydrate/ Selenium/ Manganese Sulphate/ Copper Sulphate Pentahydrate 230mg/ 50mg/ 100mg/ 2.5mcg/ 0.5mg/ 35mg/25mcg/ 0.25mg/ 25mcg) · Fourrts Laboratories
- BIMATO · Rafarm
- Ganfort · Allergan
- Globin - Z · Aurochem Laboratories
- KAINESIUM KIT · Kairuki Pharmaceutics
- Lumigan 0.01% · Allergan
- Magnesium Sulphate 50%w/v Solution for Injection · Macarthys Laboratories