Zinnia F
Ethinylestradiol 30 ng,Ferrous Fumerate 75 ng,Levonorgedtrel 150 ng
What it does
Ethinylestradiol is a synthetic form of the hormone estrogen, often used in combination with other hormones for various treatments.
Commonly used for: prevention of pregnancy (contraception), regulation of menstrual cycles, treatment of hormonal imbalances
Read more in plain English ↓Plain-language summary for general understanding - not medical advice. Always follow your pharmacist/doctor.
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Sourcing - Kenya onlyRegistration & product details
Source: Tanzania Medicines and Medical Devices Authority · fetched 2026-03-11 23:52:21 · updated 2026-09-17 03:00:44
About ethinylestradiol
Ethinylestradiol is a synthetic form of the hormone estrogen, often used in combination with other hormones for various treatments.
What it treats
- prevention of pregnancy (contraception)
- regulation of menstrual cycles
- treatment of hormonal imbalances
How it works
It works by mimicking the effects of natural estrogen in the body, helping to control reproductive functions.
Who it's for
It is typically prescribed for women of reproductive age who need help with birth control or hormonal issues.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About ferrous
Ferrous is a type of iron supplement used to treat or prevent low iron levels in the body.
What it treats
- iron deficiency anemia
- low iron levels
How it works
Ferrous provides the body with iron, which is necessary for producing red blood cells and transporting oxygen.
Who it's for
It is suitable for individuals who have low iron levels or are at risk of iron deficiency, such as pregnant women, vegetarians, or those with certain medical conditions.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About fumerate
Fumerate is a medication used to manage certain health conditions, although specific details about its exact uses are not provided.
How it works
Fumerate works by influencing certain biological processes in the body to help improve health.
Who it's for
Fumerate is intended for patients with specific health conditions as determined by a healthcare provider.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About levonorgedtrel
Levonorgestrel is a hormone used in various contraceptive methods.
What it treats
- prevention of pregnancy (contraception)
- emergency contraception
How it works
Levonorgestrel works by preventing ovulation (the release of an egg) and may also prevent fertilization or attachment of a fertilized egg to the uterus.
Who it's for
It is for individuals who wish to prevent pregnancy, especially after unprotected sex.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
Clinical monograph: Ferrousfumarate
BNF-referencedFerrous fumarate is an iron supplement used primarily in the treatment and prevention of iron deficiency anemia. It provides elemental iron, which is essential for the synthesis of hemoglobin and the production of red blood cells. This compound plays a crucial role in increasing the iron stores in the body, which can be depleted in conditions such as chronic blood loss, malnutrition, or increased physiological demands.
Indications
- Iron deficiency anemia
- Prophylaxis of iron deficiency in at-risk populations
- Epithelial tissue changes such as atrophic glossitis and koilonychia
Dosage
Children: For children aged 1 month to 11 years: 0.25 mL per kilogram twice daily, with the total daily dose possibly given in 3 divided doses, not exceeding 20 mL per day. For children aged 12-17 years: 10 mL once daily.
Adults: The dose is calculated according to body weight and the iron deficit, specifying both the iron salt and formulation. For specific dosing, consult product literature.
Mechanism of action
Iron is necessary for the production of hemoglobin. Iron deficiency can lead to decreased production of hemoglobin and a microcytic, hypochromic anemia. Ferrous fumarate releases iron in the gastrointestinal tract, facilitating its absorption and subsequent incorporation into hemoglobin, thus alleviating anemia.
Pharmacodynamics
The major activity of supplemental iron, including ferrous fumarate, is in the prevention and treatment of iron deficiency anemia. Iron also has putative immune-enhancing, anticarcinogenic, and cognition-enhancing activities, supporting overall health and functionality.
Pharmacokinetics
Ferrous fumarate is absorbed in the gastrointestinal tract, with absorption being optimal in an acidic environment. The bioavailability can be influenced by dietary factors, such as the presence of certain foods or medications that may inhibit iron absorption. Once absorbed, iron is transported in the blood bound to transferrin and is stored in tissues as ferritin and hemosiderin. The elimination half-life of iron is variable and depends on the individual's iron status and the amount of iron stored.
Contra-indications
- Iron overload syndromes
- Repeated blood transfusions
- Porphyria cutanea tarda
Adverse effects
- Asthenia
- Drowsiness
- Urine discoloration
- Cold sweat
- Confusion
- Decreased level of consciousness
- Thrombophlebitis
- Headache
- Joint stiffness
- Pain in extremities
- Skin reactions
- Small intestinal bacterial overgrowth
- Thirst
- Nausea
- Constipation
- Diarrhea
- Decreased appetite
Interactions
- Iron absorption may be affected by antacids and certain medications that alter gastric pH.
Precautions
- Monitor iron status to avoid iron overload.
- Caution in patients with intestinal strictures or diverticular disease.
- Care in elderly patients and those on high doses.
Pregnancy
Iron is generally considered safe during pregnancy, but supplementation should be monitored to avoid overload.
Breast-feeding
Iron supplementation may be necessary for exclusively breast-fed infants if maternal iron stores are low.
Storage
Store in a cool, dry place, away from direct sunlight. Keep out of reach of children.
Formulations
- Solution for injection (Iron as Iron sucrose 20 mg per 1 ml)
- Capsules containing iron formulations
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: Ethinylestradiol
BNF-referencedEthinylestradiol is a synthetic estrogen used primarily in hormonal contraceptives and hormone replacement therapy. It mimics the effects of natural estrogens in the body, influencing various physiological processes including the menstrual cycle and reproductive system. Ethinylestradiol is known for its role in suppressing ovulation, thickening cervical mucus, and altering the endometrium to prevent implantation, making it effective in preventing pregnancy.
Indications
- Hormonal contraception
- Menstrual cycle regulation
- Hormone replacement therapy
- Management of menopausal symptoms
- Treatment of polycystic ovary syndrome
- Endometriosis management
- Dysfunctional uterine bleeding
Dosage
Adults: The dosing of ethinylestradiol varies based on the formulation and indication. Commonly, it is administered in combination with progestins for contraception, typically as a daily oral tablet containing 20 to 35 micrograms of ethinyles
Mechanism of action
Ethinylestradiol acts as a synthetic estrogen by binding to estrogen receptors in estrogen-responsive tissues. It suppresses gonadotropic hormone secretion from the pituitary gland, leading to decreased luteinizing hormone levels. This results in reduced endometrial vascularization and prevents ovulation by inhibiting the hormonal changes necessary for ovarian follicle maturation. Additionally, it thickens cervical mucus to impede sperm movement and alters the endometrium to prevent implantation.
Pharmacodynamics
Ethinylestradiol has a long duration of action and a wide therapeutic index. It effectively decreases luteinizing hormone and gonadotropic hormone levels, thereby preventing ovulation and altering reproductive tract conditions. Patients using ethinylestradiol should be made aware of potential thrombotic risks, particularly in specific populations such as smokers and those with a history of thromboembolic disorders.
Pharmacokinetics
Ethinylestradiol is well absorbed when taken orally, with peak plasma concentrations occurring approximately 1 to 2 hours after administration. It has a high plasma protein binding rate, predominantly to sex hormone-binding globulin. The drug undergoes extensive hepatic metabolism, primarily by cytochrome P450 enzymes, and has a half-life of about 10-20 hours. Excretion is primarily via the kidneys, with metabolites being eliminated in urine.
Contra-indications
- Pregnancy
- History of thromboembolic disorders
- Active liver disease
- Severe hypertension
- Undiagnosed vaginal bleeding
- Hormone-sensitive cancers (e.g., breast cancer)
- Known hypersensitivity to ethinylestradiol or any component of the formulation
Adverse effects
- Nausea
- Headache
- Breast tenderness
- Mood changes
- Thromboembolic events (e.g., deep vein thrombosis, pulmonary embolism)
- Increased risk of certain cancers (e.g., breast and endometrial cancer)
- Hypertension
- Skin reactions (e.g., rash)
Interactions
- Antibiotics (e.g., rifampicin) may reduce effectiveness
- Anticonvulsants (e.g., phenytoin, carbamazepine) may reduce effectiveness
- St. John's Wort may reduce effectiveness
- Fostemsavir increases ethinylestradiol concentration
- Certain antiretrovirals may interact with ethinylestradiol
Precautions
- Monitor for signs of thromboembolism
- Caution in patients with a history of migraines
- Caution in patients with liver disease
- Regular breast examinations and mammograms are recommended
- Consider risks versus benefits in patients with a family history of breast cancer
- Use with caution in patients with hypertension, renal disease, asthma, epilepsy, and systemic lupus erythematosus
Pregnancy
Ethinylestradiol is contraindicated in pregnancy due to potential risks to the fetus and maternal health.
Breast-feeding
Caution is advised as ethinylestradiol may be excreted in breast milk. It is recommended to weigh the benefits of the treatment against potential risks to the nursing infant.
Storage
Store in a cool, dry place away from direct light. Keep out of reach of children.
Formulations
- Tablets
- Transdermal patches
- Gels
- Sachets
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: Ferroussulfate
BNF-referencedFerrous sulfate is an iron supplement used primarily for the treatment and prevention of iron-deficiency anemia. It provides the body with iron, an essential component of hemoglobin in red blood cells, facilitating oxygen transport throughout the body. Iron-deficiency anemia can result from inadequate dietary intake, chronic blood loss, or increased physiological demands such as pregnancy.
Indications
- Iron-deficiency anemia (therapeutic)
- Iron-deficiency anemia (prophylactic)
Dosage
Children: For children aged 1 month to 11 years: 0.25 mL/kilogram twice daily. For children aged 12 to 17 years: 10 mL once daily.
Adults: 280 mg twice daily.
Mechanism of action
Ferrous sulfate acts as a source of iron, which is essential for the synthesis of hemoglobin, the protein in red blood cells that carries oxygen. Iron is absorbed in the intestines, where it is converted into a form that can be incorporated into hemoglobin. The mechanism involves transport proteins that facilitate iron uptake and incorporation into the heme group of hemoglobin.
Pharmacodynamics
The pharmacodynamic effect of ferrous sulfate is the increase in hemoglobin levels and improvement in symptoms of anemia, such as fatigue and weakness. Iron supplementation leads to increased erythropoiesis (red blood cell production) in the bone marrow, effectively correcting the deficit in iron stores and enhancing oxygen-carrying capacity.
Pharmacokinetics
Ferrous sulfate is absorbed in the gastrointestinal tract, particularly in the duodenum and proximal jejunum. The bioavailability of iron from ferrous sulfate can be affected by dietary factors, with enhanced absorption in acidic environments. Peak plasma concentrations typically occur within 2 to 6 hours post-administration. Iron is primarily stored in the liver and bone marrow, and any excess iron is excreted through feces, urine, and sweat.
Contra-indications
- Hypersensitivity to ferrous sulfate or any of its excipients
- Hemochromatosis
- Hemosiderosis
- Thalassemia
- Other anemias not due to iron deficiency
Adverse effects
- Gastrointestinal disturbances (nausea, constipation, diarrhea, abdominal pain)
- Dark stools
- Staining of teeth (with liquid formulations)
- Allergic reactions (rare)
Interactions
- Antacids may reduce the absorption of iron
- Tetracycline antibiotics may interfere with iron absorption
- Ascorbic acid (vitamin C) may enhance iron absorption
- Certain foods and beverages (e.g., tea, coffee, dairy) can decrease iron absorption
Precautions
- Use with caution in patients with peptic ulcer disease
- Monitor for signs of iron overload
- Assess the cause of anemia before initiation of therapy
- Keep out of reach of children to prevent accidental overdose
Pregnancy
Ferrous sulfate is generally considered safe for use during pregnancy to prevent or treat iron-deficiency anemia.
Breast-feeding
Ferrous sulfate is excreted in breast milk in small amounts but is considered safe for breastfeeding mothers.
Storage
Store in a cool, dry place away from direct sunlight. Keep out of reach of children.
Formulations
- Ferrous sulfate 200 mg tablets
- Ferrous sulfate 325 mg modified-release tablets
- Ferrous sulfate oral solution 140 mg/5 mL
- Ferrous sulfate drops
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: ferrous
BNF-referencedFerrous refers to iron in its +2 oxidation state, primarily encountered as ferrous sulfate, which is used as an iron supplement to treat or prevent iron deficiency anemia. Iron is a crucial component of hemoglobin in red blood cells, facilitating oxygen transport throughout the body. Adequate iron levels are essential for various biological functions, including energy metabolism and immune system performance.
Indications
- Iron deficiency anemia
- Iron deficiency due to inadequate dietary intake
- Anemia associated with chronic disease
- Pregnancy-related anemia
Dosage
Children: Refer to the BNF for Children for specific dosing recommendations based on age and weight.
Adults: Refer to the BNF for specific dosing recommendations, generally, adults may require 100-200 mg of elemental iron daily divided into several doses.
Mechanism of action
Ferrous ions (Fe2+) play a vital role in hemoglobin production by participating in the synthesis of heme, the iron-containing compound essential for oxygen transport in the blood. In addition, iron is a cofactor for various enzymes involved in metabolic pathways, including those related to DNA synthesis and energy production.
Pharmacodynamics
The pharmacodynamic effects of ferrous include increased hemoglobin synthesis, improved oxygen transport, and enhanced cellular energy metabolism. Supplementation leads to an increase in serum ferritin levels and replenishment of iron stores in the body, which is particularly beneficial in cases of iron deficiency anemia.
Pharmacokinetics
Ferrous iron is absorbed primarily in the duodenum and upper jejunum of the small intestine. The absorption rate can be influenced by various factors, including the presence of food, the form of iron, and individual patient characteristics. Once absorbed, ferrous is transported in the bloodstream bound to transferrin, and it is stored in the liver, spleen, and bone marrow as ferritin. The elimination half-life of iron is not well-defined as it is not excreted directly but rather recycled in the body.
Pregnancy
Not contraindicated, but iron supplementation should be done under medical supervision.
Breast-feeding
Iron is excreted in breast milk, but supplementation is generally considered safe.
Storage
Store in a cool, dry place away from sunlight. Keep 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: fumerate
BNF-referencedFumarate is a dicarboxylic acid that plays a critical role in the tricarboxylic acid (TCA) cycle, serving as an intermediate in cellular metabolism. It is involved in various biochemical pathways, including the urea cycle and the glyoxylate cycle, contributing to energy production and metabolic regulation. Its molecular formula is C4H2O4-2, indicating it exists as a dicarboxylate ion under physiological conditions.
Dosage
Children: Refer to official dosing guidelines for paediatric indications and dosages.
Adults: Refer to official dosing guidelines for specific indications and dosages.
Mechanism of action
Fumarate acts primarily as an intermediate in the TCA cycle, where it is converted to malate by the enzyme fumarase. This process is essential for the continuation of aerobic respiration, facilitating the conversion of carbohydrates, fats, and proteins into energy. Additionally, fumarate can participate in redox reactions, influencing cellular metabolism and signaling pathways.
Pharmacodynamics
Fumarate influences various metabolic pathways, including the urea cycle and glycolysis, by participating in electron transfer processes. Its role in the TCA cycle is vital for ATP production, and its interaction with other metabolic pathways helps regulate energy homeostasis and the balance of nitrogen in the body.
Pharmacokinetics
The pharmacokinetics of fumarate involve its absorption, distribution, metabolism, and excretion. Fumarate is readily absorbed when introduced into the body and is distributed to various tissues where it participates in metabolic processes. The metabolic conversion of fumarate occurs primarily in the mitochondria through the TCA cycle, and its elimination from the body is facilitated by renal pathways.
Pregnancy
There are no established guidelines regarding the use of fumerate during pregnancy. Consult healthcare professionals for individual risk assessment.
Breast-feeding
The safety of fumerate during breastfeeding has not been established. Caution is advised and consultation with healthcare professionals is recommended.
Storage
Store in a cool, dry place away from light. Keep 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: levonorgedtrel
Levonorgestrel is a synthetic progestin used primarily in hormonal contraceptives and emergency contraception. It is effective in preventing ovulation, inhibiting fertilization, and altering the endometrium to prevent implantation. Levonorgestrel is available in various formulations, including oral tablets and intrauterine devices (IUDs).
Indications
- Contraception
- Emergency contraception
- Treatment of heavy menstrual bleeding
- Management of endometriosis
Dosage
Children: Refer to the BNF for Children for specific dosing information.
Adults: Refer to the BNF for specific dosing information.
Mechanism of action
Levonorgestrel works primarily by binding to progesterone receptors, leading to a series of physiological changes. It prevents ovulation by inhibiting the luteinizing hormone (LH) surge necessary for ovulation. Additionally, it thickens cervical mucus, which reduces sperm motility and viability, and alters the endometrial lining to make it less receptive to a fertilized egg.
Pharmacodynamics
Levonorgestrel exhibits high affinity for progesterone receptors and low affinity for androgen receptors. Its primary effects include the prevention of ovulation, changes in cervical mucus consistency, and alterations to the endometrial lining. These actions collectively contribute to its efficacy as a contraceptive agent.
Pharmacokinetics
Levonorgestrel is rapidly absorbed following oral administration, with peak plasma concentrations reached within 1 to 2 hours. It has a bioavailability of approximately 100% when taken orally. The drug is highly protein-bound, primarily to albumin and sex hormone-binding globulin. Levonorgestrel is metabolized in the liver via cytochrome P450 enzymes, primarily CYP3A4, and is eliminated with an elimination half-life of about 24 to 36 hours. It is excreted in urine and bile as metabolites.
Contra-indications
- Severe liver disease
- Known or suspected pregnancy
- Unexplained vaginal bleeding
- Hypersensitivity to levonorgestrel or any component of the formulation
Adverse effects
- Nausea
- Vomiting
- Fatigue
- Headache
- Dizziness
- Breast tenderness
- Changes in menstrual bleeding
- Abdominal pain
Interactions
- Anticonvulsants (e.g., phenytoin, carbamazepine) may reduce effectiveness
- Rifampicin and other rifamycins may reduce effectiveness
- St. John's Wort may reduce effectiveness
Precautions
- Use with caution in patients with a history of thromboembolic disorders
- Monitor for possible ectopic pregnancy in women with risk factors
- Inform patients about the potential for irregular menstrual cycles
Pregnancy
Levonorgestrel is contraindicated in known or suspected pregnancy.
Breast-feeding
Levonorgestrel is excreted in breast milk; consider the benefits and risks when prescribing.
Storage
Store at room temperature (15-30 degrees Celsius) away from moisture and light.
Formulations
- Oral tablet (single dose or multi-dose)
- Intrauterine system
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: Ethinylestradiol
PubChem CID 5991Molecular formula: C20H24O2
Mechanism of action
Ethinylestradiol is a synthetic estrogenic compound. Use of estrogens have a number of effects on the body including reduced bone density. Combined oral contraceptives suppress ovulation by suppressing gonadotrophic hormone, thickening cervical mucus to prevent the travel of sperm, and preventing changes in the endometrium required for implantation of a fertilized egg. Ethinylestradiol decreases luteinizing hormone, decreasing vascularity in the endometrium. It also increases sex hormone binding globulin. Endogenous estrogens are largely responsible for the development and maintenance of the female reproductive system and secondary sexual characteristics. Although circulating estrogens exist in a dynamic equilibrium of metabolic interconversions, estradiol is the principal intracellular human estrogen and is substantially more potent than its metabolites estrone and estriol at the receptor level. ... After menopause, most endogenous estrogen is produced by conversion of androstenedione, secreted by the adrenal cortex, to estrone by peripheral tissues. Thus, estrone and the sulfate conjugated form, estrone sulfate, are the most abundant circulating estrogens in postmenopausal women. The pharmacologic effects of ethinyl estradiol are similar to those of endogenous estrogens. Estrogens act through binding to nuclear receptors in estrogen-responsive tissues. To date, two estrogen receptors have been identified. These vary in proportion from tissue to tissue. Circulating estrogens modulate the pituitary secretion of the gonadotropins, luteinizing hormone (LH) and follicle stimulating hormone (FSH) through a negative feedback mechanism. Estrogens act to reduce the elevated levels of these hormones seen in postmenopausal women. Estrogens have an important role in the reproductive, skeletal, cardiovascular, and central nervous systems in women, and act principally by regulating gene expression. Biologic response is initiated when estrogen binds to a ligand-binding domain of the estrogen receptor resulting in a conformational change that leads to gene transcription through specific estrogen response elements (ERE) of target gene promoters; subsequent activation or repression of the target gene is mediated through 2 distinct transactivation domains (ie, AF-1 and AF-2) of the receptor. The estrogen receptor also mediates gene transcription using different response elements (ie, AP-1) and other signal pathways. Recent advances in the molecular pharmacology of estrogen and estrogen receptors have resulted in the development of selective estrogen receptor modulators (eg, clomiphene, raloxifene, tamoxifen, toremifene), agents that bind and activate the estrogen receptor but that exhibit tissue-specific effects distinct from estrogen. Tissue-specific estrogen-agonist or -antagonist activity of these drugs appears to be related to structural differences in their estrogen receptor complex (eg, specifically the surface topography of AF-2 for raloxifene) compared with the estrogen (estradiol)-estrogen receptor complex. A second estrogen receptor also has been identified, and existence of at least 2 estrogen receptors (ER-alpha, ER-beta) may contribute to the tissue-specific activity of selective modulators. While the role of the estrogen receptor in bone, cardiovascular tissue, and the CNS continues to be studied, emerging evidence indicates that the mechanism of action of estrogen receptors in these tissues differs from the manner in which estrogen receptors function in reproductive tissue. /Estrogen General Statement/ Intracellular cytosol-binding proteins for estrogens have been identified in estrogen-responsive tissues including the female genital organs, breasts, pituitary, and hypothalamus. The estrogen-binding protein complex (ie, cytosol-binding protein and estrogen) distributes into the cell nucleus where it stimulates DNA, RNA, and protein synthesis. The presence of these receptor proteins is responsible for the palliative response to e
Pharmacodynamics
Ethinylestradiol is a synthetic estrogen that decreases luteinizing hormone to decrease endometrial vascularization, and decreases gonadotrophic hormone to prevent ovulation. It has a long duration of action as it is taken once daily, and a wide therapeutic index as overdoses are generally not associated with serious adverse effects. Patients should be counselled regarding the risks of thrombotic events.
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: Ferrousfumarate
PubChem CID 6433164Molecular formula: C4H2FeO4
Mechanism of action
Iron is necessary for the production of hemoglobin. Iron-deficiency can lead to decreased production of hemoglobin and a microcytic, hypochromic anemia.
Pharmacodynamics
The major activity of supplemental iron is in the prevention and treatment of iron deficiency anemia. Iron has putative immune-enhancing, anticarcinogenic and cognition-enhancing activities.
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: Ferrousgluconate
PubChem CID 23616740Molecular formula: C12H22FeO14
Mechanism of action
Iron is necessary for the production of hemoglobin. Iron-deficiency can lead to decreased production of hemoglobin and a microcytic, hypochromic anemia.
Pharmacodynamics
The major activity of supplemental iron is in the prevention and treatment of iron deficiency anemia. Iron has putative immune-enhancing, anticarcinogenic and cognition-enhancing activities.
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: ferrous
PubChem CID 27284Molecular formula: Fe+2
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: fumerate
PubChem CID 5460307Molecular formula: C4H2O4-2
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
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