PROGYNOVA
ESTRADIOL VALERATE
What it does
Estradiol is a form of estrogen, a female hormone important for various body functions.
Commonly used for: menopausal symptoms, hormone replacement therapy, female hypogonadism, certain types of breast cancer
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Source: Pharmacy and Poisons Board · fetched 2026-01-28 22:04:06 · updated 2026-03-23 04:49:14
Drug Interactions
6Unknown (6)
Estradiol - decreases efficacy
Antiepileptics (carbamazepine, eslicarbazepine, fosphenytoin, oxcarbazepine, perampanel, phenobarbital, phenytoin, primidone, rufinamide, topiramate) are predicted to decrease the efficacy of estradio
Estradiol - decreases efficacy
Bosentanispredictedtodecreasetheefficacyofestradiol. oTheoretical
Estradiol - decreases efficacy
Modafinilispredictedtodecreasetheefficacyofestradiol. oTheoretical
Estradiol - decreases efficacy
Rifamycinsarepredictedtodecreasetheefficacyofestradiol. oTheoretical
Estradiol - decreases efficacy
StJohn’swortispredictedtodecreasetheefficacyofestradiol. oTheoretical Estramustine→seealkylatingagents Etanercept
Estradiol - decreases efficacy
Ritonavirispredictedtodecreasetheefficacyofestradiol. oTheoretical
Data from BNF 85 (British National Formulary). This is not a substitute for professional medical advice. Matched via: exact
About this medicine
Estradiol is a form of estrogen, a female hormone important for various body functions.
What it treats
- menopausal symptoms
- hormone replacement therapy
- female hypogonadism
- certain types of breast cancer
How it works
Estradiol helps to balance hormone levels in the body, relieving symptoms associated with low estrogen.
Who it's for
This medication is for women experiencing menopause or hormonal imbalances.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
Clinical monograph: Estradiol
BNF-referencedEstradiol is a potent estrogen hormone predominantly produced by the ovarian follicles in premenopausal women. Following menopause, estradiol is primarily synthesized from androstenedione in peripheral tissues. It plays a critical role in regulating various physiological processes, including reproductive function, bone density, and cardiovascular health. Estradiol is utilized in hormone replacement therapy (HRT) to alleviate menopausal symptoms and prevent osteoporosis in postmenopausal women.
Indications
- Menopausal symptoms
- Osteoporosis prophylaxis
- Irregular menstruation
- Vulvovaginal atrophy
- Postmenopausal urogenital conditions
Dosage
Adults: The typical adult dosage of estradiol is 2 mg daily, initiated on day 1-5 of the menstrual cycle or at any time if cycles have ceased or are infrequent, taken with
Mechanism of action
Estradiol exerts its effects by binding to estrogen receptors, specifically estrogen receptor alpha (ERα) and estrogen receptor beta (ERβ), as well as the G protein-coupled estrogen receptor (GPER). This binding triggers the receptor-ligand complex to translocate to the nucleus, where it regulates gene transcription and the synthesis of specific proteins that mediate estradiol's physiological effects.
Pharmacodynamics
Estradiol acts on estrogen receptors to alleviate vasomotor symptoms such as hot flashes and urogenital symptoms including vaginal dryness. It has beneficial effects on bone density by inhibiting bone resorption and improving plasma lipid profiles. Additionally, estradiol decreases follicle-stimulating hormone (FSH) levels by suppressing its formation in the anterior pituitary gland. Notably, it may increase the risk of cardiovascular events, venous thromboembolism, and stroke, necessitating caution in high-risk populations.
Pharmacokinetics
Estradiol is rapidly absorbed when administered orally, with a bioavailability affected by first-pass metabolism in the liver. It is extensively metabolized in the liver, conjugated to form estrone and estrone sulfate, and eliminated through urine. The half-life of estradiol varies depending on the route of administration, with peak plasma concentrations occurring within 1-3 hours post-administration. Continuous use can lead to accumulation and requires careful monitoring of therapy duration and dosage adjustments.
Contra-indications
- History of thromboembolic disorders
- Known or suspected estrogen-dependent tumors
- Undiagnosed abnormal genital bleeding
- Severe liver dysfunction
- Pregnancy
Adverse effects
- Nausea
- Headaches
- Weight changes
- Breast tenderness
- Mood alterations
- Vaginal discharge
- Oedema
- Skin reactions
- Thromboembolic events
- Cerebrovascular accidents
- Endometrial hyperplasia
- Angioedema
Interactions
- Antiepileptics (carbamazepine, phenytoin, etc.) may decrease efficacy of estradiol
- Bosentan may decrease efficacy of estradiol
- Modafinil may decrease efficacy of estradiol
- Rifamycins may decrease efficacy of estradiol
- St. John's Wort may decrease efficacy of estradiol
- Ritonavir may decrease efficacy of estradiol
Precautions
- Monitor for signs of thromboembolic events
- Evaluate for endometrial hyperplasia in women with a uterus
- Consider cardiovascular risks before initiating therapy
- Assess liver function prior to use
- Use with caution in patients with a history of depression
Pregnancy
Estradiol is contraindicated in pregnancy due to potential harm to the fetus and increased risk of thromboembolic events.
Breast-feeding
Estradiol is excreted in breast milk; caution is advised when used by nursing mothers as it may affect milk production.
Storage
Store in a cool, dry place away from direct sunlight. Keep out of reach of children.
Formulations
- Tablets (1 mg, 2 mg)
- Vaginal ring (continuous use, replaced every 3 months)
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: Estradiol
PubChem CID 5757Molecular formula: C18H24O2
Mechanism of action
Estrogen is found in the the breast, uterine, ovarian, skin, prostate, bone, fat, and brain tissues. The main source of estrogen in adult women during the reproductive period of life is the ovarian follicle, which secretes 70 to 500 mcg of estradiol each day. After menopause, however, the majority of endogenous estrogen is produced by transformation of androstenedione (which is secreted by the adrenal cortex) to estrone in the peripheral tissues. Both estrone and its sulphate conjugated form, estrone sulphate, represent the most abundant estrogens found in postmenopausal women. Estradiol, however, is considerably more potent than estrone and estriol at the estrogen receptor (ER). As a result, the higher estrone concentration in postmenopausal population, can cause various undesirable effects. These effects may include hot flashes, chills, vaginal dryness, mood swings, irregular menstruation, and chills, in addition to sleep problems. Estradiol workings by binding to subtypes of the estrogen receptor: estrogen receptor alpha (ERα) and estrogen receptor beta (ERβ). It also exerts potent agonism of G Protein-coupled estrogen receptor (GPER), which is recognized an important regulator of this drug's rapid effects. Once the estrogen receptor has bound to its ligand, it enters the nucleus of the target cell, regulating gene transcription and formation of of messenger RNA. This mRNA makes contact with ribosomes producing specific proteins that express the effect of estradiol upon the target cell. Agonism of estrogen receptors increases pro-estrogenic effects, leading to the relief of vasomotor and urogenital symptoms of a postmenopausal or low estradiol state. 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. 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
Pharmacodynamics
Estradiol acts on the on the estrogen receptors to relieve vasomotor systems (such as hot flashes) and urogenital symptoms (such as vaginal dryness and dyspareunia). Estradiol has also been shown to exert favorable effects on bone density by inhibiting bone resorption. Estrogen appears to inhibit bone resorption and may have beneficial effects on the plasma lipid profile. Estrogens cause an increase in hepatic synthesis of various proteins, which include sex hormone binding globulin (SHBG), and thyroid-binding globulin (TBG). Estrogens are known to suppress the formation of follicle-stimulating hormone (FSH) in the anterior pituitary gland. **A note on hyper-coagulable state, cardiovascular health, and blood pressure** Estradiol may cause an increased risk of cardiovascular disease, DVT, and stroke, and its use should be avoided in patients at high risk of these conditions. Estrogen induces a hyper-coagulable state, which is also associated with both estrogen-containing oral contraceptive (OC) use and pregnancy. Although estrogen causes an increase in levels of plasma renin and angiotensin. Estrogen-induced increases in angiotensin, causing sodium retention, which is likely to be the mechanism causing hypertension after oral contraceptive treatment.
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
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