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Home > Active Pharmaceutical Ingredients > Hormones and the Endocrine System (Find 279 items)

Hormones and the Endocrine System

Vasopressin

(11000-17-2)
Vasopressin is used in veterinary medicine as a diagnostic agent and in the treatment of diabetes insipidus in small animals. In recent years, there has been significant interest in using vasopressin for treating shock syndromes in humans and animals. Ongoing research is being conducted.
In human medicine, vasopressin has been used to treat acute GI hemorrhage and to stimulate GI peristalsis. Vasopressin CRI is also being used for treatment of hypotensive septic patients unresponsiv

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(-)-Corey lactone diol

(32233-40-2)
(-)-Corey Lactone Diol is an intermediate of Iloprost (I267300) and shows inhibitory activity towards β-lactamase. Iloprost (I267300) is a synthetic analogue of Prostacyclin (PGI2) used to treat pulmonary arterial hypertension (PAH), scleroderma, Raynaud's phenomenon and ischemia.

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Fluorometholone

(426-13-1)
Fluorometholone is a glucocorticoid; anti-inflammatory.

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Chlormadinone

(1961-77-9)
It has been used in combinations as an oral contraceptive.

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Fluocinonide

(356-12-7)
Glucocorticoid; anti-inflammatory.

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Neodecanoic acid

(26896-20-8)
It is suitable for the bonding of rubber and brass-plated, galvanized steel wire, cable and metal wrench and yellow steel bottom layer of different thickness and various bare steel. It is an excellent adhesion promoter for radial tire rubber and metal.

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Clostilbegit

(50-41-9)
An unducer of ovulation. A gonad-stimulating principle Synthetic estrogen agonist-antagonist. Gonad-stimulating principle. A selective estrogen receptor modulator Clomiphene is a selective estrogen receptor modulator that impairs the activation of estrogen receptors (ERs) by 17β-estradiol. It potently binds both ERα and ERβ (Ki = 0.9 and 1.2 nM, respectively). Clomiphene enhances the release of gonadotropin-releasing hormone, stimulating the release of follicle-stimulating hormone and luteinizi

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Phenformin

(114-86-3)
This oral, biguanide-class antidiabetic (FWhydrochloride = 241.72 g/mol; M.P. = 175-178°C; typically supplied as the water-soluble hydrochloride salt), also known as phenethylbiguanide and phenylethylbiguanide, and named systematically as N’-b-phenethylformamidinyliminourea, was withdrawn from the U.S. market in 1977 due to high risk of inducing often fatal lactic acidosis. Target(s): cholesterol biosynthesis; 7-dehydrocholesterol reductase; diamine oxidase; glucose transport; insulysin;

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Cosyntropin

(16960-16-0)
Hormone (adrenocorticotropic).Cosyntropin is used primarily as an alternative to ACTH to test for adrenocortical insufficiency (Addison’s), or hyperadrenocorticism, particularly in animals who have reacted immunologically to corticotropin in the past or if ACTH gel is unavailable.

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The endocrine system, referring to the systemic endocrine glands, is another important function regulating system other than the nervous system. Common hormones and drugs commonly used in the endocrine system, including hypothalamic pituitary hormones and their analogs, adrenocortical drugs, insulin and oral hypoglycemic drugs, thyroid hormones and antithyroid drugs, androgens and anabolic hormones, estrogen and progesterone etc. "ECHEMI Hormones and the Endocrine System" mainly supplies raw materials for such drugs.

Frequently Asked Questions

What are hormones and how do they function in the endocrine system?

Hormones are chemical messengers produced by glands in the endocrine system that regulate various physiological processes such as metabolism, growth, reproduction, and mood. They travel through the bloodstream to target organs or tissues, where they bind to specific receptors to trigger a response. Key endocrine glands include the pituitary, thyroid, adrenal, pancreas, and gonads. Understanding hormone function is essential for diagnosing and managing endocrine disorders like diabetes, hypothyroidism, and Cushing’s syndrome.

What are common symptoms of hormonal imbalance?

Common symptoms of hormonal imbalance include unexplained weight gain or loss, fatigue, mood swings, irregular menstrual cycles, sleep disturbances, changes in heart rate, and skin issues such as acne or dryness. In men, low testosterone may cause reduced libido or muscle mass, while women might experience hot flashes or infertility due to estrogen fluctuations. Persistent symptoms should be evaluated by a healthcare provider to identify underlying endocrine conditions.

How is hormone testing performed and what does it involve?

Hormone testing typically involves blood, urine, or saliva samples to measure levels of specific hormones such as cortisol, thyroid hormones (T3, T4, TSH), insulin, estrogen, progesterone, or testosterone. The choice of test depends on symptoms and suspected conditions. For accurate results, timing (e.g., menstrual cycle phase) and fasting requirements may apply. These tests help diagnose disorders like hyperthyroidism, adrenal insufficiency, or polycystic ovary syndrome (PCOS) and guide appropriate treatment plans.

What role does the pituitary gland play in the endocrine system?

The pituitary gland, often called the 'master gland,' regulates other endocrine glands by secreting hormones that control thyroid function (TSH), adrenal activity (ACTH), reproductive processes (FSH and LH), growth (GH), and water balance (ADH). Located at the base of the brain, it links the nervous and endocrine systems via signals from the hypothalamus. Dysfunction—such as tumors or inflammation—can lead to widespread hormonal imbalances, affecting metabolism, fertility, and overall homeostasis.

Can lifestyle factors affect hormone health?

Yes, lifestyle significantly influences hormone health. Chronic stress elevates cortisol, disrupting sleep and metabolism. Poor diet, especially high sugar intake, can impair insulin sensitivity. Lack of sleep affects melatonin and growth hormone release, while obesity alters sex hormone levels. Regular exercise, balanced nutrition, adequate sleep, and stress management (e.g., mindfulness or yoga) support endocrine balance. These modifiable factors are often foundational in preventing or managing conditions like type 2 diabetes and PCOS.

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