Itrocinonide

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Itrocinonide
Itrocinonide.svg
Clinical data
SynonymsD5159; 6α,9α-Difluoro-11β,16α,17α-trihydroxy-21-oxa-3-oxoandrosta-1,4-diene-17β-carboxylic acid, ester with ethyl (S)-1-hydroxyethyl carbonate, cyclic (R)-16,17-acetal with butyraldehyde; 6α,9α-Difluoro-11β,16α,17α-trihydroxy-21-oxapregna-1,4-diene-3,20-dione 21-(1-[(ethoxycarbonyl)oxy]ethyl), cyclic (R)-16,17-acetal with butyraldehyde
Drug class Corticosteroid; Glucocorticoid
Identifiers
CAS Number
PubChem CID
ChemSpider
UNII
ChEMBL
Chemical and physical data
Formula C29H38F2O9
Molar mass 568.611 g·mol−1
3D model (JSmol)

Itrocinonide (developmental code name D5159) is a synthetic glucocorticoid corticosteroid which was never marketed. [1] [2] [3]

Glucocorticoid class of corticosteroids

Glucocorticoids are a class of corticosteroids, which are a class of steroid hormones. Glucocorticoids are corticosteroids that bind to the glucocorticoid receptor that is present in almost every vertebrate animal cell. The name "glucocorticoid" is a portmanteau and is composed from its role in regulation of glucose metabolism, synthesis in the adrenal cortex, and its steroidal structure. A less common synonym is glucocorticosteroid.

Corticosteroid steroid hormone

Corticosteroids are a class of steroid hormones that are produced in the adrenal cortex of vertebrates, as well as the synthetic analogues of these hormones. Two main classes of corticosteroids, glucocorticoids and mineralocorticoids, are involved in a wide range of physiological processes, including stress response, immune response, and regulation of inflammation, carbohydrate metabolism, protein catabolism, blood electrolyte levels, and behavior.

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Salbutamol chemical compound

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Prednisolone chemical compound

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Ipratropium bromide chemical compound

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Fluticasone/salmeterol formulation used in the management of asthma and chronic obstructive pulmonary disease

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Triamcinolone chemical compound

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Montelukast Asthma medication

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Beclometasone chemical compound

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Isoprenaline chemical compound

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Ketotifen chemical compound

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Mometasone chemical compound

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Isoetarine chemical compound

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Bambuterol chemical compound

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Fenoterol chemical compound

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Reproterol chemical compound

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Chlorproethazine chemical compound

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Substituted amphetamines are a class of compounds based upon the amphetamine structure; it includes all derivative compounds which are formed by replacing, or substituting, one or more hydrogen atoms in the amphetamine core structure with substituents. The compounds in this class span a variety of pharmacological subclasses, including stimulants, empathogens, and hallucinogens, among others. Examples of substituted amphetamines are amphetamine (itself), methamphetamine, ephedrine, cathinone, phentermine, mephentermine, bupropion, methoxyphenamine, selegiline, amfepramone, pyrovalerone, MDMA (ecstasy), and DOM (STP).

Budesonide chemical compound

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Nepadutant chemical compound

Nepadutant (INN) (code name MEN-11420) is a glycosylated bicyclic cyclohexapeptide drug which acts as a highly selective NK2 receptor antagonist. It was developed by the Menarini Group and investigated for the treatment of functional gastrointestinal disorders and asthma but was never marketed.

Dianethole chemical compound

Dianethole is a naturally occurring organic compound that is found in anise and fennel. It is a dimeric polymer of anethole. It has estrogenic activity, and along with anethole and photoanethole, may be responsible for the estrogenic effects of anise and fennel. These compounds bear resemblance to the estrogens stilbene and diethylstilbestrol, which may explain their estrogenic activity. In fact, it is said that diethylstilbestrol and related drugs were originally modeled after dianethole and photoanethole.

References

  1. Nicholas Bodor; Peter Buchwald (29 August 2012). Retrometabolic Drug Design and Targeting. John Wiley & Sons. pp. 193–. ISBN   978-1-118-40776-9.
  2. Robert P. Schleimer (19 April 2016). Inhaled Steroids in Asthma: Optimizing Effects in the Airways. CRC Press. pp. 526–. ISBN   978-0-203-90853-2.
  3. Trevor T. Hansel; Peter J. Barnes (1 January 2001). New Drugs for Asthma, Allergy and COPD. Karger Medical and Scientific Publishers. pp. 95–. ISBN   978-3-8055-6862-3.