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11β,17α,20α,21-tetrahydroxy-6α-methylpregna-1,4-diene-3-one is a complex steroidal compound characterized by its unique molecular structure. It features a pregnane core, which is a type of steroid nucleus, with a 6α-methyl group attached to it. The molecule has four hydroxyl groups at the 11β, 17α, 20α, and 21 positions, and a ketone group at the 3 position. This specific arrangement of functional groups gives the compound its distinct chemical properties and potential biological activities. It is a derivative of the larger class of compounds known as pregnanes, which are significant in various biological processes and have applications in medicine and pharmacology. The compound's structure and functional groups may contribute to its interaction with specific receptors or enzymes, potentially influencing physiological functions.

387-65-5

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387-65-5 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 387-65-5 includes 6 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 3 digits, 3,8 and 7 respectively; the second part has 2 digits, 6 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 387-65:
(5*3)+(4*8)+(3*7)+(2*6)+(1*5)=85
85 % 10 = 5
So 387-65-5 is a valid CAS Registry Number.

387-65-5Upstream product

387-65-5Downstream Products

387-65-5Relevant academic research and scientific papers

Using complementary mass spectrometric approaches for the determination of methylprednisolone metabolites in human urine

Pozo, Oscar J.,Marcos, Josep,Matabosch, Xavier,Ventura, Rosa,Segura, Jordi

, p. 541 - 553 (2012)

RATIONALE The metabolism of methylprednisolone is revisited in order to find new metabolites that could be important for distinguishing between different routes of administration. Recently developed liquid chromatography/tandem mass spectrometry (LC/MS/MS) strategies for the detection of corticosteroid metabolites have been applied to the study of methylprednisolone metabolism. METHODS The structures of these metabolites were studied using two complementary mass spectrometric techniques: LC/MS/MS in product ion scan mode with electrospray ionization and gas chromatography/mass spectrometry (GC/MS) in full scan mode with electron ionization. Metabolites were also isolated by semipreparative liquid chromatography fractionation. Each fraction was divided into two aliquots; one was studied by LC/MS/MS and the other by GC/MS after methoxyamine-trimethylsilyl derivatization. RESULTS The combination of all the structural information allowed us to propose a comprehensive picture of methylprednisolone metabolism in humans. Overall, 15 metabolites including five previously unreported compounds have been detected. Specifically, 16β,17α,21-trihydroxy-6α-methylpregna-1,4-diene- 3,11,20-trione, 17α,20β,21-trihydroxy-6α-methylpregna-1,4- diene-3, 11-dione, 11β,17α,21-trihydroxy-6α- hydroxymethylpregna-1,4-diene-3,20-dione, 11β,17α,20,21-tetrahydroxy- 6α-hydroxymethylpregna-1,4-diene-3-one, and 17α,21-dihydroxy- 6α-hydroxymethylpregna-1,4-diene-3,11,20-trione are proposed as feasible structures for the novel metabolites. In addition to the expected biotransformations: reduction of the C20 carbonyl, oxidation of the C11 hydroxy group, and further 6β-hydroxylation, we propose that hydroxylation of the 6α-methyl group can also take place. CONCLUSIONS New metabolites have been identified in urine samples collected after oral administration of 40mg of methylprednisolone. All identified metabolites were found in all samples collected up to 36h after oral administration. However, after topical administration of 5g of methylprednisolone aceponate, neither the parent compound nor any of the metabolites were detected. Copyright

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