SI
SI
discoversearch

We've detected that you're using an ad content blocking browser plug-in or feature. Ads provide a critical source of revenue to the continued operation of Silicon Investor.  We ask that you disable ad blocking while on Silicon Investor in the best interests of our community.  If you are not using an ad blocker but are still receiving this message, make sure your browser's tracking protection is set to the 'standard' level.
Biotech / Medical : AXYX - Miscellaneous

 Public ReplyPrvt ReplyMark as Last ReadFilePrevious 10Next 10PreviousNext  
To: John McCarthy who started this subject5/4/2003 5:38:06 PM
From: John McCarthy   of 11
 
1998 - [Phenserine][Syntheses and anticholinesterase activities]

1: J Med Chem 1998 Jun 18;41(13):2371-9 Related Articles, Links


Syntheses and anticholinesterase activities of (3aS)-N1, N8-bisnorphenserine, (3aS)-N1,N8-bisnorphysostigmine, their antipodal isomers, and other potential metabolites of phenserine.

Yu Q, Greig NH, Holloway HW, Brossi A.

School of Pharmacy, University of North Carolina at Chapel Hill, North Carolina 27599-7361, USA.

Hydrolysis of the carbamate side chains in phenserine [(-)1] and physostigmine [(-)2] yields

the metabolite (-)-eseroline (3),
and the red dye rubreserine (4) on air oxidation of the former compound.

Both compounds lacked anticholinesterase activity in concentrations up to 30 mM, which would be unachievable in vivo.

A second group of potential metabolites of 1 and 2 are the N1,N8-bisnorcarbamates (-)9

and (-)10, prepared from (3aS)-N8-benzylnoresermethole (-)12 by the carbinolamine route.

These entirely novel compounds proved to be highly potent inhibitors of acetylcholinesterase [(-)9] and of acetyl- and butyrylcholinesterase (AChE and BChE) [(-)10], respectively.

To elucidate further the structure/anticholinesterase activity relationship of the described compounds, the antipodal isomers (3aR)-N1,N8-bisnorcarbamates (+)9 and (+)10 were likewise synthesized from (3aR)-N8-benzylnoresermethole (+)12 and assessed.

The compounds possessed moderate but less potent anticholinesterase activity, with the same selectivity as their 3aS enantiomers.

Finally, the anticholinesterase activities of intermediates N1, N8-bisnorbenzylcarbamates (-)18, (-) 19, (+)18, and (+)19, also novel compounds, were additionally measured.

The 3aS enantiomers proved to be potent and selective inhibitors of BChE, particularly (-)19, whereas the antipodal isomers lacked activity.

PMID: 9632370 [PubMed - indexed for MEDLINE]

ncbi.nlm.nih.gov
Report TOU ViolationShare This Post
 Public ReplyPrvt ReplyMark as Last ReadFilePrevious 10Next 10PreviousNext