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Journal ArticleDOI

Synthesis of novel N-phosphonoalkyl dipeptide inhibitors of human collagenase

TLDR
The synthesis of a series of N-phosphonalkyl dipeptides 6 is described, devised that allowed the preparation of single diastereoisomers and the assignment of stereochemistry and potency was enhanced by introducing bicyclic aromatic P2' substituents.
Abstract
The synthesis of a series of N-phosphonalkyl dipeptides 6 is described. Syntheses were devised that allowed the preparation of single diastereoisomers and the assignment of stereochemistry. The compounds were evaluated in vitro for their ability to inhibit the degradation of radiolabeled collagen by purified human lung fibroblast collagenase. Several of the compounds were potent collagenase inhibitors and were at least 10-fold more potent than their corresponding N-carboxyalkyl analogues. Activity was lost when the phosphonic acid group P(O)(OH)2 was replaced by the phosphinic acid groups P(O)(H)(OH) and P(O)(Me)(OH). At the P1 position, (R)- or (S)-alkyl groups, especially ethyl and methyl (e.g., 12a,b, 52a,b, and 53a,b), or an (R)-phenethyl moiety (55a) conferred high potency (IC50 values in the range 0.23-0.47 microM). (S)-Stereochemistry was preferred for the P1' isobutyl side chain. Structure-activity relationships were also investigated at the P2' site, and interestingly, compounds with basic side chains, such as the guanidine 57a, were equipotent with more lipophilic compounds, such as 52a. As with other series of collagenase inhibitors, potency was enhanced by introducing bicyclic aromatic P2' substituents. The most potent phosphonic acid of the series was the bicyclic aromatic P2' tryptophan analogue 59a (IC50 0.05 microM).

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An Overview of Stereoselective Synthesis of α-Aminophosphonic Acids and Derivatives

TL;DR: An overview of all methodologies published during the last few years focused to the stereoselectives (diastereoselective or enantioselectIVE) synthesis of α-aminophosphonic acids and derivatives is reported.
Journal ArticleDOI

Catalytic enantioselective hydrophosphonylation of aldehydes and imines

TL;DR: In this paper, the recent advances in catalytic asymmetric hydrophosphonylation of aldehydes and imines are discussed and several proposed mechanisms for the different possibilities of asymmetric induction and the application of this catalytic methodology to the enantioselective synthesis of α-amino and α-hydroxy phosphonates.
Journal ArticleDOI

The Kabachnik-Fields reaction: mechanism and synthetic use.

TL;DR: It was proved that, in the cases studied by the Kabachnik–Fields reaction, there was no need for the use of any catalyst and sophisticated and environmentally unfriendly catalysts suggested are completely unnecessary under MW conditions.
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