Issue 4, 2011

Development of a phosphatase-resistant, l-tyrosine derived LPA1/LPA3 dual antagonist

Abstract

Lysophosphatidic acid (LPA) is a bioactive compound that has gained attention due to its role in neoplastic diseases. Our group has developed a potent dual LPA1/LPA3 receptor antagonist, VPC51098 (LPA1 IC50 = 84 nM, LPA1 IC50 = 48 nM) that contained a labile phosphate head group. This lability has impaired our evaluation of our scaffold of LPA receptor antagonistsin vivo. We wished to replace the phosphate with a potentially more stable head group while retaining potency at both LPA1 and LPA3 to facilitate future in vivo studies. We tested in vitro potency of all head groups including α-methylene, α-fluoromethylene, α-hydroxymethylene; vinyl phosphonates; α-fluoro vinyl phosphonates. The most potent compound was found to be a low micromolar inhibitor VPC51299 that contained a vinyl phosphonate and possessed a half-life of approximately 90 min in rats when dosed intravenously. Herein, we describe the synthesis and initial biological evaluation of these compounds.

Graphical abstract: Development of a phosphatase-resistant, l-tyrosine derived LPA1/LPA3 dual antagonist

Supplementary files

Article information

Article type
Concise Article
Submitted
24 Dec 2010
Accepted
08 Feb 2011
First published
03 Mar 2011

Med. Chem. Commun., 2011,2, 325-330

Development of a phosphatase-resistant, L-tyrosine derived LPA1/LPA3 dual antagonist

J. E. East, K. M. Carter, P. C. Kennedy, N. A. Schulte, M. L. Toews, K. R. Lynch and T. L. Macdonald, Med. Chem. Commun., 2011, 2, 325 DOI: 10.1039/C0MD00273A

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