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Dive into the research topics where Steven W. Andrews is active.

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Featured researches published by Steven W. Andrews.


British Journal of Pharmacology | 2000

Replacement of the carboxylic acid group of prostaglandin F2α with a hydroxyl or methoxy substituent provides biologically unique compounds

David F. Woodward; A H-P Krauss; J. Chen; Daniel W. Gil; Karen M. Kedzie; Charles E. Protzman; Licheng Shi; R Chen; Heather A. Krauss; Alicia M. Bogardus; H T T Dinh; Larry A. Wheeler; Steven W. Andrews; Robert M. Burk; Todd S. Gac; Michael B. Roof; Michael E. Garst; L J Kaplan; George Sachs; Kristen L. Pierce; John W. Regan; R A Ross; Ming F. Chan

Replacement of the carboxylic acid group of PGF2α with the non‐acidic substituents hydroxyl (‐OH) or methoxy (‐OCH3) resulted in an unexpected activity profile. Although PGF2α 1‐OH and PGF2α 1‐OCH3 exhibited potent contractile effects similar to 17‐phenyl PGF2α in the cat lung parenchymal preparation, they were approximately 1000 times less potent than 17‐phenyl PGF2α in stimulating recombinant feline and human FP receptors. In human dermal fibroblasts and Swiss 3T3 cells PGF2α 1‐OH and PGF2α 1‐OCH3 produced no Ca2+ signal until a 1 μM concentration was exceeded. Pretreatment of Swiss 3T3 cells with either 1 μM PGF2α 1‐OH or PGF2α 1‐OCH3 did not attenuate Ca2+ signal responses produced by PGF2α or fluprostenol. In the rat uterus, PGF2α 1‐OH was about two orders of magnitude less potent than 17‐phenyl PGF2α whereas PGF2α 1‐OCH3 produced only a minimal effect. Radioligand binding studies on cat lung parenchymal plasma membrane preparations suggested that the cat lung parenchyma does not contain a homogeneous population of receptors that equally respond to PGF2α1‐OH, PGF2α1‐OCH3, and classical FP receptor agonists. Studies on smooth muscle preparations and cells containing DP, EP1, EP2, EP3, EP4, IP, and TP receptors indicated that the activity of PGF2α 1‐OH and PGF2α 1‐OCH3 could not be ascribed to interaction with these receptors. The potent effects of PGF2α 1‐OH and PGF2α 1‐OCH3 on the cat lung parenchyma are difficult to describe in terms of interaction with the FP or any other known prostanoid receptor.


Archive | 1993

Non-acidic cyclopentane heptanoic acid, 2-cycloalkyl or arylalkyl derivatives as therapeutic agents

David F. Woodward; Steven W. Andrews; Robert M. Burk; Michael E. Garst


Journal of Pharmacology and Experimental Therapeutics | 2003

Pharmacological characterization of a novel antiglaucoma agent, Bimatoprost (AGN 192024).

David F. Woodward; Achim H.-P. Krauss; June Chen; Yanbin Liang; Chen Li; Charles E. Protzman; Alicia M. Bogardus; Randy Chen; Karen M. Kedzie; Heather A. Krauss; Daniel W. Gil; Alex Kharlamb; Larry A. Wheeler; Darius M. Babusis; Devin F. Welty; Diane Tang-Liu; Madhu Cherukury; Steven W. Andrews; Robert M. Burk; Michael E. Garst


Archive | 2002

3-(arylamino)methylene-1, 3-dihydro-2H-indol-2-ones as kinase inhibitors

Steven W. Andrews; Julie A. Wurster; Edward H. Wang; Thomas C. Malone


Archive | 1996

Cyclopentane heptanoic acid, 2-cycloalkyl or arylalkyl derivatives as therapeutic agents

David F. Woodward; Steven W. Andrews; Robert M. Burk; Michael E. Garst


Archive | 2003

(3Z)-3-(2,3-dihydro-1H-inden-1-ylidene)-1,3-dihydro-2H-indol-2-ones as kinase inhibitors

Steven W. Andrews; Xialing Guo; Zhen Zhu; Clarence Eugene Hull; Julie A. Wurster; Shimiao Wang; Edward H. Wang; Thomas C. Malone


Archive | 2004

Kinase inhibitors for the treatment of disease

Steven W. Andrews; Michael E. Garst; Xialing Guo; Jonathan J. Hebert; Thomas C. Malone; Julie A. Wurster; Clarence Eugene Hull


Molecular Pharmacology | 2000

Synthetic Modification of Prostaglandin F2αIndicates Different Structural Determinants for Binding to the Prostaglandin F Receptor Versus the Prostaglandin Transporter

Victor L. Schuster; Shigekazu Itoh; Steven W. Andrews; Robert M. Burk; June Chen; Karen M. Kedzie; Daniel W. Gil; David F. Woodward


Archive | 2001

Ocular hypotensive lipids

David F. Woodward; Helen H. Usansky; Steven W. Andrews; Robert M. Burk; June Chen; Achim H.-P. Krauss; Cherukury Madhu


Archive | 2002

3-(heteroarylamino)methylene-1,3-dihydro-2H-indol-2-ones as kinase inhibitors

Steven W. Andrews; Julie A. Wurster

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