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Dive into the research topics where Thomas Jon Seiders is active.

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Featured researches published by Thomas Jon Seiders.


Journal of Pharmacology and Experimental Therapeutics | 2011

Pharmacokinetic and Pharmacodynamic Characterization of an Oral Lysophosphatidic Acid Type 1 Receptor-Selective Antagonist

James S. Swaney; Charles Chapman; Lucia Correa; Karin Stebbins; Alex R. Broadhead; Gretchen Bain; Angelina M. Santini; Janice Darlington; Christopher King; Chris Baccei; Catherine Lee; Timothy Parr; Jeffrey Roger Roppe; Thomas Jon Seiders; Jeannie Ziff; Peppi Prasit; John H. Hutchinson; Jilly F. Evans; Daniel S. Lorrain

Lysophosphatidic acid (LPA) is a bioactive phospholipid that signals through a family of at least six G protein-coupled receptors designated LPA1–6. LPA type 1 receptor (LPA1) exhibits widespread tissue distribution and regulates a variety of physiological and pathological cellular functions. Here, we evaluated the in vitro pharmacology, pharmacokinetic, and pharmacodynamic properties of the LPA1-selective antagonist AM095 (sodium, {4′-[3-methyl-4-((R)-1-phenyl-ethoxycarbonylamino)-isoxazol-5-yl]-biphenyl-4-yl}-acetate) and assessed the effects of AM095 in rodent models of lung and kidney fibrosis and dermal wound healing. In vitro, AM095 was a potent LPA1 receptor antagonist because it inhibited GTPγS binding to Chinese hamster ovary (CHO) cell membranes overexpressing recombinant human or mouse LPA1 with IC50 values of 0.98 and 0.73 μM, respectively, and exhibited no LPA1 agonism. In functional assays, AM095 inhibited LPA-driven chemotaxis of CHO cells overexpressing mouse LPA1 (IC50 = 778 nM) and human A2058 melanoma cells (IC50 = 233 nM). In vivo, we demonstrated that AM095: 1) had high oral bioavailability and a moderate half-life and was well tolerated at the doses tested in rats and dogs after oral and intravenous dosing, 2) dose-dependently reduced LPA-stimulated histamine release, 3) attenuated bleomycin-induced increases in collagen, protein, and inflammatory cell infiltration in bronchalveolar lavage fluid, and 4) decreased kidney fibrosis in a mouse unilateral ureteral obstruction model. Despite its antifibrotic activity, AM095 had no effect on normal wound healing after incisional and excisional wounding in rats. These data demonstrate that AM095 is an LPA1 receptor antagonist with good oral exposure and antifibrotic activity in rodent models.


Archive | 2009

Antagonists of lysophosphatidic acid receptors

John Howard Hutchinson; Thomas Jon Seiders; Bowei Wang; Jeannie M. Arruda; Jeffrey Roger Roppe; Timothy Parr


Archive | 2009

Antagonists of prostaglandin d2 receptors

John Howard Hutchinson; Thomas Jon Seiders; Bowei Wang; Jeannie M. Arruda; Brian Andrew Stearns


Archive | 2009

N,N-disubstituted aminoalkylbiphenyl antagonists of prostaglandin D2 receptors

John Howard Hutchinson; Brian Andrew Stearns; Jill Melissa Scott; Yen Pham Truong; Jeffrey Roger Roppe; Nicholas Simon Stock; Jeannie M. Arruda; Thomas Jon Seiders; Bowei Wang; Deborah Volkots


Archive | 2010

Polycyclic antagonists of lysophosphatidic acid receptors

John Howard Hutchinson; Thomas Jon Seiders; Bowei Wang; Jeannie M. Arruda; Jeffrey Roger Roppe; Timothy Parr


Archive | 2009

Heteroalkyl biphenyl antagonists of prostaglandin D2 receptors

John Howard Hutchinson; Thomas Jon Seiders; Jeannie M. Arruda; Jeffrey Roger Roppe


Bioorganic & Medicinal Chemistry Letters | 2005

3-[Substituted]-5-(5-pyridin-2-yl-2H-tetrazol-2-yl)benzonitriles: identification of highly potent and selective metabotropic glutamate subtype 5 receptor antagonists.

Lida Tehrani; Nicholas D. Smith; Dehua Huang; Steve F. Poon; Jeffrey Roger Roppe; Thomas Jon Seiders; Deborah F. Chapman; Janice Chung; Merryl Cramer; Nicholas Cosford


Archive | 2011

Inhalable formulations of lysophosphatdic acid receptor antagonists

Thomas Jon Seiders; John Howard Hutchinson


Archive | 2009

Aminoalkylphenyl antagonists of prostaglandin d2 receptors

John Howard Hutchinson; Brian Andrew Stearns; Yen Pham Truong; Thomas Jon Seiders


Archive | 2010

Ophthalmic pharmaceutical compositions of DP2 receptor antagonists

John Howard Hutchinson; Thomas Jon Seiders; Nicholas Simon Stock

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John Howard Hutchinson

University of British Columbia

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Deborah Volkots

Millennium Pharmaceuticals

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