Brian H. Heasley, Ph.D.

Affiliations: 
University of Virginia, Charlottesville, VA 
Area:
Bioorganic and Synthetic Organic Chemistry
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"Brian Heasley"
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Timothy L. Macdonald grad student 2005 UVA
 (Design, synthesis and evaluation of subtype-selective and non-hydrolyzable lysophosphatidic acid receptor agonists and antagonists.)
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Publications

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Yu HN, Richardson TE, Nataraja S, et al. (2014) Discovery of substituted benzamides as follicle stimulating hormone receptor allosteric modulators. Bioorganic & Medicinal Chemistry Letters. 24: 2168-72
Heasley BH, Pacofsky GJ, Mamai A, et al. (2012) Synthesis and biological evaluation of antifungal derivatives of enfumafungin as orally bioavailable inhibitors of β-1,3-glucan synthase. Bioorganic & Medicinal Chemistry Letters. 22: 6811-6
Heasley B. (2011) Synthesis of limonoid natural products European Journal of Organic Chemistry. 19-46
Joshi EM, Heasley BH, MacDonald TL. (2009) 2-ABT-S-oxide detoxification by glutathione S-transferases A1-1, M1-1 and P1-1: Implications for toxicity associated with zileuton Xenobiotica. 39: 197-204
Heasley BH, Jarosz R, Carter KM, et al. (2004) A novel series of 2-pyridyl-containing compounds as lysophosphatidic acid receptor antagonists: development of a nonhydrolyzable LPA3 receptor-selective antagonist. Bioorganic & Medicinal Chemistry Letters. 14: 4069-74
Santos WL, Heasley BH, Jarosz R, et al. (2004) Synthesis and biological evaluation of phosphonic and thiophosphoric acid derivatives of lysophosphatidic acid. Bioorganic & Medicinal Chemistry Letters. 14: 3473-6
Heasley BH, Jarosz R, Lynch KR, et al. (2004) Initial structure-activity relationships of lysophosphatidic acid receptor antagonists: discovery of a high-affinity LPA1/LPA3 receptor antagonist. Bioorganic & Medicinal Chemistry Letters. 14: 2735-40
Joshi EM, Heasley BH, Chordia MD, et al. (2004) In Vitro Metabolism of 2-Acetylbenzothiophene: Relevance to Zileuton Hepatotoxicity Chemical Research in Toxicology. 17: 137-143
Heise CE, Santos WL, Schreihofer AM, et al. (2001) Activity of 2-substituted lysophosphatidic acid (LPA) analogs at LPA receptors: discovery of a LPA1/LPA3 receptor antagonist. Molecular Pharmacology. 60: 1173-80
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