World's Best Scientists 2026 revealed!

Overview

William A. Pryor was affiliated with Louisiana State University in the United States during their academic career. Their professional record does not include publicly listed recent papers, co-authors, or frequent publication venues, which limits the detailed mapping of their research outputs and collaborations.

There is no information available regarding the specific fields or subfields of study, or the main topics they focused on in their work. Similarly, there are no records of book publications or awards attributed to this scientist. This absence of detailed bibliometric data suggests that the publicly accessible academic footprint for William A. Pryor may be limited or undocumented in major research databases.

Given the scientist is deceased, all references to their professional activities are presented in the past tense. Their affiliation with Louisiana State University indicates an engagement within an academic institution that could have encompassed teaching, research, or both, although specifics remain unavailable.

The lack of documented publications and research topics makes it difficult to provide a comprehensive overview of their scientific contributions or to identify areas of expertise. Likewise, the absence of frequent journal or conference venues suggests limited recorded activity within indexed forums of scholarly communication.

Overall, William A. Pryor's profile reflects an academic association without publicly visible information on research outputs, collaborations, or recognized distinctions commonly used to evaluate a scientist's career.

Best Publications

  • Free-radical chemistry of cigarette smoke and its toxicological implications.

    Daniel F. Church;William A. Pryor

  • Peroxynitrite, a cloaked oxidant formed by nitric oxide and superoxide.

    W. H. Koppenol;J. J. Moreno;William A. Pryor;H. Ischiropoulos

  • Oxidants in cigarette smoke. Radicals, hydrogen peroxide, peroxynitrate, and peroxynitrite.

    William A. Pryor;Koni Stone

  • Oxy-radicals and related species: their formation, lifetimes, and reactions.

    William A. Pryor

  • Oxidative chemistry of nitric oxide: the roles of superoxide, peroxynitrite, and carbon dioxide

    Giuseppe L. Squadrito;William A. Pryor

  • The kinetics of the autoxidation of polyunsaturated fatty acids

    John P. Cosgrove;Daniel F. Church;William A. Pryor

  • Autoxidation of polyunsaturated fatty acids: II. A suggested mechanism for the formation of TBA-reactive materials from prostaglandin-like endoperoxides.

    William A. Pryor;J. P. Stanley;E. Blair

  • Role of free radicals in the toxicity of airborne fine particulate matter.

    Barry Dellinger;William A. Pryor;Rafael Cueto;Giuseppe L. Squadrito

  • Free radical biology and medicine: it's a gas, man!

    William A. Pryor;Kendall N. Houk;Christopher S. Foote;Jon M. Fukuto

  • The role of free radicals in asbestos-induced diseases.

    David W. Kamp;Philip Graceffa;William A. Pryor;Sigmund A. Weitzman

  • Quinoid redox cycling as a mechanism for sustained free radical generation by inhaled airborne particulate matter

    Giuseppe L. Squadrito;Rafael Cueto;Barry Dellinger;William A. Pryor

  • Letter: A suggested mechanism for the production of malonaldehyde during the autoxidation of polyunsaturated fatty acids. Nonenzymatic production of prostaglandin endoperoxides during autoxidation.

    William A. Pryor;J. P. Stanley

  • Reaction of Uric Acid with Peroxynitrite and Implications for the Mechanism of Neuroprotection by Uric Acid

    Giuseppe L. Squadrito;Rafael Cueto;Andres E. Splenser;Andres E. Splenser;Athanasios Valavanidis

  • One- and two-electron oxidations of methionine by peroxynitrite.

    William A. Pryor;Xia Jin;Giuseppe L. Squadrito

  • Vitamin E and heart disease:

    Unknown

  • The Radicals in Cigarette Tar: Their Nature and Suggested Physiological Implications

    William A. Pryor;Brian J. Hales;Pavle I. Premovic;Daniel F. Church

  • A rapid screening test to determine the antioxidant potencies of natural and synthetic antioxidants

    William A. Pryor;Joseph A. Cornicelli;Larry J. Devall;Bradley Tait

  • The cascade mechanism to explain ozone toxicity: The role of lipid ozonation products

    William A. Pryor;Giuseppe L. Squadrito;Mitchell Friedman

  • Fractionation of aqueous cigarette tar extracts: fractions that contain the tar radical cause DNA damage.

    William A. Pryor;Koni Stone;Lun-Yi Zang;Eliezer Bermúdez

  • Mechanisms of radical formation from reactions of ozone with target molecules in the lung.

    William A. Pryor

  • Oxidation of thiols by nitric oxide and nitrogen dioxide: synthetic utility and toxicological implications

    William A. Pryor;Daniel F. Church;C. K. Govindan;George Crank

Frequent Co-Authors

Giuseppe L. Squadrito
Giuseppe L. Squadrito University of Alabama at Birmingham
Kendall N. Houk
Kendall N. Houk University of California, Los Angeles
Barry Dellinger
Barry Dellinger Louisiana State University
Michael J. Thomas
Michael J. Thomas Medical College of Wisconsin
Ned A. Porter
Ned A. Porter Vanderbilt University
Kelvin J.A. Davies
Kelvin J.A. Davies University of Southern California
Steven A. Belinsky
Steven A. Belinsky University of New Mexico
Gidon Czapski
Gidon Czapski Hebrew University of Jerusalem
Christopher S. Foote
Christopher S. Foote University of California, Los Angeles
David W. Kamp
David W. Kamp Northwestern University

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Best Scientists Citing William A. Pryor