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Medicine

D-Index
73
Citations
19716
World Ranking
19644
National Ranking
1769

Overview

Paul G. Winyard is affiliated with the University of Exeter in the United Kingdom. Their research primarily focuses on the fields of Medicine and Biochemistry, Genetics and Molecular Biology, with notable contributions to subfields including Physiology, Molecular Biology, Genetics, Materials Chemistry, and Biomedical Engineering.

Their scientific work covers a range of topics, particularly:

  • Nitric Oxide and Endothelin Effects
  • Genomics, phytochemicals, and oxidative stress
  • Advanced Nanomaterials in Catalysis
  • Salivary Gland Disorders and Functions
  • Oral microbiology and periodontitis research
  • Metabolism and Genetic Disorders
  • Tryptophan and brain disorders

Paul G. Winyard's recent publications illustrate active engagement in cardiovascular, metabolic, and molecular biology research. Key papers include:

  • Network analysis of nitrate-sensitive oral microbiome reveals interactions with cognitive function and cardiovascular health across dietary interventions, 2021, published in Redox Biology
  • Nitric Oxide Releasing Nanomaterials for Cardiovascular Applications, 2023, published in JACC Basic to Translational Science
  • S-nitrosothiols, and other products of nitrate metabolism, are increased in multiple human blood compartments following ingestion of beetroot juice, 2021, published in Redox Biology
  • Evaluation of Bioactive Properties of Lipophilic Fractions of Edible and Non-Edible Parts of Nasturtium officinale (Watercress) in a Model of Human Malignant Melanoma Cells, 2022, published in Pharmaceuticals
  • Autoantibody and T cell responses to oxidative post-translationally modified insulin neoantigenic peptides in type 1 diabetes, 2022, published in Diabetologia

Their work has appeared frequently in specialized scientific journals, with multiple papers published in venues such as Redox Biology, Nitric Oxide, Nutrients, Antioxidants, and bioRxiv (Cold Spring Harbor Laboratory).

Collaborations are a frequent element of their research, with prominent coauthors including Miranda J. Smallwood, Anni Vanhatalo, Andrew M. Jones, Joanna E. L'Heureux, and Sotiris Kyriakou. These collaborations highlight a multidisciplinary approach and a network within molecular and cardiovascular research communities.

Best Publications

  • Dietary nitrate supplementation reduces the O2 cost of low-intensity exercise and enhances tolerance to high-intensity exercise in humans

    Stephen J. Bailey;Paul Winyard;Anni Vanhatalo;Jamie R. Blackwell

  • Clinical Relevance of Biomarkers of Oxidative Stress

    Jeroen Frijhoff;Paul Graham Winyard;Neven Zarkovic;Sean Ss Davies

  • Dietary nitrate supplementation enhances muscle contractile efficiency during knee-extensor exercise in humans

    Stephen J. Bailey;Jonathan Fulford;Anni Vanhatalo;Paul G. Winyard

  • Acute and chronic effects of dietary nitrate supplementation on blood pressure and the physiological responses to moderate-intensity and incremental exercise

    Anni Vanhatalo;Stephen J. Bailey;Jamie R. Blackwell;Fred J. DiMenna

  • Free radicals in inflammation: second messengers and mediators of tissue destruction

    V R Winrow;P G Winyard;C J Morris;D R Blake

  • Beetroot juice and exercise: pharmacodynamic and dose-response relationships

    Lee J. Wylie;James Kelly;Stephen J. Bailey;Jamie R. Blackwell

  • Acute Dietary Nitrate Supplementation Improves Cycling Time Trial Performance

    Katherine E. Lansley;Paul G. Winyard;Stephen J. Bailey;Anni Vanhatalo

  • Dietary nitrate supplementation reduces the O2 cost of walking and running: a placebo-controlled study

    Katherine E. Lansley;Paul G. Winyard;Jonathan Fulford;Anni Vanhatalo

  • Activation of the transcription factor nuclear factor‐κB in human inflamed synovial tissue

    R. Marok;P. G. Winyard;P. G. Winyard;A. Coumbe;M. L. Kus

  • Hydrogen sulfide and inflammation: the good, the bad, the ugly and the promising.

    Matthew Whiteman;Paul G Winyard

  • Generation of Nitric Oxide by a Nitrite Reductase Activity of Xanthine Oxidase: A Potential Pathway for Nitric Oxide Formation in the Absence of Nitric Oxide Synthase Activity☆

    Zhi Zhang;Declan Naughton;Paul G. Winyard;Nigel Benjamin

  • Oxidative DNA damage and cellular sensitivity to oxidative stress in human autoimmune diseases.

    S Bashir;G Harris;M A Denman;D R Blake

  • Dietary nitrate reduces muscle metabolic perturbation and improves exercise tolerance in hypoxia.

    Anni Vanhatalo;Jonathan Fulford;Stephen J. Bailey;James R. Blackwell

  • Effect of dietary nitrate on blood pressure, endothelial function, and insulin sensitivity in type 2 diabetes.

    Mark Gilchrist;Paul G. Winyard;Kunihiko Aizawa;Christine Anning

  • Effects of short-term dietary nitrate supplementation on blood pressure, O2 uptake kinetics, and muscle and cognitive function in older adults

    James Kelly;Jonathan Fulford;Anni Vanhatalo;Jamie R. Blackwell

  • Myeloperoxidase and oxidative stress in rheumatoid arthritis

    Lisa K Stamp;Irada Khalilova;Joanna M Tarr;Revathy Senthilmohan

  • Dietary nitrate--good or bad?

    Mark Gilchrist;Paul G. Winyard;Nigel Benjamin

  • Cerebral and ocular toxicity induced by desferrioxamine.

    D R Blake;P Winyard;J Lunec;A Williams

  • Hydrogen sulfide and nitric oxide interactions in inflammation

    Maria Letizia Lo Faro;Bridget Fox;Jacqueline L. Whatmore;Paul G. Winyard

  • Acute and chronic effects of dietary nitrate supplementation on blood pressure and the physiological responses to moderate-intensity and incremental exercise

    Anni Vanhatalo;Stephen J. Bailey;Jamie R. Blackwell;Fred J. DiMenna

Frequent Co-Authors

Andrew M. Jones
Andrew M. Jones University of Exeter
Matthew Whiteman
Matthew Whiteman University of Exeter
Paul Eggleton
Paul Eggleton University of Exeter
David R. Blake
David R. Blake University of Bath
Claus Jacob
Claus Jacob Saarland University
Lorna W. Harries
Lorna W. Harries University of Exeter
Brian R. Davidson
Brian R. Davidson University College London
Robert C. Hider
Robert C. Hider King's College London
Jennifer A. Littlechild
Jennifer A. Littlechild University of Exeter
Shaowei Zhang
Shaowei Zhang University of Exeter

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