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Medicine

D-Index
85
Citations
28816
World Ranking
14529
National Ranking
7350

Overview

Gary W. Miller is affiliated with Columbia University in the United States. Their research spans several interconnected disciplines, primarily focusing on the interface between biochemistry, molecular biology, environmental science, and medicine.

The scientist's work is categorized under main fields of study including Biochemistry, Genetics and Molecular Biology, Environmental Science, and Medicine. Their research further extends into subfields such as Health, Toxicology and Mutagenesis, Molecular Biology, Public Health, Environmental and Occupational Health, Physiology, and Neurology.

Miller's research addresses a range of topics related to health and the environment. These include Health, Environment, Cognitive Aging, Metabolomics and Mass Spectrometry Studies, Nutritional Studies and Diet, the Delphi Technique in Research, Genetics, Aging, and Longevity in Model Organisms, Alzheimer's disease research and treatments, as well as Parkinson's Disease Mechanisms and Treatments.

Recent significant papers authored or co-authored by Miller include:

  • The exposome and health: Where chemistry meets biology (2020, Science)
  • Sampling interstitial fluid from human skin using a microneedle patch (2020, Science Translational Medicine)
  • Metformin rescues Parkinson's disease phenotypes caused by hyperactive mitochondria (2020, Proceedings of the National Academy of Sciences)
  • The exposome and liver disease - how environmental factors affect liver health (2023, Journal of Hepatology)
  • Towards a comprehensive characterisation of the human internal chemical exposome: Challenges and perspectives (2021, Environment International)

Miller frequently collaborates with several researchers, including Vrinda Kalia, Dean P. Jones, Meghan L. Bucher, Yunjia Lai, and Badri N. Vardarajan. Collaborations with these co-authors have contributed to a substantial volume of research output.

Their work is regularly published in scientific venues such as bioRxiv (Cold Spring Harbor Laboratory), Exposome, Alzheimer's & Dementia, ISEE Conference Abstracts, and Environmental Health Perspectives.

Best Publications

  • Chronic inflammation in the etiology of disease across the life span

    David Furman;Judith Campisi;Judith Campisi;Eric Verdin;Pedro Carrera-Bastos

  • Mechanism of toxicity in rotenone models of Parkinson's disease.

    Todd B. Sherer;Ranjita Betarbet;Claudia M. Testa;Byoung Boo Seo

  • A selective TrkB agonist with potent neurotrophic activities by 7,8-dihydroxyflavone

    Sung-Wuk Jang;Xia Liu;Manuel Yepes;Kennie R. Shepherd

  • Cocaine self-administration in dopamine-transporter knockout mice.

    Beatriz A. Rocha;Fabio Fumagalli;Raul R. Gainetdinov;Sara R. Jones

  • The exposome and health: Where chemistry meets biology

    Roel Vermeulen;Emma L. Schymanski;Albert-László Barabási;Albert-László Barabási;Albert-László Barabási;Gary W. Miller

  • Hyperactivity and impaired response habituation in hyperdopaminergic mice

    Xiaoxi Zhuang;Ronald S. Oosting;Sara R. Jones;Raul R. Gainetdinov

  • Exercise induces behavioral recovery and attenuates neurochemical deficits in rodent models of Parkinson's disease

    J.L Tillerson;W.M Caudle;M.E Reverón;G.W Miller

  • Mice lacking the norepinephrine transporter are supersensitive to psychostimulants

    Fei Xu;Raul R. Gainetdinov;William C. Wetsel;Sara R. Jones

  • The Nature of Nurture: Refining the Definition of the Exposome

    Gary W. Miller;Dean P. Jones

  • Knockout of the Vesicular Monoamine Transporter 2 Gene Results in Neonatal Death and Supersensitivity to Cocaine and Amphetamine

    Yan Min Wang;Raul R. Gainetdinov;Fabio Fumagalli;Fei Xu

  • Reduced Vesicular Storage of Dopamine Causes Progressive Nigrostriatal Neurodegeneration

    W. Michael Caudle;Jason R. Richardson;Min Z. Wang;Tonya N. Taylor

  • Forced Limb-Use Effects on the Behavioral and Neurochemical Effects of 6-Hydroxydopamine

    Jennifer L. Tillerson;Ann D. Cohen;Jennifer Philhower;Gary W. Miller

  • Dopamine transporters and neuronal injury

    Gary W Miller;Raul R Gainetdinov;Allan I Levey;Marc G Caron

  • Mechanism of toxicity of pesticides acting at complex I: relevance to environmental etiologies of Parkinson’s disease

    Todd B. Sherer;Jason R. Richardson;Claudia M. Testa;Byoung Boo Seo

  • Immunocytochemical localization of the dopamine transporter in human brain.

    Brian J. Ciliax;Genny W. Drash;Julie K. Staley;Sharon Haber

  • Parkinson's disease and pesticides: a toxicological perspective.

    Jaime M. Hatcher;Kurt D. Pennell;Kurt D. Pennell;Gary W. Miller

  • A new complement function: solubilization of antigen-antibody aggregates

    Gary W. Miller;Victor Nussenzweig

  • Nonmotor Symptoms of Parkinson's Disease Revealed in an Animal Model with Reduced Monoamine Storage Capacity

    Tonya N. Taylor;W. Michael Caudle;Kennie R. Shepherd;AliReza Noorian

  • Paraquat Neurotoxicity is Distinct from that of MPTP and Rotenone

    Jason R. Richardson;Yu Quan;Todd B. Sherer;J. Timothy Greenamyre

  • Erratum: Cocaine self-administration in dopamine-transporter knockout mice

    Beatriz Rocha;Fabio Fumagalli;Raul Gainetdinov;Sara Jones

Frequent Co-Authors

Dean P. Jones
Dean P. Jones Emory University
Kurt D. Pennell
Kurt D. Pennell Brown University
Allan I. Levey
Allan I. Levey Emory University
Marc G. Caron
Marc G. Caron Duke University
Raul R. Gainetdinov
Raul R. Gainetdinov Saint Petersburg State University
J. Timothy Greenamyre
J. Timothy Greenamyre University of Pittsburgh
Roel Vermeulen
Roel Vermeulen Utrecht University
Rick G. Schnellmann
Rick G. Schnellmann Medical University of South Carolina
Sara R. Jones
Sara R. Jones Wake Forest University
Victor Nussenzweig
Victor Nussenzweig New York University

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