Michael J. Potter
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Postdoctoral Research Associate
Also affiliated: National Institute of Genetics (1968); California Institute of Technology (1965); National Institutes of Health (1957–2012); Albert Einstein College of Medicine (1971); United States Food and Drug Administration (1973); Mayo Clinic (1979); NewYork–Presbyterian Hospital (1972–1974); University of Wisconsin–Madison (1980–1992); Howard University (1988); North Carolina State University (1967); Institute of Cancer Research (2007); Uniformed Services University of the Health Sciences (1980–1994); University of Cambridge (1997–2019); Southmead Hospital (1991); Hahnemann University Hospital (1988); University of Mississippi Medical Center (1980); United States Public Health Service (1965); University of Illinois Chicago (1973); National Institute of Arthritis and Musculoskeletal and Skin Diseases (2008); Presbyterian Hospital (1974); St Mary's Hospital (1967); Jackson Laboratory (1973–1988); National Cancer Institute (1973–1991); Frederick National Laboratory for Cancer Research (1989); National Cancer Institute (1973); National Institute of Allergy and Infectious Diseases (1959–2002); National Cancer Institute (1957–2012); Center for Cancer Research (2002–2009); Instituto Nacional del Cáncer (1991); Weizmann Institute of Science (2008); Stony Brook University (1988); University of Maryland, College Park (1998); Korea Research Institute of Bioscience and Biotechnology (2002); Columbia University (1972–1981); University of Newcastle Australia (2022); Clemson University (2021); The University of Osaka (2002)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Michael Potter's research has focused on the study of immunoglobulin-producing tumors and myeloma proteins in mice, as well as related cellular mechanisms. His early work investigated transplantable mast-cell neoplasms and the characteristics of mouse myeloma proteins with antihapten antibody activity, such as those produced by plasma cell tumor MOPC-315. He has also examined the three-dimensional structure of specific mouse immunoglobulins and the nature of their antigen-binding sites.
Later research explored the genetic basis of airway hyperreactivity, identifying the Tapr locus and the linked Tim gene family. Potter also studied macrophage-derived factors essential for plasmacytoma survival and proliferation in vitro. More recent work has delved into the role of Smad4 signaling in T cells for suppressing gastrointestinal cancer and the neoplastic transformation of mast cells by Abelson-MuLV, including the abrogation of IL-3 dependence through nonautocrine mechanisms.
Potter's extensive publication record and high citation counts reflect a sustained engagement with these research areas. He has collaborated with researchers at the University of Arkansas at Fayetteville, including William J. Richardson and Sam Coeyman.
Metrics
- h-index: 67
- Publications: 433
- Citations: 15,471
Positions
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Postdoctoral Research Associate 2023–presentUniversity of Arkansas at Fayetteville Ralph E. Martin Department of Chemical Engineering ORCID
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Graduate Research Assistant 2017–2022Clemson University Dept. of Bioengineering ORCID
Selected Publications
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Heart Scar-In-A-Dish: Tissue Culture Platform to Study Myocardial Injury and Mechanics In Vitro (2025)
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Heart Scar-In-A-Dish: Tissue Culture Platform to Study Myocardial Infarct Healing In Vitro (2025)
Collaboration Network
Top Collaborators
- Heart Scar-In-A-Dish: Tissue Culture Platform to Study Myocardial Infarct Healing In Vitro
- Heart Scar-In-A-Dish: Tissue Culture Platform to Study Myocardial Infarct Healing In Vitro
- Heart Scar-In-A-Dish: Tissue Culture Platform to Study Myocardial Infarct Healing In Vitro
- Heart Scar-In-A-Dish: Tissue Culture Platform to Study Myocardial Injury and Mechanics In Vitro
- Heart Scar-In-A-Dish: Tissue Culture Platform to Study Myocardial Injury and Mechanics In Vitro
- Heart Scar-In-A-Dish: Tissue Culture Platform to Study Myocardial Injury and Mechanics In Vitro
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