H. Terence Cook
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Also affiliated: University of London (2008); Mayo Clinic (2015); Imperial College Healthcare NHS Trust (2012–2025); Chiba University (2002); University of Washington (1996); University of Cambridge (2019–2020); The Royal Free Hospital (2009); Hammersmith Hospital (1998–2024); Imperial Valley College (2010); Cambridge University Hospitals NHS Foundation Trust (2019–2020); Institute for Diabetes Discovery (2009); Papworth Hospital NHS Foundation Trust (2020); Kids' Brain Tumor Cure Foundation (2005); North West London Pathology (2025); Institut de Transplantation Urologie en Nephrologie (2011); St Mary's Hospital (1994); National Cancer Registry (2024); University of Washington Applied Physics Laboratory (1996); Oxford BioMedica (United Kingdom) (2003); Centre for Inflammation Research (2010–2022); Genomics (United Kingdom) (2013); Addenbrooke's Hospital (2019–2020); Roland Hill (United Kingdom) (2024); Department of Archaeology (2008); NIHR Cambridge Biomedical Research Centre (2019); University College London (2009–2024); Imperial College London (1998–2025); Seattle University (1996); Columbia University (2013); Cardiff University (2024)
Research Areas
Biomedical Subjects
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Biography and Research Information
OverviewAI-generated summary
H. Terence Cook's research program focuses on the role of complement proteins in immune responses and disease pathogenesis, particularly in kidney disorders. His work has investigated the mechanisms by which complement system activation contributes to glomerulonephritis and other renal pathologies.
Cook has published on the effects of deficiencies in complement components, such as C1q and factor H, on the development of kidney disease, often utilizing mouse models. His research also explores the clearance of apoptotic cells and the implications of this process in autoimmunity and systemic lupus erythematosus. He has contributed to consensus reports and conferences addressing C3 glomerulopathy and atypical hemolytic uremic syndrome, reflecting his engagement with the broader nephrology community.
With an h-index of 61 and over 16,500 citations across 167 publications, Cook is recognized as a highly cited researcher. His collaborations include work with Rupak Pathak, Ruofei Du, Enoch K. Larrey, and Edith Nathalie Pineda at the University of Arkansas for Medical Sciences.
Metrics
- h-index: 61
- Publications: 167
- Citations: 16,576
Selected Publications
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Geranylgeranyl Transferase Inhibitors Mitigate Intestinal Radiation Toxicity (2025)
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Sex-specific immune alterations in mice following long-term simulated microgravity and chronic irradiation (2025)
Collaboration Network
Top Collaborators
- Sex-specific immune alterations in mice following long-term simulated microgravity and chronic irradiation
- Geranylgeranyl Transferase Inhibitors Mitigate Intestinal Radiation Toxicity
- Sex-specific immune alterations in mice following long-term simulated microgravity and chronic irradiation
- Geranylgeranyl Transferase Inhibitors Mitigate Intestinal Radiation Toxicity
- Sex-specific immune alterations in mice following long-term simulated microgravity and chronic irradiation
- Geranylgeranyl Transferase Inhibitors Mitigate Intestinal Radiation Toxicity
- Sex-specific immune alterations in mice following long-term simulated microgravity and chronic irradiation
- Geranylgeranyl Transferase Inhibitors Mitigate Intestinal Radiation Toxicity
- Sex-specific immune alterations in mice following long-term simulated microgravity and chronic irradiation
- Geranylgeranyl Transferase Inhibitors Mitigate Intestinal Radiation Toxicity
- Sex-specific immune alterations in mice following long-term simulated microgravity and chronic irradiation
- Sex-specific immune alterations in mice following long-term simulated microgravity and chronic irradiation
- Sex-specific immune alterations in mice following long-term simulated microgravity and chronic irradiation
- Geranylgeranyl Transferase Inhibitors Mitigate Intestinal Radiation Toxicity
- Geranylgeranyl Transferase Inhibitors Mitigate Intestinal Radiation Toxicity
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