S. Patel
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Also affiliated: California Institute of Technology (1988–1991); Uppsala University Hospital (1988); Stockholm University (1988); Genesys (United States) (1999); University of Oxford (2024); MSD (UK) Limited (United Kingdom) (1988); Bristol-Myers Squibb (United States) (2015); University of Southampton (1988); Kennedy Institute of Rheumatology (1999); Michigan State University (2013); Stanford University (1999)
Research Areas
Biomedical Subjects
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Biography and Research Information
OverviewAI-generated summary
S. Patel's research has investigated the molecular mechanisms underlying cellular respiration and immune responses. Early work focused on the structural and functional characterization of mitochondrial NADH dehydrogenase, including determining the cDNA-derived amino acid sequence of a key subunit in cattle and studying its transmembrane organization in human mitochondria. This research also explored mitochondrial autoantigens relevant to primary biliary cirrhosis.
More recently, Patel's work has extended into the field of immunology, examining the impact of chimeric immune receptor extracellular protein domains on T cell function. This includes studies on adoptive immunotherapy and the efficacy outcomes of treatments involving specific antibody titrations. Patel has also contributed to materials science with research on biaxial strain tuning of excitons in monolayer MoSe2.
Metrics
- h-index: 6
- Publications: 41
- Citations: 175
Selected Publications
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Tuning terahertz optomechanics of MoS 2 bilayers with homogeneous in-plane strain (2026)
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Biaxial strain tuning of excitons in monolayer MoSe 2 by high-temperature physical vapor deposition (2024)
Collaboration Network
Top Collaborators
- Biaxial strain tuning of excitons in monolayer MoSe 2 by high-temperature physical vapor deposition
- Biaxial strain tuning of excitons in monolayer MoSe 2 by high-temperature physical vapor deposition
- Biaxial strain tuning of excitons in monolayer MoSe 2 by high-temperature physical vapor deposition
- Biaxial strain tuning of excitons in monolayer MoSe 2 by high-temperature physical vapor deposition
- Biaxial strain tuning of excitons in monolayer MoSe 2 by high-temperature physical vapor deposition
- Biaxial strain tuning of excitons in monolayer MoSe 2 by high-temperature physical vapor deposition
- Biaxial strain tuning of excitons in monolayer MoSe 2 by high-temperature physical vapor deposition
- Biaxial strain tuning of excitons in monolayer MoSe 2 by high-temperature physical vapor deposition
- Biaxial strain tuning of excitons in monolayer MoSe 2 by high-temperature physical vapor deposition
- Tuning terahertz optomechanics of MoS 2 bilayers with homogeneous in-plane strain
- Tuning terahertz optomechanics of MoS 2 bilayers with homogeneous in-plane strain
- Tuning terahertz optomechanics of MoS 2 bilayers with homogeneous in-plane strain
- Tuning terahertz optomechanics of MoS 2 bilayers with homogeneous in-plane strain
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