Pankaj Patyal
Researcher
University of Arkansas for Medical Sciences
faculty
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Biography and Research Information
OverviewAI-generated summary
Pankaj Patyal's research investigates the role of mitochondrial dysfunction in neuroinflammation and its connection to Alzheimer's disease pathologies. His work has explored how compounds like valine can improve mitochondrial function and offer protection against oxidative stress. Patyal has also examined the mechanisms by which lipopolysaccharides from *P. gingivalis* induce neuroinflammation, involving oxidative stress and inflammasome activation. His studies include proteomic analyses to understand these processes at a molecular level and have identified pathways, such as Rho/SRF, that modulate mitochondrial functions. Patyal also has experience studying the effects of dietary supplements on plasma protein expression in older adults. His research network includes significant collaborations with Ambika Verma, Gohar M. Azhar, Jeanne Y. Wei, and Robert R. Wolfe at the University of Arkansas for Medical Sciences.
Metrics
- h-index: 7
- Publications: 34
- Citations: 230
Selected Publications
- Biology of Aging I Antisense Oligonucleotide-Mediated SRF Reduction Ameliorates Mitochondrial Dysfunction in Cardiac Aging (2025) DOI
- P. gingivalis-LPS Activates the Alzheimer’s Disease-Associated Amyloid Secretase Pathway via Caspase-4 (2025) DOI
- Mitochondrial Dynamics in Aging Heart (2025) DOI
- Differential microRNA profiling of the Marshallese population in Arkansas reveals a higher association with chronic diseases (2025) DOI
- Porphyromonas gingivalis-Lipopolysaccharide Induced Caspase-4 Dependent Noncanonical Inflammasome Activation Drives Alzheimer’s Disease Pathologies (2025) DOI
- CARDIAC SPECIFIC OVEREXPRESSION OF SERUM RESPONSE FACTOR ALTERS MITOCHONDRIAL STRUCTURE AND FUNCTION (2024) DOI
- DIFFERENTIAL EFFECT OF SIRT1 ON MITOCHONDRIAL FUNCTION: INSIGHTS INTO MITOCHONDRIAL RESPIRATORY COMPLEXES (2024) DOI
- DIFFERENTIAL MICRORNAS PROFILING OF MARSHALLESE IN ARKANSAS IS ASSOCIATED WITH CHRONIC DISEASES OF AGING (2024) DOI
- P. GINGIVALIS-LPS PROMOTES AD/ADRD VIA CASPASE-4-MEDIATED NONCANONICAL INFLAMMASOME PATHWAY (2024) DOI
- The Role of Sirtuin-1 Isoforms in Regulating Mitochondrial Function (2024) DOI
- Proteomic analysis of P. gingivalis-Lipopolysaccharide induced neuroinflammation in SH-SY5Y and HMC3 cells (2024) DOI
- Deletion of Interleukin-1β Converting Enzyme Alters Mouse Cardiac Structure and Function (2024) DOI
- Short‐Term Ingestion of Essential Amino Acid Based Nutritional Supplements or Whey Protein Improves the Physical Function of Older Adults Independently of Gut Microbiome (2024) DOI
- Inhibitors of Rho/MRTF/SRF Transcription Pathway Regulate Mitochondrial Function (2024) DOI
- EAAS AND WHEY PROTEIN MAY IMPROVE PHYSICAL FUNCTION OF OLDER ADULTS INDEPENDENTLY OF GUT MICROBIOME (2023) DOI
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