Sumit Sarkar Source Confirmed
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Researcher
National Center for Toxicological Research
faculty
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Biography and Research Information
OverviewAI-generated summary
Sumit Sarkar's research focuses on neurodegenerative diseases, particularly Alzheimer's disease, and the underlying mechanisms of neurotoxicity. His work investigates the role of various factors, including metals and astrocytes, in the progression of Alzheimer's disease and associated neuropathology. Sarkar has explored specific aspects such as the glymphatic network and its role in the disease, as well as sex-related differences in neuropathology and cognitive deficits in mouse models.
His publications also address the connection between Alzheimer's disease and type 3 diabetes in specific populations, and he has conducted quantitative analyses of brain toxicity following exposure to specific compounds in rat models. Sarkar has also contributed to the development and evaluation of methods for localizing plaques and tangles in brain tissue, both in animal models and human subjects. He has a publication record of 107 papers, with 4,269 citations and an h-index of 35, designating him as a highly cited researcher. He leads a research group and maintains an active laboratory website, collaborating with researchers primarily from the National Center for Toxicological Research.
Metrics
- h-index: 35
- Publications: 107
- Citations: 4,269
Selected Publications
- Potential link of high fat diet and mRNA expression of Alzheimer's disease-related genes in the enteric mucosa of a rat model of Alzheimer's disease (2025) DOI
- Developing non-invasive molecular markers for early risk assessment of Alzheimer's disease (2025) DOI
- The incorporation of MALDI mass spectrometry imaging in studies to identify markers of toxicity following in utero opioid exposures in mouse fetuses (2024) DOI
- Evaluation and Characterization of Modified K114 Method to LocalizePlaques in Rodent and Plaques and Tangles in Human Brain Tissue (2024) DOI
- In vivo mapping of rat brain partial white matter content using hexachlorophene-induced neurotoxicity model (2024) DOI
- A novel humanized Tau‐FAD mice represent a robust model for studying AD‐related dysfunction (2023) DOI
- The role of astrocytes in the glymphatic network: a narrative review (2023) DOI
- Combining tissue clearing and Fluoro-Jade C labeling for neurotoxicity assessments (2023) DOI
- Assessment of sex-related neuropathology and cognitive deficits in the Tg-SwDI mouse model of Alzheimer’s disease (2022) DOI
- Development of early biomarkers of Alzheimer's disease: A precision medicine perspective (2022) DOI
- Evaluation of Styrylbenzene analog- FSB and its affinity to bind parenchymal plaques and tangles in patients of Alzheimer’s disease (2022) DOI
- Circulating biomarkers of neurotoxicity: Proteomics approach reveals fluidic endpoints of central nervous system toxicity in a rodent model of neurotoxicity (2021) DOI
- Role of metals in Alzheimer’s disease (2021) DOI
- Alzheimer’s disease: a step closer to understanding type 3 diabetes in African Americans (2021) DOI
- Global Neurotoxicity: Quantitative Analysis of Rat Brain Toxicity Following Exposure to Trimethyltin (2021) DOI
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