Natasha Jaiswal
Biochemistry, Genetics and Molecular Biology · Purdue University West Lafayette
Publications
59
Citations
1,597
Est. group size
—
Recurring co-author estimate
Active years
18
Publishing since 2009
Natasha Jaiswal's research focuses on cellular metabolism, particularly how signaling pathways like AKT regulate muscle mass, glucose uptake, and energy use in skeletal muscle, fat tissue, and the heart. Recent work also explores mitochondrial function in conditions such as Alzheimer's disease and heart failure, along with diet-related effects on metabolic health and inflammation. The work combines molecular biology techniques with physiology to understand metabolic diseases like diabetes and muscle wasting.
Publication output has been variable over the past decade with gaps in some years, but has increased notably in 2025 and 2026, suggesting a recent uptick in research activity.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Correction: Cell-type-specific dysregulation of mitochondrial calcium signalingin Alzheimer’s disease
Cell Communication and Signaling · 2026
- AKT Signaling Regulates Agrin-Mediated Acetylcholine Receptor Surface Density
Medicina · 2026
- Lactylation landscape of mitochondrial proteins in myocardial infarction
bioRxiv (Cold Spring Harbor Laboratory) · 2026
- Lactylation landscape of mitochondrial proteins in myocardial infarction
Redox Biology · 2026
- Dietary omega-6 arachidonic acid and omega-3 docosahexaenoic acid supplementation differentially impact skeletal muscle inflammaging in mice
bioRxiv (Cold Spring Harbor Laboratory) · 2026
- Divergent AKT Signalling Mechanisms Regulate GLUT4 Translocation and Glucose Uptake in Skeletal Muscle and Adipose Tissue
Journal of Cachexia Sarcopenia and Muscle · 2026
- Lactate homeostasis is maintained through regulation of glycolysis and lipolysis
Cell Metabolism · 2025
- Cell-type-specific dysregulation of mitochondrial calcium signaling in Alzheimer’s disease
Cell Communication and Signaling · 2025
- Mitochondrial connection to Alzheimer’s disease and heart failure
Current Opinion in Physiology · 2025
- Optimizing Macronutrient Ratios for Enhanced Metabolic Health and Skeletal Muscle Function
Current Developments in Nutrition · 2025
- Antibody blockade of activin type II receptors preserves skeletal muscle mass and enhances fat loss during GLP-1 receptor agonism
Molecular Metabolism · 2024
- GRK specificity and Gβγ dependency determines the potential of a GPCR for arrestin-biased agonism
Communications Biology · 2024
- Hybridization into a Bitopic Ligand Increased Muscarinic Receptor Activation for Isopilocarpine but Not for Pilocarpine Derivatives
Journal of Natural Products · 2023
- GRK specificity and Gβγ dependency determines a GPCR’s potential in biased agonism
bioRxiv (Cold Spring Harbor Laboratory) · 2023
- AKT controls protein synthesis and oxidative metabolism via combined mTORC1 and FOXO1 signalling to govern muscle physiology
Journal of Cachexia Sarcopenia and Muscle · 2021
- The Bulletin of Tokyo Dental College×3
- bioRxiv (Cold Spring Harbor Laboratory)×3
- Molecular Metabolism×2
- Journal of Cachexia Sarcopenia and Muscle×2
- Mucosal Immunology×2
- Chandan K. Maurya
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Ishrat Jahan
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Dasheng Wang
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Jeffrey S. Elmendorf
Biochemistry, Genetics and Molecular Biology · Indiana University
- Maria M. Mihaylova
Biochemistry, Genetics and Molecular Biology · The Ohio State University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 20, 2026.
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