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Updated: Aug 25, 2025

SA-β-Galactosidase-Based Screening Assay for the Identification of Senotherapeutic Drugs
Published on: June 28, 2019
We are all aging, and here's why.
Atharva Shinde1, Gargi Deore1, Kedar P Navsariwala1
1Dr. D. Y. Patil Biotechnology and Bioinformatics Institute Dr. D. Y. Patil Vidyapeeth Pune Maharashtra India.
This review explores aging demographics, molecular pathways, and research methods in longevity science. It details senescent cells, key aging pathways, and drugs like rapamycin and metformin for extending healthspan.
Area of Science:
- Gerontology and Longevity Science
- Molecular Biology and Genetics
- Biomedical Research Methodologies
Background:
- Global aging demographics and life expectancy trends, including gender disparities.
- Hallmarks of aging, integral causes, and the role of senescent cells and their secretory phenotype.
- Senescence-associated secretory phenotype's impact on inflammation and longevity.
Purpose of the Study:
- To review global aging statistics and demographics.
- To elucidate the molecular mechanisms and hallmarks of aging.
- To explore research methodologies and pharmacological interventions for longevity.
Main Methods:
- Discussion of aging demographics and life expectancy statistics.
- Detailed explanation of molecular pathways (mTOR, insulin signaling, Nrf2, FOXO, PI3-Akt, Sirtuins, AMPK).
- Categorization of research methodologies: in vitro, in vivo, and in silico.
Main Results:
- Senescent cells play a role in inflammation and affect longevity.
- Key molecular pathways significantly modulate the aging process.
- Various drugs (rapamycin, metformin, resveratrol) show potential in attenuating aging.
Conclusions:
- Understanding aging requires examining demographics, molecular pathways, and cellular mechanisms.
- Diverse research methods are crucial for advancing longevity science.
- Pharmacological interventions targeting aging pathways offer promising avenues for healthspan extension.
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