In Vivo Partial Reprogramming of Senescent Cells for Rejuvenation: Technology Landscape and Roadmap
收藏DataCite Commons2026-02-10 更新2026-05-03 收录
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https://www.openicpsr.org/openicpsr/project/245025/version/V1/view
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This study aims to systematically review the current landscape and future roadmap of partial reprogramming–based rejuvenation biotechnology, which seeks to revert senescent and aged cells in vivo toward a younger functional state while preserving cellular identity. Recent advances in the field have demonstrated promising preclinical potential through diverse approaches, including epigenetic resetting via transient expression of OSK/OSKM transcription factors, selective reprogramming using senescence-associated promoters (such as p16), CRISPRa-based regulation of youthful gene programs, and chemical partial reprogramming strategies.<br>In this research, these technologies are structured and organized according to delivery modalities (AAV, LNP-mRNA, and non-viral platforms), major safety considerations (tumorigenesis risk, loss of cellular identity, immune activation), and standardized evaluation biomarkers (epigenetic clocks, senescence markers, and functional endpoints). Furthermore, the study outlines disease-first translational pathways and a mid-to-long-term development roadmap, providing a foundational framework for the advancement of in vivo rejuvenation technologies as a next-generation platform for aging-related disease intervention and healthspan extension research.
提供机构:
ICPSR - Interuniversity Consortium for Political and Social Research
创建时间:
2026-02-10



