Cellular rejuvenation allows new organisms to develop from aged DNA
Cellular rejuvenation techniques, such as partial reprogramming and induced pluripotency, can reverse markers of aging and reset cellular physiology in aged somatic cells.
The retrieved papers on cellular reprogramming, partial reprogramming, and the reversal of cellular aging via embryonic-like states consistently support the claim that cellular rejuvenation can reset the physiological and molecular age of cells derived from aged sources.
Cellular rejuvenation techniques can reverse markers of aging and reset cellular physiology in aged somatic cells.
Patrick T. Paine, Ada Nguyen, Alejandro Ocampo. Partial cellular reprogramming: A deep dive into an emerging rejuvenation technology. 2023. https://doi.org/10.1111/acel.14039
Partial cellular reprogramming acts as an emerging rejuvenation technology capable of modulating cellular age and reversing aging phenotypes.
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Jean-Marc Lemaitre. Reversibility of cellular aging by reprogramming through an embryonic-like state : a new paradigm for human cell rejuvenation. 2014. https://doi.org/10.5195/cajgh.2013.88
Reprogramming senescent and aged somatic cells into induced pluripotent stem cells or through embryonic-like states resets cellular age, telomere size, and physiology, demonstrating rejuvenation from aged DNA.
Diana Guallar. Roadmap of the Early Events of <i>In Vivo</i> Somatic Cell Reprogramming. 2023. https://doi.org/10.1089/cell.2022.0160
In vivo somatic cell reprogramming using OSKM factors shares conserved pathways critical for regeneration and rejuvenation across tissues.
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