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Senotherapeutic peptide treatment reduces biological age and senescence burden in human skin models
Medicine and Healthnpj Aging

Senotherapeutic peptide treatment reduces biological age and senescence burden in human skin models

A. Zonari, L. E. Brace, et al.

Discover how researchers Alessandra Zonari and colleagues have unveiled Peptide 14, a remarkable agent that reduces cellular senescence in human skin. This groundbreaking study reveals its potential in combating age-related skin deterioration, promoting a youthful phenotype, and safely lessening biological age. Don't miss out on these exciting findings!... show more
Abstract
Cellular senescence is known to play a role in age-related skin function deterioration which potentially influences longevity. Here, a two-step phenotypic screening was performed to identify senotherapeutic peptides, leading to the identification of Peptide (Pep) 14. Pep 14 effectively decreased human dermal fibroblast senescence burden induced by Hutchinson-Gilford Progeria Syndrome (HGPS), chronological aging, ultraviolet-B radiation (UVB), and etoposide treatment, without inducing significant toxicity. Pep 14 functions via modulation of PP2A, an understudied holoenzyme that promotes genomic stability and is involved in DNA repair and senescence pathways. At the single-cell level, Pep 14 modulates genes that prevent senescence progression by arresting the cell cycle and enhancing DNA repair, which consequently reduce the number of cells progressing to late senescence. When applied on aged ex vivo skin, Pep 14 promoted a healthy skin phenotype with structural and molecular resemblance to young ex vivo skin, decreased the expression of senescence markers, including SASP, and reduced the DNA methylation age. In summary, this work shows the safe reduction of the biological age of ex vivo human skins by a senomorphic peptide.
Publisher
npj Aging
Published On
May 22, 2023
Authors
Alessandra Zonari, Lear E. Brace, Kallie Al-Katib, William F. Porto, Daniel Foyt, Mylieneth Guiang, Edgar Andres Ochoa Cruz, Bailey Marshall, Melissa Gentz, Gabriela Rapozo Guimarães, Octavio L. Franco, Carolina R. Oliveira, Mariana Boroni, Juliana L. Carvalho
Tags
cellular senescencePeptide 14human dermal fibroblastsbiological ageskin aginggenomic stabilityDNA repair
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