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Topical ABT-263 treatment reduces aged skin senescence and improves subsequent wound healing
Abstract:
Senescent cells (SnC) accumulate in aging tissues, impairing their ability to undergo repair and regeneration following injury. Previous research has demonstrated that targeting tissue senescence with senolytics can enhance tissue regeneration and repair by selectively eliminating SnCs in specific aged tissues. In this study, we focused on eliminating SnC skin cells in aged mice to assess the effects on subsequent wound healing. We applied ABT-263 directly to the skin of 24-month-old mice over a 5-day period. Following topical ABT-263, aged skin demonstrated decreased gene expression of senescent markers p16 and p21, accompanied by reductions in SA-β-gal and p21-positive cells compared to DMSO controls. However, ABT-263 also triggered a temporary inflammatory response and macrophage infiltration in the skin. Bulk RNA sequencing of ABT-263-treated skin revealed prompt upregulation of genes associated with wound healing pathways, including hemostasis, inflammation, cell proliferation, angiogenesis, collagen synthesis, and extracellular matrix organization. Aged mice skin pre-treated with topical ABT-263 exhibited accelerated wound closure. In conclusion, topical ABT-263 effectively reduced several senescence markers in aged skin, thereby priming the skin for improved subsequent wound healing. This enhancement may be attributed to ABT-263-induced senolysis which in turn stimulates the expression of genes involved in extracellular matrix remodeling and wound repair pathways.
Insights
Targeting senescent cells (SnC) in aged skin with ABT-263 reduced senescence markers and accelerated wound healing. This senolytic treatment primes the skin for enhanced repair by stimulating key wound healing pathways.
Area of Science:
- Gerontology
- Dermatology
- Cell Biology
Background:
- Senescent cells (SnC) accumulate in aging tissues, hindering repair and regeneration.
- Senolytics selectively eliminate SnCs, showing potential for tissue repair in aged tissues.
Purpose of the Study:
- To investigate the effect of topical ABT-263 on senescent skin cells in aged mice.
- To assess the impact of senolysis on subsequent wound healing in aged skin.
Main Methods:
- Aged mice (24 months old) received topical ABT-263 or DMSO control for 5 days.
- Senescence markers (p16, p21, SA-β-gal) were quantified.
- Bulk RNA sequencing analyzed gene expression changes.
- Wound healing was assessed by closure rate.
Main Results:
- Topical ABT-263 reduced senescence markers (p16, p21, SA-β-gal) in aged skin.
- ABT-263 induced temporary inflammation and macrophage infiltration.
- Gene expression analysis revealed upregulation of wound healing pathways.
- Pre-treatment with ABT-263 accelerated wound closure in aged mice.
Conclusions:
- Topical ABT-263 effectively reduces senescence markers in aged skin.
- Senolysis with ABT-263 enhances subsequent wound healing.
- The mechanism involves stimulating extracellular matrix remodeling and wound repair pathways.
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