Aging negatively impacts skin health, notably through the senescent cell phenotype, which reduces collagen production and leads to thinner, more fragile skin prone to injuries and chronic wounds. We designed a drug delivery system that addresses these age-related issues using a hybrid hydrogel-nanoparticle system that utilizes a poly(δ-valerolactone-co-lactide)-b-poly(ethylene-glycol)-b-poly(δ-valerolactone-co-lactide) (PVLA-PEG-PVLA) hydrogel. This hydrogel allows for the local, extended release of therapeutics targeting both proliferating and senescent cells. The PVLA-PEG-PVLA hydrogel entrapped valsartan, and metformin-loaded liposomes functionalized with a fibronectin-mimetic peptide, PR_b. Metformin acts as a senomorphic, reversing aspects of cellular senescence, and valsartan, an angiotensin receptor blocker, promotes collagen production. This combination treatment partially reversed the senescent phenotype and improved collagen production in senescent dermal fibroblasts from both young and old adults. Our codelivery hydrogel-nanoparticle system offers a promising treatment for improving age-related dermal pathologies.
Co-Delivery of Valsartan and Metformin from a Thermosensitive Hydrogel-Nanoparticle System Promotes Collagen Production in Proliferating and Senescent Primary Human Dermal Fibroblasts.
通过热敏水凝胶纳米颗粒系统共同递送缬沙坦和二甲双胍可促进增殖和衰老的原代人真皮成纤维细胞中胶原蛋白的生成
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作者:Kuhn Paul M, Chen Siwei, Venkatraman Aditya, Abadir Peter M, Walston Jeremy D, Kokkoli Efrosini
| 期刊: | Biomacromolecules | 影响因子: | 5.400 |
| 时间: | 2024 | 起止号: | 2024 Sep 9; 25(9):5702-5717 |
| doi: | 10.1021/acs.biomac.3c01461 | 种属: | Human |
| 研究方向: | 细胞生物学 | ||
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