School of Nursing, Guangzhou University of Chinese Medicine, Guangzhou 510405, People's Republic of China.
Shenzhen Mental Health Center, Shenzhen Kangning Hospital, Shenzhen, People's Republic of China.
Biomed Mater. 2024 Aug 8;19(5). doi: 10.1088/1748-605X/ad6966.
(+)4-cholesten-3-one has been proved to have potential wound healing effect in the process of wound regeneration. This study aimed to evaluate the effect of (+)4-cholesten-3-one/sodium alginate/gelatin on skin injury and reveal its potential molecular mechanism. First, we prepared sodium alginate/gelatin hydrogel (SA/Gel hydrogel) with different ratios and tested their characteristics. Based on these results, different concentrations of (+)4-cholesten-3-one were added into SA/Gel hydrogel. A full-thickness skin injury model was successfully established to evaluate wound healing activity. HE staining and Masson staining were used to evaluate the thickness of granulation tissue and collagen deposition level. Immunohistochemical staining and immunofluorescence staining were applied to detect the level of revascularization and proliferation in each group of wounds. Western blot, quantitative-PCR and immunofluorescence staining were used to detect the expression of proteins related to Wnt/-catenin signaling pathway in each group of wounds.results showed that the hydrogel not only created a 3D structure for cell adhesion and growth, but also exhibited good swelling ability, excellent degradability and favorable bio-compatibility. Most importantly,experiments further indicated that (+)4-cholesten-3-one/SA/Gel hydrogel effectively enhanced wound healing. The effectiveness is due to its superior abilities in accelerating healing process, granulation tissue regeneration, collagen deposition, promoting angiogenesis, tissue proliferation, as well as fibroblast activation and differentiation. The underlying mechanism was related to the Wnt/-catenin signaling pathway. This study highlighted that (+)4-cholesten-3-one/SA/Gel hydrogel holds promise as a wound healing dressing in future clinical applications.
(+)4-胆甾烯-3-酮已被证明在伤口再生过程中有潜在的伤口愈合作用。本研究旨在评估 (+)4-胆甾烯-3-酮/海藻酸钠/明胶对皮肤损伤的影响,并揭示其潜在的分子机制。首先,我们制备了不同比例的海藻酸钠/明胶水凝胶(SA/Gel 水凝胶),并测试了它们的特性。基于这些结果,我们向 SA/Gel 水凝胶中加入了不同浓度的 (+)4-胆甾烯-3-酮。成功建立了全层皮肤损伤模型,以评估伤口愈合活性。HE 染色和 Masson 染色用于评估肉芽组织厚度和胶原沉积水平。免疫组织化学染色和免疫荧光染色用于检测各组伤口的血管生成和增殖水平。Western blot、定量 PCR 和免疫荧光染色用于检测各组伤口中与 Wnt/-catenin 信号通路相关的蛋白表达。结果表明,水凝胶不仅为细胞黏附和生长创造了 3D 结构,而且还表现出良好的溶胀能力、优异的可降解性和良好的生物相容性。最重要的是,实验进一步表明 (+)4-胆甾烯-3-酮/SA/Gel 水凝胶能有效促进伤口愈合。其有效性归因于其在加速愈合过程、肉芽组织再生、胶原沉积、促进血管生成、组织增殖以及成纤维细胞激活和分化方面的卓越能力。其潜在机制与 Wnt/-catenin 信号通路有关。本研究强调了 (+)4-胆甾烯-3-酮/SA/Gel 水凝胶在未来临床应用中作为伤口愈合敷料的潜力。