Shaanxi Key Laboratory of Degradable Biomedical Materials, Shaanxi R&D Center of Biomaterials and Fermentation Engineering, Biotech. & Biomed. Research Institute, Northwest University, Taibai North Road 229, Xi'an, Shaanxi, 710069, China.
Adv Sci (Weinh). 2022 Oct;9(30):e2201425. doi: 10.1002/advs.202201425. Epub 2022 Sep 5.
In addition to oxidative stress and impaired angiogenesis, the overexpression of metalloproteinases (MMPs) and proinflammatory cytokines, which are promoted by hyperglycemia, causes chronic inflammation in diabetic wounds. Herein, TA-siRNA nanogels are prepared for the first time on the basis of the self-assembling interaction between tannic acid (TA) and short interfering RNA (siRNA). The efficient, biodegradable nanogels are cross-linked with poly(vinyl alcohol) (PVA), human-like collagen (HLC), TA, and borax to prepare adaptive, conductive PHTB (TA-siRNA) hydrogels. In response to high levels of reactive oxygen species (ROS), the ROS-responsive borate ester bonds in the hydrogels are oxidized and broken, and TA-siRNA nanogels are released into cells to reduce the expression of the MMP-9. Moreover, the TA and HLC promote collagen expression, reduce inflammation, and ROS level. It is found that electrical stimulation (ES) promotes the in vivo release of TA-siRNA nanogels from PHTB (TA-siRNA) hydrogels and endocytosis of the nanogels. The combination therapy using ES and PHTB (TA-siRNA) hydrogels accelerates the healing of diabetic wounds by reducing the levels of ROS and MMP-9 and promoting the polarization of macrophages, production of collagen, and angiogenesis. This study provides insights on the design of functional gene-delivery and efficient therapeutic strategies to promote the repair of diabetic chronic wounds.
除了氧化应激和血管生成受损外,高血糖还会导致金属蛋白酶(MMPs)和促炎细胞因子过度表达,从而引起糖尿病伤口的慢性炎症。在此,首次基于单宁酸(TA)和短干扰 RNA(siRNA)的自组装相互作用制备 TA-siRNA 纳米凝胶。高效、可生物降解的纳米凝胶与聚乙烯醇(PVA)、类人胶原蛋白(HLC)、TA 和硼砂交联,制备自适应、导电的 PHTB(TA-siRNA)水凝胶。响应高水平的活性氧(ROS),水凝胶中的 ROS 响应硼酸酯键被氧化和断裂,TA-siRNA 纳米凝胶被释放到细胞中以降低 MMP-9 的表达。此外,TA 和 HLC 促进胶原蛋白表达、减少炎症和 ROS 水平。研究发现,电刺激(ES)促进 PHTB(TA-siRNA)水凝胶中 TA-siRNA 纳米凝胶的体内释放和纳米凝胶的内吞作用。ES 和 PHTB(TA-siRNA)水凝胶的联合治疗通过降低 ROS 和 MMP-9 水平以及促进巨噬细胞极化、胶原蛋白产生和血管生成,加速糖尿病伤口的愈合。该研究为功能性基因传递和有效的治疗策略设计提供了思路,以促进糖尿病慢性伤口的修复。