Department of Chemical Engineering, Northeastern University, Boston, MA, 02115, USA.
Department of Pharmaceutical Sciences, Northeastern University, Boston, MA, 02115, USA.
Small. 2019 Sep;15(36):e1902232. doi: 10.1002/smll.201902232. Epub 2019 Jul 22.
Chronic wounds are characterized by impaired healing and uncontrolled inflammation, which compromise the protective role of the immune system and may lead to bacterial infection. Upregulation of miR-223 microRNAs (miRNAs) shows driving of the polarization of macrophages toward the anti-inflammatory (M2) phenotype, which could aid in the acceleration of wound healing. However, local-targeted delivery of microRNAs is still challenging, due to their low stability. Here, adhesive hydrogels containing miR-223 5p mimic (miR-223*) loaded hyaluronic acid nanoparticles are developed to control tissue macrophages polarization during wound healing processes. In vitro upregulation of miR-223* in J774A.1 macrophages demonstrates increased expression of the anti-inflammatory gene Arg-1 and a decrease in proinflammatory markers, including TNF-α, IL-1β, and IL-6. The therapeutic potential of miR-223* loaded adhesive hydrogels is also evaluated in vivo. The adhesive hydrogels could adhere to and cover the wounds during the healing process in an acute excisional wound model. Histological evaluation and quantitative polymerase chain reaction (qPCR) analysis show that local delivery of miR-223* efficiently promotes the formation of uniform vascularized skin at the wound site, which is mainly due to the polarization of macrophages to the M2 phenotype. Overall, this study demonstrates the potential of nanoparticle-laden hydrogels conveying miRNA-223* to accelerate wound healing.
慢性伤口的特征是愈合受损和炎症失控,这会损害免疫系统的保护作用,并可能导致细菌感染。miR-223 微 RNA(miRNA)的上调表明巨噬细胞向抗炎(M2)表型的极化得到驱动,这可能有助于加速伤口愈合。然而,由于 miRNA 的稳定性低,局部靶向递送 miRNA 仍然具有挑战性。在这里,开发了含有 miR-223 5p 模拟物(miR-223*)负载透明质酸纳米颗粒的粘附水凝胶,以在伤口愈合过程中控制组织巨噬细胞的极化。在 J774A.1 巨噬细胞中体外上调 miR-223* 表明抗炎基因 Arg-1 的表达增加,促炎标志物 TNF-α、IL-1β 和 IL-6 的表达减少。还在体内评估了负载 miR-223的粘附水凝胶的治疗潜力。在急性切除术模型中,粘附水凝胶在愈合过程中可以粘附并覆盖伤口。组织学评估和定量聚合酶链反应(qPCR)分析表明,miR-223的局部递送有效地促进了均匀血管化皮肤在伤口部位的形成,这主要是由于巨噬细胞向 M2 表型的极化。总的来说,这项研究表明了负载 miRNA-223*的纳米颗粒水凝胶在加速伤口愈合方面的潜力。