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载神经降压素的 PLGA/CNC 复合纳米纤维膜加速糖尿病创面愈合。

Neurotensin-loaded PLGA/CNC composite nanofiber membranes accelerate diabetic wound healing.

机构信息

a Post-doctoral Management Office , Southern Medical University , Guangzhou , China.

b Department of Plastic Surgery , Guangzhou General Hospital of PLA , Guangzhou , China.

出版信息

Artif Cells Nanomed Biotechnol. 2018;46(sup2):493-501. doi: 10.1080/21691401.2018.1460372. Epub 2018 Apr 13.

Abstract

Diabetic foot ulcers (DFUs) are a threat to human health and can lead to amputation and even death. Recently neurotensin (NT), an inflammatory modulator in wound healing, was found to be beneficial for diabetic wound healing. As we demonstrated previously, polylactide-polyglycolide (PLGA) and cellulose nanocrystals (CNCs) (PLGA/CNC) nanofiber membranes show good cytocompatibility and facilitate fibroblast adhesion, spreading and proliferation. PLGA/CNC nanofiber membranes are novel materials that have not been used previously as NT carriers in diabetic wounds. This study aims to explore the therapeutic efficacy and possible mechanisms of NT-loaded PLGA/CNC nanofiber membranes in full-thickness skin wounds in spontaneously diabetic mice. The results showed that NT could be sustained released from NT-loaded PLGA/CNC composite nanofiber membranes for 2 weeks. NT-loaded PLGA/CNC composite nanofiber membranes induced more rapid healing than other control groups. After NT exposure, the histological scores of the epidermal and dermal regeneration and the ratios of the fibrotic area to the whole area were increased. NT-loaded PLGA/CNC composite nanofiber membranes also decreased the expressions of the inflammatory cytokines IL-1β and IL-6. These results suggest that NT-loaded PLGA/CNC composite nanofiber membranes for sustained delivery of NT should effectively promote tissue regeneration for the treatment of DFUs.

摘要

糖尿病足溃疡(DFUs)是对人类健康的威胁,可导致截肢甚至死亡。最近发现神经降压素(NT)作为一种伤口愈合中的炎症调节剂,对糖尿病伤口愈合有益。正如我们之前所证明的,聚乳酸-聚乙二醇(PLGA)和纤维素纳米晶体(CNC)(PLGA/CNC)纳米纤维膜具有良好的细胞相容性,并促进成纤维细胞的黏附、铺展和增殖。PLGA/CNC 纳米纤维膜是一种新型材料,以前尚未将其用作糖尿病伤口中的 NT 载体。本研究旨在探讨负载 NT 的 PLGA/CNC 纳米纤维膜在自发性糖尿病小鼠全层皮肤伤口中的治疗效果和可能机制。结果表明,负载 NT 的 PLGA/CNC 复合纳米纤维膜可在 2 周内持续释放 NT。负载 NT 的 PLGA/CNC 复合纳米纤维膜比其他对照组诱导更快的愈合。暴露于 NT 后,表皮和真皮再生的组织学评分以及纤维化面积与总面积的比值增加。负载 NT 的 PLGA/CNC 复合纳米纤维膜还降低了炎症细胞因子 IL-1β和 IL-6 的表达。这些结果表明,负载 NT 的 PLGA/CNC 复合纳米纤维膜用于持续递送 NT 应该能够有效促进组织再生,从而治疗 DFUs。

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