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具有可控氧释放功能的响应性多孔微载体用于伤口愈合。

Responsive Porous Microcarriers With Controllable Oxygen Delivery for Wound Healing.

机构信息

State Key Laboratory of Bioelectronics, School of Biological Science and Medical Engineering, Southeast University, Nanjing, 210096, China.

Department of Surgery, Jinling Hospital, Medical School of Nanjing University, Nanjing, 210002, China.

出版信息

Small. 2019 May;15(21):e1901254. doi: 10.1002/smll.201901254. Epub 2019 Apr 17.

Abstract

Microcarriers with oxygen-delivering capacity have attracted increasing interest in the field of tissue regeneration. Here, a kind of molybdenum disulfide quantum dots (MoS QDs) integrated responsive porous microcarriers with controllable oxygen-delivering ability for wound healing is presented. The specific gelatin methacryloyl (GelMa) porous microcarriers are derived from inverse opal microparticles which can be decorated with the oxygen-carrying protein hemoglobin. Because of their characteristic porous structure, interconnected nanochannels, and excellent biocompatibility, the resultant microcarriers could carry oxygen extensively and provide support for tissue repair physically and biologically. Besides, since the typical photothermal effect of 2D materials and their derived 2D QDs, the inverse opal particles integrated with MoS QDs are imparted with photo-responsive capacity, which makes them able to release oxygen photo-controllably. It is demonstrated that the designed microcarriers can promote the repair of abdominal wall defects effectively with their multifunctional features. These remarkable properties point to the potential value of the microcarriers in wound healing and tissue engineering.

摘要

具有供氧能力的微载体在组织再生领域引起了越来越多的关注。在这里,提出了一种具有可控供氧能力的二硫化钼量子点(MoS QDs)集成响应性多孔微载体,用于伤口愈合。特定的明胶甲基丙烯酰(GelMa)多孔微载体源自具有携氧蛋白血红蛋白的反蛋白石微球。由于其特征多孔结构、相互连接的纳米通道和优异的生物相容性,所得的微载体可以广泛携带氧气,并在物理和生物上为组织修复提供支持。此外,由于二维材料及其衍生的二维 QDs 的典型光热效应,与 MoS QDs 集成的反蛋白石颗粒赋予了光响应能力,使它们能够光控释放氧气。结果表明,设计的微载体具有多功能特性,可有效促进腹壁缺损的修复。这些显著的性能表明,微载体在伤口愈合和组织工程中具有潜在的价值。

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