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首页> 外文期刊>ACS nano >Enhancing Microcirculation on Multitriggering Manner Facilitates Angiogenesis and Collagen Deposition on Wound Healing by Photoreleased NO from Hemin-Derivatized Colloids
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Enhancing Microcirculation on Multitriggering Manner Facilitates Angiogenesis and Collagen Deposition on Wound Healing by Photoreleased NO from Hemin-Derivatized Colloids

机译:增强多锥性方式的微循环促进血管衍生胶体的光放射NO对伤口愈合的血管生成和胶原沉积

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摘要

A deficiency of nitric oxide (NO) supply has been found to impair wound healing. The exogenous topical delivery of NO is a promising approach to enhance vasodilation and stimulate angiogenesis and collagen deposition. In this study, the CN groups on the surface of Prussian blue (PB) nanocubes were carefully reduced to -CH2-NH2 to conjugate with COON group of hemin consisting of a Fe-porphyrin structure with strong affinity toward NO. Accordingly, the NO gas was able to coordinate to hemin-modified PB nanocubes. The hemin-modified PB carrying NO (PB-NO) can be responsible to near -infrared (NIR) light (808 nm) exposure to induce the thermo-induced liberation of NO based on the light-to-heat transformation property of PB nanocubes. The NO supply on the incisional wound sites can be readily topically dropped the colloidal solution of PB-NO for receiving NIR light irradiation. The enhanced blood flow was in a controllable manner whenever the wound sites containing PB-NO received NIR light irradiation. The promotion of blood perfusion following the on-demand multidelivery of NO has effectively facilitated the process of wound closure to enhance angiogensis and collagen deposition.
机译:已经发现一氧化氮(NO)供应的缺乏损害伤口愈合。外源性局部递送NO是提高血管舒张和刺激血管生成和胶原沉积的有希望的方法。在该研究中,普鲁士蓝(PB)纳米孔表面上的CN基团被小心地减少至-CH2-NH 2,以与血红素的核心组成的核糖组成,其由Fe-Porphylin结构构成,其具有强的亲和力。因此,NO气体能够与血葱改性的PB纳米密封件相同。携带NO(PB-NO)的血素改性的PB可以负责 - 含有微染利(NIR)光(808nm)暴露,以诱导基于PB纳米孔的光 - 热转化性能的热诱导的释放。可以容易地局部地局部地局部地探测切口伤口部位的供应,用于接受NIR光照射的PB-NO的胶体溶液。每当含有PB-NO接受的NIR光照射的伤口位点时,增强的血液流动是可控的方式。促进血液灌注之后的血液灌注无需有效地促进了伤口闭合过程以增强血管内肌和胶原沉积。

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