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具有光热和一氧化氮释放特性的可溶性微针贴片用于无痛精准治疗缺血性穿支皮瓣

Soluble microneedle patch with photothermal and NO-release properties for painless and precise treatment of ischemic perforator flaps.

作者信息

Liu Lubing, Wang Qingqing, Liao Huaiwei, Ye Jing, Huang Jinjun, Li Shisheng, Peng Haichuan, Yu Xiang, Wen Huicai, Wang Xiaolei

机构信息

Department of Plastic Surgery, The First Affiliated Hospital of Nanchang University, Nanchang, Jiangxi, 330006, China.

The National Engineering Research Center for Bioengineering Drugs and the Technologies: Institute of Translational Medicine, Nanchang University, Nanchang, Jiangxi, 330088, China.

出版信息

J Mater Chem B. 2021 Sep 29;9(37):7725-7733. doi: 10.1039/d1tb00491c.

Abstract

Skin necrosis is the most serious complication of flap plastic surgery, which means the failure of the operation. Systemic administration rarely benefits the local area and can lead to side effects, while topical administration has poor permeability due to the skin barrier function. Currently, few of these common medical interventions can totally respond to the blood supply of the skin after surgery. Herein, a soluble microneedle (MN) patch made of hyaluronic acid was used to target the ischemic area in a painless and precise manner for transdermal drug delivery. Based on the important role of nitric oxide (NO) in angiogenesis, the thermosensitive NO donor (BNN6) and gold nanorods (GNRs) acting as photothermal agents were introduced into the microneedles (MNs). The hyperthermia induced by GNRs under near infrared (NIR, 808 nm) irradiation could enhance the penetration of drugs and facilitate NO release from BNN6. A series of corresponding experiments proved that the system played a significant promotion role in vascular regeneration, providing a painless, precise and NO-assisted treatment method for the ischemic perforator flaps.

摘要

皮肤坏死是皮瓣整形手术最严重的并发症,意味着手术失败。全身给药对局部区域益处不大且会导致副作用,而局部给药因皮肤屏障功能渗透性较差。目前,这些常见的医学干预措施很少能完全满足术后皮肤的血液供应需求。在此,一种由透明质酸制成的可溶性微针贴片被用于以无痛且精准的方式靶向缺血区域进行透皮给药。基于一氧化氮(NO)在血管生成中的重要作用,将热敏性NO供体(BNN6)和作为光热剂的金纳米棒(GNRs)引入微针中。金纳米棒在近红外(NIR,808 nm)照射下诱导的热疗可增强药物渗透并促进BNN6释放NO。一系列相应实验证明该系统在血管再生中发挥了显著的促进作用,为缺血穿支皮瓣提供了一种无痛、精准且NO辅助的治疗方法。

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