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瘢痕治疗的新挑战:基于纳米技术的新型瘢痕治疗策略。

New challenges in scar therapy: the novel scar therapy strategies based on nanotechnology.

机构信息

The second clinical college, China Medical University, Shenyang, PR China.

Department of Dermatology, People's Hospital of Guangxi Zhuang Autonomous Region, Nanning, PR China.

出版信息

Nanomedicine (Lond). 2024;19(28):2413-2432. doi: 10.1080/17435889.2024.2401768. Epub 2024 Sep 26.

Abstract

The pathological mechanism of pathological scar is highly complex, encompassing the abnormalities of diverse cytokines, signaling pathways and regulatory factors. To discover more preferable scar treatment options, a variety of distinct approaches have been utilized clinically. Nevertheless, these treatments possess certain side effects and are inclined to relapse. Presently, pathological scar treatment remains a clinical conundrum, and there is an urgent demand for treatment methods that are safe, less traumatic and have lower recurrence rates. New drug delivery systems, novel therapeutic drugs and therapy strategies can enable drugs to permeate the skin effectively, decrease side effects, enhance drug efficacy and even achieve pain-free self-administration. Currently, novel nanotechnologies such as nanomicroneedles, photodynamics mediated by novel photosensitizers, bioelectrical stimulation and 3D printed dressings have been developed for the effective treatment of pathological scars. Additionally, innovative nanoscale fillers, including nano-fat and engineered exosomes, can serve as novel therapeutic agents for the efficient treatment of pathological scars. The intervention of nanomaterials can enhance drug absorption, stabilize and safeguard the active ingredients of drugs, delay or control drug release and enhance bioavailability. This article reviews these new treatment strategies for scar to explore novel approaches for efficient and safe for keloid treatment.

摘要

病理性瘢痕的发病机制十分复杂,涉及多种细胞因子、信号通路和调控因子的异常。为了寻找更理想的瘢痕治疗方法,临床上已经应用了多种不同的方法。然而,这些治疗方法都有一定的副作用,且容易复发。目前,病理性瘢痕的治疗仍然是一个临床难题,因此迫切需要安全、创伤小、复发率低的治疗方法。新型药物递送系统、新型治疗药物和治疗策略可以使药物有效地穿透皮肤,减少副作用,提高药物疗效,甚至实现无痛的自我给药。目前,新型纳米技术如纳米微针、新型光敏剂介导的光动力学、生物电刺激和 3D 打印敷料已被开发用于病理性瘢痕的有效治疗。此外,新型纳米级填充物,包括纳米脂肪和工程化的外泌体,可以作为病理性瘢痕治疗的新型治疗药物。纳米材料的介入可以增强药物的吸收,稳定和保护药物的活性成分,延迟或控制药物的释放,提高生物利用度。本文综述了这些瘢痕的新治疗策略,以期探索出有效且安全的瘢痕治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b194/11492664/27adfc138996/INNM_A_2401768_F0001_C.jpg

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