Electrospun Biomaterials for Scarless Acne Wound Healing: Advances and Prospects.

IF 5.2 3区 医学 Q1 ENGINEERING, BIOMEDICAL
Jiahui Chen, Liping Zhou, Zhongci Hang, Xiaochun Bian, Tong Huo, Bing Peng, Haohao Li, Yongqiang Wen, Hongwu Du
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Abstract

Acne vulgaris is a chronic disease that occurs in the pilosebaceous units and ranks eighth in the global prevalence of all diseases. In its severe forms such as pustules, cysts, and nodules, acne can lead to permanent scarring and post-inflammatory hyperpigmentation, which are often difficult to reverse in the short term and significantly affect patients' psychological well-being and social interactions. Although a variety of pharmacological treatments are available, including retinoids, antibiotics, anti-androgens, benzoyl peroxide, and corticosteroids, the high recurrence rate and limited efficacy in scar prevention highlight the urgent need for innovative therapeutic strategies. Electrospinning technology has recently gained attention for fabricating nanofibrous patches with high porosity, biocompatibility, and biodegradability. These patches can offer antibacterial activity, absorb exudates, and provide mechanical protection, making them promising platforms for acne wound care. This review first outlines the pathophysiology of acne and the biological mechanisms underlying scar formation. We then present an overview of electrospinning techniques, commonly used polymers, and recent advancements in the field. Finally, we explore the potential of electrospun nanofibers loaded with mesenchymal stem cells or exosomes as next-generation therapeutic systems aimed at promoting scarless acne healing.

电纺生物材料用于无疤痕痤疮创面愈合:进展与展望。
寻常痤疮是一种发生在毛囊皮脂腺单位的慢性疾病,在全球所有疾病的患病率中排名第八。严重的情况下,如脓疱、囊肿和结节,痤疮可导致永久性疤痕和炎症后色素沉着,通常难以在短期内逆转,并严重影响患者的心理健康和社会交往。尽管有多种药物治疗方法,包括类维生素a、抗生素、抗雄激素、过氧化苯甲酰和皮质类固醇,但疤痕预防的高复发率和有限的疗效突出了对创新治疗策略的迫切需要。静电纺丝技术是制备具有高孔隙度、生物相容性和生物降解性的纳米纤维贴片的重要技术之一。这些贴片可以提供抗菌活性,吸收渗出液,并提供机械保护,使它们成为痤疮伤口护理的有希望的平台。本文首先概述了痤疮的病理生理和瘢痕形成的生物学机制。然后介绍了静电纺丝技术、常用聚合物和该领域的最新进展。最后,我们探讨了负载间充质干细胞或外泌体的静电纺丝纳米纤维作为下一代治疗系统的潜力,旨在促进无疤痕痤疮愈合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Functional Biomaterials
Journal of Functional Biomaterials Engineering-Biomedical Engineering
CiteScore
4.60
自引率
4.20%
发文量
226
审稿时长
11 weeks
期刊介绍: Journal of Functional Biomaterials (JFB, ISSN 2079-4983) is an international and interdisciplinary scientific journal that publishes regular research papers (articles), reviews and short communications about applications of materials for biomedical use. JFB covers subjects from chemistry, pharmacy, biology, physics over to engineering. The journal focuses on the preparation, performance and use of functional biomaterials in biomedical devices and their behaviour in physiological environments. Our aim is to encourage scientists to publish their results in as much detail as possible. Therefore, there is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Several topical special issues will be published. Scope: adhesion, adsorption, biocompatibility, biohybrid materials, bio-inert materials, biomaterials, biomedical devices, biomimetic materials, bone repair, cardiovascular devices, ceramics, composite materials, dental implants, dental materials, drug delivery systems, functional biopolymers, glasses, hyper branched polymers, molecularly imprinted polymers (MIPs), nanomedicine, nanoparticles, nanotechnology, natural materials, self-assembly smart materials, stimuli responsive materials, surface modification, tissue devices, tissue engineering, tissue-derived materials, urological devices.
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