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用于治疗人类皮肤创伤的功能性电纺纤维。

Functional electrospun fibers for the treatment of human skin wounds.

机构信息

Institute of Pharmaceutical Technology and Buchmann Institute for Molecular Life Sciences, Goethe University, Frankfurt am Main, Germany.

Institute of Pharmaceutical Technology and Buchmann Institute for Molecular Life Sciences, Goethe University, Frankfurt am Main, Germany.

出版信息

Eur J Pharm Biopharm. 2017 Oct;119:283-299. doi: 10.1016/j.ejpb.2017.07.001. Epub 2017 Jul 6.

Abstract

Wounds are trauma induced defects of the human skin involving a multitude of endogenous biochemical events and cellular reactions of the immune system. The healing process is extremely complex and affected by the patient's physiological conditions, potential implications like infectious pathogens and inflammation as well as external factors. Due to increasing incidence of chronic wounds and proceeding resistance of infection pathogens, there is a strong need for effective therapeutic wound care. In this context, electrospun fibers with diameters in the nano- to micrometer range gain increasing interest. While resembling the structure of the native human extracellular matrix, such fiber mats provide physical and mechanical protection (including protection against bacterial invasion). At the same time, the fibers allow for gas exchange and prevent occlusion of the wound bed, thus facilitating wound healing. In addition, drugs can be incorporated within such fiber mats and their release can be adjusted by the material and dimensions of the individual fibers. The review gives a comprehensive overview about the current state of electrospun fibers for therapeutic application on skin wounds. Different materials as well as fabrication techniques are introduced including approaches for incorporation of drugs into or drug attachment onto the fiber surface. Against the background of wound pathophysiology and established therapy approaches, the therapeutic potential of electrospun fiber systems is discussed. A specific focus is set on interactions of fibers with skin cells/tissues as well as wound pathogens and strategies to modify and control them as key aspects for developing effective wound therapeutics. Further, advantages and limitations of controlled drug delivery from fiber mats to skin wounds are discussed and a future perspective is provided.

摘要

伤口是人类皮肤受到创伤后产生的缺陷,涉及多种内源性生化事件和免疫系统的细胞反应。愈合过程极其复杂,受患者生理状况、感染病原体和炎症等潜在影响以及外部因素的影响。由于慢性伤口的发病率不断增加,感染病原体的耐药性也在不断增加,因此迫切需要有效的治疗性伤口护理。在这种情况下,直径在纳米到微米范围内的静电纺纤维引起了越来越多的关注。这些纤维类似于天然人类细胞外基质的结构,为伤口提供物理和机械保护(包括防止细菌入侵)。同时,纤维允许气体交换并防止伤口床闭塞,从而促进伤口愈合。此外,药物可以掺入到这种纤维垫中,并可以通过纤维的材料和尺寸来调节药物的释放。本文综述了用于治疗皮肤伤口的静电纺纤维的最新研究进展。介绍了不同的材料和制造技术,包括将药物掺入纤维内部或药物附着在纤维表面的方法。在伤口病理生理学和现有治疗方法的背景下,讨论了静电纺纤维系统的治疗潜力。特别关注纤维与皮肤细胞/组织以及伤口病原体的相互作用,并提出了一些策略来修饰和控制这些相互作用,这是开发有效伤口治疗方法的关键方面。此外,还讨论了从纤维垫向皮肤伤口控制药物释放的优缺点,并提供了未来的展望。

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