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基于含有天然来源抗菌、抗炎和再生化合物的纳米结构纤维的智能敷料。

Smart Dressings Based on Nanostructured Fibers Containing Natural Origin Antimicrobial, Anti-Inflammatory, and Regenerative Compounds.

作者信息

Andreu Vanesa, Mendoza Gracia, Arruebo Manuel, Irusta Silvia

机构信息

Department of Chemical Engineering, Aragon Institute of Nanoscience (INA), University of Zaragoza, Campus Río Ebro-Edificio I+D, C/ Mariano Esquillor S/N, 50018 Zaragoza, Spain.

Networking Research Center on Bioengineering, Biomaterials and Nanomedicine, CIBER-BBN, Madrid 28029, Spain.

出版信息

Materials (Basel). 2015 Aug 11;8(8):5154-5193. doi: 10.3390/ma8085154.

DOI:10.3390/ma8085154
PMID:28793497
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5455515/
Abstract

A fast and effective wound healing process would substantially decrease medical costs, wound care supplies, and hospitalization significantly improving the patients' quality of life. The search for effective therapeutic approaches seems to be imperative in order to avoid the aggravation of chronic wounds. In spite of all the efforts that have been made during the recent years towards the development of artificial wound dressings, none of the currently available options combine all the requirements necessary for quick and optimal cutaneous regeneration. Therefore, technological advances in the area of temporary and permanent smart dressings for wound care are required. The development of nanoscience and nanotechnology can improve the materials and designs used in topical wound care in order to efficiently release antimicrobial, anti-inflammatory and regenerative compounds speeding up the endogenous healing process. Nanostructured dressings can overcome the limitations of the current coverings and, separately, natural origin components can also overcome the drawbacks of current antibiotics and antiseptics (mainly cytotoxicity, antibiotic resistance, and allergies). The combination of natural origin components with demonstrated antibiotic, regenerative, or anti-inflammatory properties together with nanostructured materials is a promising approach to fulfil all the requirements needed for the next generation of bioactive wound dressings. Microbially compromised wounds have been treated with different essential oils, honey, cationic peptides, aloe vera, plant extracts, and other natural origin occurring antimicrobial, anti-inflammatory, and regenerative components but the available evidence is limited and insufficient to be able to draw reliable conclusions and to extrapolate those findings to the clinical practice. The evidence and some promising preliminary results indicate that future comparative studies are justified but instead of talking about the beneficial or inert effects of those natural origin occurring materials, the scientific community leads towards the identification of the main active components involved and their mechanism of action during the corresponding healing, antimicrobial, or regenerative processes and in carrying out systematic and comparative controlled tests. Once those natural origin components have been identified and their efficacy validated through solid clinical trials, their combination within nanostructured dressings can open up new avenues in the fabrication of bioactive dressings with outstanding characteristics for wound care. The motivation of this work is to analyze the state of the art in the use of different essential oils, honey, cationic peptides, aloe vera, plant extracts, and other natural origin occurring materials as antimicrobial, anti-inflammatory and regenerative components with the aim of clarifying their potential clinical use in bioactive dressings. We conclude that, for those natural occurring materials, more clinical trials are needed to reach a sufficient level of evidence as therapeutic agents for wound healing management.

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8354/5455515/54925fd0b34a/materials-08-05154-g007a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8354/5455515/acc7596d8571/materials-08-05154-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8354/5455515/6f33ef9d7dba/materials-08-05154-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8354/5455515/891f7010facf/materials-08-05154-g003a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8354/5455515/78afae36fdb3/materials-08-05154-g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8354/5455515/3178aa51aacd/materials-08-05154-g005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8354/5455515/631ea64b1645/materials-08-05154-g006.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8354/5455515/54925fd0b34a/materials-08-05154-g007a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8354/5455515/acc7596d8571/materials-08-05154-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8354/5455515/6f33ef9d7dba/materials-08-05154-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8354/5455515/891f7010facf/materials-08-05154-g003a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8354/5455515/78afae36fdb3/materials-08-05154-g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8354/5455515/3178aa51aacd/materials-08-05154-g005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8354/5455515/631ea64b1645/materials-08-05154-g006.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8354/5455515/54925fd0b34a/materials-08-05154-g007a.jpg
摘要

快速有效的伤口愈合过程将大幅降低医疗成本、伤口护理用品成本以及住院费用,显著提高患者的生活质量。为避免慢性伤口恶化,寻求有效的治疗方法似乎势在必行。尽管近年来在人工伤口敷料的研发方面付出了诸多努力,但目前现有的选择都无法同时满足快速且最佳的皮肤再生所需的所有要求。因此,伤口护理用临时和永久性智能敷料领域需要技术进步。纳米科学和纳米技术的发展能够改进用于局部伤口护理的材料和设计,以便有效释放抗菌、抗炎和再生化合物,加速内源性愈合过程。纳米结构敷料能够克服当前敷料的局限性,此外,天然成分也能克服当前抗生素和防腐剂的缺点(主要是细胞毒性、抗生素耐药性和过敏反应)。将具有已证实的抗生素、再生或抗炎特性的天然成分与纳米结构材料相结合,是满足下一代生物活性伤口敷料所有需求的一种有前景的方法。微生物感染的伤口已采用不同的精油、蜂蜜、阳离子肽、芦荟、植物提取物以及其他天然存在的抗菌、抗炎和再生成分进行治疗,但现有证据有限且不足,无法得出可靠结论并将这些发现推广至临床实践。证据和一些有前景的初步结果表明,未来进行对比研究是合理的,但科学界不应只讨论那些天然材料的有益或无作用效果,而应致力于确定相应愈合、抗菌或再生过程中涉及的主要活性成分及其作用机制,并开展系统的对比对照试验。一旦确定了那些天然成分并通过可靠的临床试验验证了其疗效,将它们组合在纳米结构敷料中可为制造具有出色伤口护理特性的生物活性敷料开辟新途径。这项工作的目的是分析使用不同的精油、蜂蜜、阳离子肽、芦荟、植物提取物以及其他天然存在的材料作为抗菌、抗炎和再生成分的现有技术水平,以阐明它们在生物活性敷料中的潜在临床用途。我们得出结论,对于那些天然材料,需要更多的临床试验来获得足够的证据,以作为伤口愈合管理的治疗剂。

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