Preparation and evaluation of a polycaprolactone/chitosan/propolis fibrous nanocomposite scaffold as a tissue engineering skin substitute.

IF 2.2 4区 工程技术 Q3 PHARMACOLOGY & PHARMACY Bioimpacts Pub Date : 2023-01-01 DOI:10.34172/bi.2023.26317
Seyedeh-Sara Hashemi, Ali Akbar Mohammadi, Seyedeh-Somayeh Rajabi, Parisa Sanati, Alireza Rafati, Mehdi Kian, Zahra Zarei
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引用次数: 3

Abstract

Introduction: Recently, the application of nanofibrous mats for dressing skin wounds has received great attention. In this study, we aimed to fabricate and characterize an electrospun nanofibrous mat containing polycaprolactone (PCL), chitosan (CTS), and propolis for use as a tissue-engineered skin substitute.

Methods: Raw propolis was extracted, and its phenolic and flavonoid contents were measured. The physiochemical and biological properties of the fabricated mats, including PCL, PCL/CTS, and PCL/CTS/Propolis were evaluated by scanning electron microscopy (SEM), atomic force microscopy (AFM), mechanical analysis, swelling and degradation behaviors, contact angle measurement, cell attachment, DAPI staining, and MTT assay. On the other hand, the drug release pattern of propolis from the PCL/CTS/Propolis scaffold was determined. A deep second-degree burn wound model was induced in rats to investigate wound healing using macroscopical and histopathological evaluations.

Results: The results revealed that the propolis extract contained high amounts of phenolic and flavonoid compounds. The fabricated scaffold had suitable physicochemical and mechanical properties. Uniform, bead-free, and well-branched fibers were observed in SEM images of mats. AFM analysis indicated that the addition of CTS and propolis to PCL elevated the surface roughness. MTT results revealed that the electrospun PCL/CTS/Propolis mat was biocompatible. The presence of fibroblast cells on the PCL/CTS/Propolis mats was confirmed by DAPI staining and SEM images. Also, propolis was sustainably released from the PCL/CTS/Propolis mat. The animal study revealed that addition of propolis significantly improved wound healing.

Conclusion: The nanofibrous PCL/CTS/Propolis mat can be applied as a tissue-engineered skin substitute for healing cutaneous wounds, such as burn wounds.

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聚己内酯/壳聚糖/蜂胶纤维纳米复合支架的制备及组织工程皮肤替代品的评价。
近年来,纳米纤维垫在皮肤创面敷料中的应用备受关注。在这项研究中,我们旨在制造和表征一种含有聚己内酯(PCL)、壳聚糖(CTS)和蜂胶的电纺纳米纤维垫,用于组织工程皮肤替代品。方法:提取原料蜂胶,测定其酚类和类黄酮含量。通过扫描电镜(SEM)、原子力显微镜(AFM)、力学分析、溶胀和降解行为、接触角测量、细胞附着、DAPI染色和MTT分析,对制备的PCL、PCL/CTS和PCL/CTS/蜂胶垫的理化和生物学特性进行了评价。另一方面,测定了PCL/CTS/蜂胶支架中蜂胶的药物释放模式。建立大鼠深二度烧伤创面模型,通过宏观和组织病理学观察创面愈合情况。结果:蜂胶提取物中含有大量的酚类和类黄酮类化合物。所制备的支架具有良好的理化性能和力学性能。在垫子的扫描电镜图像中观察到均匀、无珠和分枝良好的纤维。AFM分析表明,CTS和蜂胶的加入提高了PCL的表面粗糙度。MTT结果表明,电纺PCL/CTS/蜂胶垫具有生物相容性。DAPI染色和SEM图像证实了PCL/CTS/蜂胶垫上存在成纤维细胞。此外,从PCL/CTS/蜂胶垫中持续释放蜂胶。动物实验表明,添加蜂胶可显著促进伤口愈合。结论:纳米纤维PCL/CTS/蜂胶垫可作为组织工程皮肤替代物用于烧伤创面等皮肤创面的修复。
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
Bioimpacts
Bioimpacts Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
CiteScore
4.80
自引率
7.70%
发文量
36
审稿时长
5 weeks
期刊介绍: BioImpacts (BI) is a peer-reviewed multidisciplinary international journal, covering original research articles, reviews, commentaries, hypotheses, methodologies, and visions/reflections dealing with all aspects of biological and biomedical researches at molecular, cellular, functional and translational dimensions.
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