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基于生物的聚羟基烷酸酯电纺纳米纤维,用黑水虻蛹壳改性,具有抗菌和细胞相容性。

Bio-Based Electrospun Nanofiber of Polyhydroxyalkanoate Modified with Black Soldier Fly's Pupa Shell with Antibacterial and Cytocompatibility Properties.

机构信息

Department of Applied Cosmetology , Kao Yuan University , Kaohsiung County , Taiwan 82101 , Republic of China.

出版信息

ACS Appl Mater Interfaces. 2018 Dec 12;10(49):42127-42135. doi: 10.1021/acsami.8b16606. Epub 2018 Nov 28.

Abstract

We report on the antibacterial and cytocompatibility properties of a bio-based electrospun polyhydroxyalkanoate (PHA) nanofiber modified with Black Soldier Fly (BSF) pupa shell. A 5-50 μm chitosan powder (CSP) was made by grinding BSF pupa shell in water, acid, alkali. CSP was combined with PHA in an electrospinning machine using a biaxial feed method and manufactured into a 50-500 nm antibacterial nanofiber. We studied the morphology, mechanical properties, water absorption, and antibacterial properties of the electrospun PHA/CSP nanofiber. To improve the fiber's compatibility and functionality, acrylic acid (AA) was grafted onto PHA. The resulting tensile properties and morphological characterizations indicated enhanced adhesion between CSP and PHA- g-AA nanofiber, as well as an improvement in its water resistance and tensile strength, compared with the PHA/CSP nanofiber. To study the cytocompatibility of the material, human foreskin fibroblasts were seeded onto the nanofiber specimens with 3.0 and 6.0 wt % CSP. Increasing the CSP content in PHA/CSP and PHA- g-AA/CSP nanofibers enhanced cell proliferation; additionally, the nanofibers with CSP showed strong inhibition of bacteria. The enhanced antibacterial and biodegradable properties of PHA- g-AA/CSP and PHA/CSP nanofibers demonstrate their potential for biomedical material applications.

摘要

我们报告了一种基于生物的电纺聚羟基烷酸酯(PHA)纳米纤维的抗菌和细胞相容性特性,该纤维经过黑蝇(BSF)蛹壳改性。通过在水中、酸和碱中研磨 BSF 蛹壳,制成了 5-50μm 的壳聚糖粉末(CSP)。CSP 与 PHA 在双轴进料的电纺机中结合,并通过制造工艺制成 50-500nm 的抗菌纳米纤维。我们研究了电纺 PHA/CSP 纳米纤维的形态、机械性能、吸水性和抗菌性能。为了提高纤维的相容性和功能性,将丙烯酸(AA)接枝到 PHA 上。与 PHA/CSP 纳米纤维相比,接枝后的 PHA- g-AA 纳米纤维的拉伸性能和形态特征表明 CSP 与 PHA- g-AA 纳米纤维之间的附着力增强,其耐水性和拉伸强度也得到了提高。为了研究材料的细胞相容性,将人包皮成纤维细胞接种到含有 3.0 和 6.0wt% CSP 的纳米纤维样品上。在 PHA/CSP 和 PHA- g-AA/CSP 纳米纤维中增加 CSP 的含量可以促进细胞增殖;此外,含有 CSP 的纳米纤维对细菌具有很强的抑制作用。PHA- g-AA/CSP 和 PHA/CSP 纳米纤维增强的抗菌和可生物降解性能表明它们在生物医学材料应用方面具有潜力。

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