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首页> 外文期刊>Journal of biomedical materials research, Part A >Biomimetic coating of cross‐linked gelatin to improve mechanical and biological properties of electrospun PET: A promising approach for small caliber vascular graft applications
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Biomimetic coating of cross‐linked gelatin to improve mechanical and biological properties of electrospun PET: A promising approach for small caliber vascular graft applications

机译:交联明胶的仿生涂层,提高电纺宠物的机械和生物学性能:小口径血管移植应用的有希望的方法

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摘要

Abstract Electrospun PET (ePET) is a promising material for small caliber vascular graft applications owing to its tunable mechanical properties, biocompatibility, and nanofibrous structure that mimic the morphology of natural extracellular matrix. However, the inherent inertness of PET impairs the adhesion and proliferation of endothelial cells on the inner surface of ePET tubular grafts, hindering the formation of a functional endothelium. Gelatin coatings, owing to their ability to promote endothelialization, are a valuable approach to overcome the limitations of ePET. Herein, a novel process for the deposition of stable biomimetic coatings of gelatin on ePET tubular grafts is proposed. Electrospun PET was first aminated by plasma treatment and then coated with a gelatin hydrogel cross‐linked in situ by a Michael‐type addition reaction. Amination provided a superhydrophilic behavior to the ePET surface, allowing easy gelatin interpenetration along the wall thickness of the tubular structure, and the obtainment of thin coatings that maintained the morphology of ePET fibers. Gelatin coating was stable at long term in a physiological‐like environment, noncytotoxic and promoted in vitro cell adhesion and proliferation. Noteworthy, the mechanical properties of gelatin‐coated ePET tubular grafts were improved in terms of elastic modulus, compliance, and elastic recoil, finally better matching the characteristics of native blood vessels. Altogether, the proposed coating technique successfully combines the advantages of ePET nanofibrous structure with cross‐linked gelatin biological cues and mechanical reinforcement, and emerges as a promising strategy for the development of biocompatible small caliber vascular grafts with superior biomimetic and mechanical properties. ? 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 105A: 2405–2415, 2017.
机译:摘要电纺PET(EPET)是由于其可调谐机械性能,生物相容性和纳米纤维结构而模仿天然细胞外基质的形态的小口径血管移植应用的有希望的材料。然而,PET的固有惰性损害了EPET管状移植物内表面上内皮细胞的粘附性和增殖,阻碍了官能内皮的形成。 Gelatin涂料由于其促进内皮化的能力,是克服EPET局限性的有价值的方法。在此,提出了一种新的用于在EPET管状移植物上沉积明胶稳定仿真涂层的新方法。首先通过等离子体处理搅拌ElecturpUp PET,然后通过迈克尔型加成反应涂有明胶水凝胶。胺化为EPET表面提供了一种超级水性行为,允许沿管状结构的壁厚进行易于明胶互相,并获得保持EPET纤维形态的薄涂层。明胶涂层长期稳定,在生理样环境中,非酸碱毒性和促进体外细胞粘附和增殖。值得注意的是,在弹性模量,依从性和弹性反冲方面提高了明胶涂覆的EPET管状移植物的力学性质,最后更好地匹配原生血管的特性。完全,所提出的涂层技术成功结合了EPET纳米纤维结构与交联明胶生物线索和机械加固的优点,并作为具有卓越仿生和机械性能的生物相容性小口径血管移植物的有希望的策略。还2017年Wiley期刊,Inc。J生物密制Res部分:105A:2405-2415,2017。

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