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静电纺丝丝素/纤维蛋白血管支架具有优异的机械性能和生物相容性,可应用于组织工程。

Electrospun silk fibroin/fibrin vascular scaffold with superior mechanical properties and biocompatibility for applications in tissue engineering.

机构信息

Department of Surgical Base, Guangdong Second Provincial General Hospital, Guangzhou, China.

Biomedical College, Guangdong University of Technology, Guangzhou, China.

出版信息

Sci Rep. 2024 Feb 16;14(1):3942. doi: 10.1038/s41598-024-54638-0.

Abstract

Electrospun scaffolds play important roles in the fields of regenerative medicine and vascular tissue engineering. The aim of the research described here was to develop a vascular scaffold that mimics the structural and functional properties of natural vascular scaffolding. The mechanical properties of artificial vascular tissue represent a key issue for successful transplantation in small diameter engineering blood vessels. We blended silk fibroin (SF) and fibrin to fabricate a composite scaffold using electrospinning to overcome the shortcomings of fibrin with respect to its mechanical properties. Subsequently, we then carefully investigated the morphological, mechanical properties, hydrophilicity, hemocompatibility, degradation, cytocompatibility and biocompatibility of the SF/fibrin (0:100), SF/fibrin (15:85), SF/fibrin (25:75), and SF/fibrin (35:65) scaffolds. Based on these in vitro results, we implanted SF/fibrin (25:75) vascular scaffold subcutaneously and analyzed its in vivo degradation and histocompatibility. The fiber structure of the SF/fibrin hybrid scaffold was smooth and uniform, and its fiber diameters were relatively small. Compared with the fibrin scaffold, the SF/fibrin scaffold clearly displayed increased mechanical strength, but the hydrophilicity weakened correspondingly. All of the SF/fibrin scaffolds showed excellent blood compatibility and appropriate biodegradation rates. The SF/fibrin (25:75) scaffold increased the proliferation and adhesion of MSCs. The results of animal experiments confirmed that the degradation of the SF/fibrin (25:75) scaffold was faster than that of the SF scaffold and effectively promoted tissue regeneration and cell infiltration. All in all, the SF/fibrin (25:75) electrospun scaffold displayed balanced and controllable biomechanical properties, degradability, and good cell compatibility. Thus, this scaffold proved to be an ideal candidate material for artificial blood vessels.

摘要

静电纺丝支架在再生医学和血管组织工程领域发挥着重要作用。本研究旨在开发一种模仿天然血管支架结构和功能特性的血管支架。人工血管组织的力学性能是小直径工程血管成功移植的关键问题。我们将丝素蛋白(SF)和纤维蛋白混合,通过静电纺丝制造出一种复合支架,以克服纤维蛋白在力学性能方面的缺点。然后,我们仔细研究了 SF/纤维蛋白(0:100)、SF/纤维蛋白(15:85)、SF/纤维蛋白(25:75)和 SF/纤维蛋白(35:65)支架的形态、力学性能、亲水性、血液相容性、降解、细胞相容性和生物相容性。基于这些体外结果,我们将 SF/纤维蛋白(25:75)血管支架皮下植入,并分析其体内降解和组织相容性。SF/纤维蛋白杂化支架的纤维结构光滑均匀,纤维直径相对较小。与纤维蛋白支架相比,SF/纤维蛋白支架明显显示出更高的机械强度,但相应地亲水性减弱。所有 SF/纤维蛋白支架均表现出良好的血液相容性和适当的降解率。SF/纤维蛋白(25:75)支架增加了 MSC 的增殖和黏附。动物实验结果证实,SF/纤维蛋白(25:75)支架的降解速度快于 SF 支架,有效促进了组织再生和细胞浸润。总之,SF/纤维蛋白(25:75)静电纺丝支架具有平衡可控的生物力学性能、可降解性和良好的细胞相容性。因此,这种支架被证明是一种理想的人工血管候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6031/10873321/46e43cac0d79/41598_2024_54638_Fig1_HTML.jpg

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