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用于潜在角膜组织工程应用的具有可调性能的光学透明丝素蛋白膜:工艺-性能-功能关系研究

Optically Clear Silk Fibroin Films with Tunable Properties for Potential Corneal Tissue Engineering Applications: A Process-Property-Function Relationship Study.

作者信息

Beena Maya, Ameer Jimna Mohamed, Kasoju Naresh

机构信息

Division of Tissue Culture, Department of Applied Biology, Biomedical Technology Wing, Sree Chitra Tirunal Institute for Medical Science and Technology, Thiruvananthapuram 695012, Kerala, India.

出版信息

ACS Omega. 2022 Aug 17;7(34):29634-29646. doi: 10.1021/acsomega.2c01579. eCollection 2022 Aug 30.

Abstract

Owing to the shortage of donor corneas and issues associated with conventional corneal transplantation, corneal tissue engineering has emerged as a promising therapeutic alternative. Biocompatibility and other attractive features make silk fibroin a biomaterial of choice for corneal tissue engineering applications. The current study presents three modes of silk fibroin film fabrication by solvent casting with popular solvents, viz. aqueous (aq), formic acid (FA), and hexafluoroisopropanol (HFIP), followed by three standard modes of postfabrication annealing with water vapor, methanol vapor, and steam, and systematic characterization studies including corneal cell culture . The results indicated that silk fibroin films made from aq, FA, and HFIP solvents had surface roughness (Rq) of 1.39, 0.32, and 0.13, contact angles of 73°, 85°, and 89°, water uptake% of 58, 29, and 27%, swelling ratios of 1.58, 1.3, and 1.28, and water vapor transmission% of 39, 26, and 22%, respectively. The degradation rate was in the order of aq > HF > FA, whereas the tensile strength was in the order of aq < HF < FA. Further, the results of the annealing process indicated notable changes in morpho-topographical, physical, degradation, and tensile properties. However, the films showed no detectable changes in chemical composition and remained optically clear with >90% transmission in the visible range, irrespective of fabrication and postfabrication processing conditions. The films were noncytotoxic against L929 cells and were cytocompatible with rabbit cornea-derived SIRC cells . The study demonstrated the potential of fine-tuning various properties of silk fibroin films by varying the fabrication and postfabrication processing conditions.

摘要

由于供体角膜短缺以及传统角膜移植相关的问题,角膜组织工程已成为一种有前景的治疗选择。生物相容性和其他吸引人的特性使丝素蛋白成为角膜组织工程应用的首选生物材料。当前研究展示了通过用常用溶剂(即水(aq)、甲酸(FA)和六氟异丙醇(HFIP))进行溶液浇铸来制备丝素蛋白膜的三种模式,随后是用水蒸气、甲醇蒸气和蒸汽进行三种标准的后制备退火模式,以及包括角膜细胞培养在内的系统表征研究。结果表明,由水、甲酸和六氟异丙醇溶剂制成的丝素蛋白膜的表面粗糙度(Rq)分别为1.39、0.32和0.13,接触角分别为73°、85°和89°,吸水率分别为58%、29%和27%,溶胀率分别为1.58、1.3和1.28,水蒸气透过率分别为39%、26%和22%。降解速率顺序为水>六氟异丙醇>甲酸,而拉伸强度顺序为水<六氟异丙醇<甲酸。此外,退火过程的结果表明在形态拓扑、物理、降解和拉伸性能方面有显著变化。然而,无论制备和后制备加工条件如何,这些膜在化学成分上没有可检测到的变化,并且在可见光范围内保持光学透明,透过率>90%。这些膜对L929细胞无细胞毒性,并且与兔角膜来源的SIRC细胞具有细胞相容性。该研究证明了通过改变制备和后制备加工条件来微调丝素蛋白膜各种性能的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/190b/9434766/10e04f08dee4/ao2c01579_0002.jpg

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