Key Laboratory of Silkworm and Bee Resource Utilization and Innovation of Zhejiang Province, Institute of Applied Bioresource Research, College of Animal Science, Zhejiang University, 866 Yuhangtang Road, Hangzhou 310058, China.
Biomolecules. 2023 Jun 14;13(6):990. doi: 10.3390/biom13060990.
Cardiac tissue engineering is a promising strategy for the treatment of myocardial damage. Mesenchymal stem cells (MSCs) are extensively used in tissue engineering. However, transformation of MSCs into cardiac myocytes is still a challenge. Furthermore, weak adhesion of MSCs to substrates often results in poor cell viability. Here, we designed a composite matrix based on silk fibroin (SF) and graphene oxide (GO) for improving the cell adhesion and directing the differentiation of MSCs into cardiac myocytes. Specifically, patterned SF films were first produced by soft lithographic. After being treated by air plasma, GO nanosheets could be successfully coated on the patterned SF films to construct the desired matrix (P-GSF). The resultant P-GSF films presented a nano-topographic surface characterized by linear grooves interlaced with GO ridges. The P-GSF films exhibited high protein absorption and suitable mechanical strength. Furthermore, the P-GSF films accelerated the early cell adhesion and directed the growth orientation of MSCs. RT-PCR results and immunofluorescence imaging demonstrated that the P-GSF films significantly improved the cardiomyogenic differentiation of MSCs. This work indicates that patterned SF films coated with GO are promising matrix in the field of myocardial repair tissue engineering.
心脏组织工程是治疗心肌损伤的一种很有前途的策略。间充质干细胞(MSCs)广泛应用于组织工程。然而,将 MSCs 转化为心肌细胞仍然是一个挑战。此外,MSCs 与基底的弱黏附通常导致细胞活力差。在这里,我们设计了一种基于丝素蛋白(SF)和氧化石墨烯(GO)的复合材料基质,以提高细胞黏附性,并指导 MSCs 向心肌细胞分化。具体来说,首先通过软光刻法制备图案化 SF 薄膜。经空气等离子体处理后,GO 纳米片可成功地涂覆在图案化 SF 薄膜上,构建所需的基质(P-GSF)。所得的 P-GSF 薄膜具有线性凹槽交错 GO 脊的纳米拓扑表面特征。P-GSF 薄膜具有高蛋白质吸收能力和适宜的机械强度。此外,P-GSF 薄膜还能加速 MSC 的早期黏附,并指导其生长方向。RT-PCR 结果和免疫荧光成像表明,P-GSF 薄膜显著促进了 MSCs 的心肌生成分化。这项工作表明,涂覆 GO 的图案化 SF 薄膜在心肌修复组织工程领域具有广阔的应用前景。