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丝素蛋白和丝胶蛋白通过多组学分析差异增强干细胞的旁分泌和再生功能。

Silk Fibroin and Sericin Differentially Potentiate the Paracrine and Regenerative Functions of Stem Cells Through Multiomics Analysis.

机构信息

School of Medicine, Southeast University, Nanjing, 210009, China.

Jiangsu Key Laboratory for Biomaterials and Devices, Southeast University, Nanjing, 210096, China.

出版信息

Adv Mater. 2023 May;35(20):e2210517. doi: 10.1002/adma.202210517. Epub 2023 Apr 2.

DOI:10.1002/adma.202210517
PMID:36915982
Abstract

Silk fibroin (SF) and sericin (SS), the two major proteins of silk, are attractive biomaterials with great potential in tissue engineering and regenerative medicine. However, their biochemical interactions with stem cells remain unclear. In this study, multiomics are employed to obtain a global view of the cellular processes and pathways of mesenchymal stem cells (MSCs) triggered by SF and SS to discern cell-biomaterial interactions at an in-depth, high-throughput molecular level. Integrated RNA sequencing and proteomic analysis confirm that SF and SS initiate widespread but distinct cellular responses and potentiate the paracrine functions of MSCs that regulate extracellular matrix deposition, angiogenesis, and immunomodulation through differentially activating the integrin/PI3K/Akt and glycolysis signaling pathways. These paracrine signals of MSCs stimulated by SF and SS effectively improve skin regeneration by regulating the behavior of multiple resident cells (fibroblasts, endothelial cells, and macrophages) in the skin wound microenvironment. Compared to SS, SF exhibits better immunomodulatory effects in vitro and in vivo, indicating its greater potential as a carrier material of MSCs for skin regeneration. This study provides comprehensive and reliable insights into the cellular interactions with SF and SS, enabling the future development of silk-based therapeutics for tissue engineering and stem cell therapy.

摘要

丝素蛋白(SF)和丝胶(SS)是丝的两种主要蛋白质,它们作为生物材料具有巨大的潜力,可应用于组织工程和再生医学。然而,它们与干细胞的生化相互作用仍不清楚。在这项研究中,多组学被用于获得间充质干细胞(MSCs)受 SF 和 SS 触发的细胞过程和途径的全局视图,以在深入、高通量的分子水平上辨别细胞-生物材料相互作用。整合的 RNA 测序和蛋白质组学分析证实,SF 和 SS 引发了广泛但不同的细胞反应,并通过差异化激活整合素/PI3K/Akt 和糖酵解信号通路增强 MSCs 的旁分泌功能,从而调节细胞外基质沉积、血管生成和免疫调节。SF 和 SS 刺激的 MSC 旁分泌信号通过调节皮肤伤口微环境中多种常驻细胞(成纤维细胞、内皮细胞和巨噬细胞)的行为,有效地促进皮肤再生。与 SS 相比,SF 在体外和体内具有更好的免疫调节作用,表明其作为 MSC 用于皮肤再生的载体材料具有更大的潜力。本研究为 SF 和 SS 的细胞相互作用提供了全面可靠的见解,为基于丝的组织工程和干细胞治疗的治疗方法的未来发展奠定了基础。

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