PIP2 Alteration Caused by Elastic Modulus and Tropism of Electrospun Scaffolds Facilitates Altered BMSCs Proliferation and Differentiation

Author:

Gao Chen1ORCID,Lai Yulin23,Cheng Liang23,Cheng Yifan23,Miao Anqi23,Chen Jialong3,Yang Runhuai23,Xiong Fei1ORCID

Affiliation:

1. State Key Laboratory of Bioelectronics, Jiangsu Key Laboratory for Biomaterials and Devices, School of Biological Science and Medical Engineering Southeast University Nanjing Jiangsu 210096 China

2. Key Lab of Oral Diseases Research of Anhui Province, College and Hospital of Stomatology Anhui Medical University Hefei Anhui 230022 China

3. School of Biomedical Engineering Anhui Medical University Hefei 230032 China

Abstract

AbstractAligned submicron fibers have played an essential role in inducing stem cell proliferation and differentiation. In this study, it is aimed to identify the differential causes of stem cell proliferation and differentiation between bone marrow mesenchymal stem cells (BMSCs) on aligned‐random fibers with different elastic modulus, and to change the differential levels through a regulatory mechanism mediated by B‐cell lymphoma 6 protein(BCL‐6) and miRNA‐126‐5p(miR‐126‐5p). The results showed that phosphatidylinositol(4,5)bisphosphate alterations are found in the aligned fibers compared with the random fibers, which has a regular and oriented structure, excellent cytocompatibility, regular cytoskeleton, and high differentiation potential. The same trend is actual for the aligned fibers with a lower elastic modulus. The level of proliferative differentiation genes in cells is altered by BCL‐6 and miR‐126‐5p mediated regulatory mechanisms to make the cell distribution nearly consistent with the cell state on low elastic modulus aligned fibers. This work demonstrates the reason for the difference of cells between the two kinds of fibers and on fibers with different elastic modulus. These findings provide more insights for understanding the gene‐level regulation of cell growth in tissue engineering.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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