详细信息
Microfluidic Regulation of Porous Poly(L-Lactide-Co-Ε-Caprolactone) Microcarrier to Refine Myoblast Differentiation Potential ( EI收录)
文献类型:期刊文献
英文题名:Microfluidic Regulation of Porous Poly(L-Lactide-Co-Ε-Caprolactone) Microcarrier to Refine Myoblast Differentiation Potential
作者:Wang, Zining[1]; Wang, Lu[2]; Song, Meng[1]; An, Chenjing[1]; Li, Yijing[1]; Zhou, Yan[2]; Cen, Lian[1]
机构:[1] Shanghai Key Laboratory of Multiphase Materials Chemical Engineering, Department of Product Engineering, School of Chemical Engineering, East China University of Science and Technology, No.130 Mei Long Road, Shanghai, 200237, China; [2] State Key Laboratory of Bioreactor Engineering, School of Bioengineering, East China University of Science and Technology, No.130 Mei Long Road, Shanghai, 200237, China
年份:2024
外文期刊名:SSRN
收录:EI(收录号:20242916707949)
语种:英文
外文关键词:Cytology - Gene expression - Macrophages - Microspheres - Muscle
摘要:With the growing interest in cell-based regenerative therapies for skeletal muscle injuries, there is a critical need for a microcarrier strategy specifically designed for superior functioning of myoblasts. Monodisperse porous poly(L-lactide-co-Ε-caprolactone) (PLCL) microcarriers with precisely controlled diameters were thus developed using microfluidics to explore their effect on differentiation performance of mouse skeletal myoblasts (C2C12 cells). A capillary microfluidic device was designed with varying parameters to fabricate four representative sets of microspheres with diameters of 177μm, 270μm, 355μm, and 472μm. C2C12 cells were cultured on these microspheres, and their adhesion and viability were assessed. Myogenic differentiation behavior of these cells was evaluated by specific gene expression and myosin heavy chain (MHC) staining. Inflammatory response of macrophages to these microcarriers was assess to qualify their suitability for muscle repair. Notably, microcarriers of 472μm exhibited the optimal performance in promoting myogenic differentiation of C2C12 cells. The expressions of myogenic differentiation markers MYOG, Desmin, and MYH2 were significantly enhanced on the 472μm group, showing respective increases of 2.41-fold, 2.15-fold, and 6.87-fold compared to those of the 177μm group. Moreover, the formation of long myotubes distributed in a global domain was observed on the 472 μm group with a fusion index nearly three times higher than that on the 177μm group. These microcarriers could effectively inhibit the expression of pro-inflammatory factors IL-6, TNF-α and IL-1β by macrophages in a high M1 polarization environment. The results offer a microfluidic based solution for in vitro engineering of injectable constructs for muscle repair and regeneration. ? 2024, The Authors. All rights reserved.
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