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首页> 外文期刊>Journal of tissue engineering and regenerative medicine >Synergy between myogenic and non-myogenic cells in a 3D tissue-engineered craniofacial skeletal muscle construct
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Synergy between myogenic and non-myogenic cells in a 3D tissue-engineered craniofacial skeletal muscle construct

机译:3D组织工程颅面骨骼肌构造中肌源性和非肌源性细胞之间的协同作用

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摘要

In vitro skeletal muscle engineering involves the culture of isolated primary myogenic cells in an environment conducive to the formation of a three-dimensional (3D) tissue construct capable of generating force. Isolated human myogenic cells have been used to study cell-cell interactions, permitting identification of functions intrinsic to skeletal muscle in two dimensions (2D). However, the independent contribution of human myogenic and non-myogenic cell types that comprise skeletal muscle to myogenic cell differentiation, force generation and matrix remodelling has yet to be established in 3D. The objective of this study was to use isolated human myogenic and non-myogenic muscle-derived cells (MDC) seeded in 3D collagen constructs to engineer a biomimetic craniofacial skeletal construct. The aim was to purify the two subpopulations of myogenic and non-myogenic cells from human masseter muscle and quantitate myogenic cell differentiation, force generation and matrix remodelling of the 3D collagen construct. The results showed that both the heterogeneous mixture of cells and the purified myogenic cell population expressed myogenin, indicative of myogenic cell differentiation. Further, there was a synergistic effect as the heterogeneous co-culture of myogenic and non-myogenic cells generated the highest peak force and expressed the most MMP-2 mRNA compared to isolated individual cell populations.
机译:体外骨骼肌工程涉及在有利于形成能够产生力的三维(3D)组织构建体形成的环境中培养分离的原代成肌细胞。分离的人类成肌细胞已被用于研究细胞间的相互作用,从而可以二维地识别骨骼肌固有的功能(2D)。但是,包括骨骼肌在内的人类成肌细胞和非成肌细胞类型对成肌细胞分化,力生成和基质重塑的独立贡献尚未在3D中确定。这项研究的目的是使用接种在3D胶原蛋白构建物中的分离的人类肌源性和非肌源性肌肉衍生细胞(MDC)来设计仿生颅面骨骼结构。目的是从人类咬肌中纯化成肌细胞和非成肌细胞的两个亚群,并量化3D胶原构建体的成肌细胞分化,力生成和基质重塑。结果表明,细胞的异质混合物和纯化的成肌细胞群体均表达成肌蛋白,表明成肌细胞分化。此外,由于与分离的单个细胞群体相比,成肌细胞和非成肌细胞的异质共培养产生最高的峰值力并表达最多的MMP-2 mRNA,因此具有协同作用。

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