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首页> 外文期刊>Acta biomaterialia >Generating favorable growth factor and protease release profiles to enable extracellular matrix accumulation within an in vitro tissue engineering environment
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Generating favorable growth factor and protease release profiles to enable extracellular matrix accumulation within an in vitro tissue engineering environment

机译:产生有利的生长因子和蛋白酶释放曲线,使细胞外基质积累能够在体外组织工程环境中实现

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Tissue engineering (particularly for the case of load-bearing cardiovascular and connective tissues) requires the ability to promote the production and accumulation of extracellular matrix (ECM) components (e.g., collagen, glycosaminoglycan and elastin). Although different approaches have been attempted in order to enhance ECM accumulation in tissue engineered constructs, studies of underlying signalling mechanisms that influence ECM deposition and degradation during tissue remodelling and regeneration in multi-cellular culture systems have been limited. The current study investigated vascular smooth muscle cell (VSMC)-monocyte co-culture systems using different VSMC:monocyte ratios, within a degradable polyurethane scaffold, to assess their influence on ECM generation and degradation processes, and to elucidate relevant signalling molecules involved in this in vitro vascular tissue engineering system. It was found that a desired release profile of growth factors (e.g. insulin growth factor-1 (IGF-1)) and hydrolytic proteases (e.g. matrix-metalloproteinases 2, 9,13 and 14 (MMP2, MMP9, MMP13 and MMP14)), could be achieved in co-culture systems, yielding an accumulation of ECM (specifically for 2:1 and 4:1 VSMC:monocyte culture systems). This study has significant implications for the tissue engineering field (including vascular tissue engineering), not only because it identified important cytokines and proteases that control ECM accumulation/degradation within synthetic tissue engineering scaffolds, but also because the established culture systems could be applied to improve the development of different types of tissue constructs.
机译:组织工程(特别是对于承重的心血管和结缔组织的情况)需要促进细胞外基质(ECM)组分的生产和积累(例如,胶原蛋白,糖胺糖苷和弹性蛋白)的能力。尽管已经尝试了不同的方法以增强组织工程构建体中的ECM积累,但有限地研究了影响ECM沉积和降解的基础信号传导机制的研究已经有限。目前的研究调查了使用不同VSMC的血管平滑肌细胞(VSMC) - 单胞外细胞共培养系统:单核煤比在可降解的聚氨酯支架内,以评估它们对ECM生成和降解过程的影响,并阐明涉及的相关信号分子体外血管组织工程系统。发现生长因子的所需释放曲线(例如胰岛素生长因子-1(IGF-1))和水解蛋白酶(例如基质 - 金属蛋白酶2,9,13和14(MMP2,MMP9,MMP13和MMP14)),可以在共培养系统中实现,产生ECM的积累(专门为2:1和4:1 VSMC:单核细胞培养系统)。该研究对组织工程领域(包括血管组织工程)具有显着影响,不仅是因为它鉴定了控制ECM积聚/降解的重要细胞因子和蛋白酶,而且因为可以应用既定的培养系统改善不同类型的组织构建体的发展。

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