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仿生细胞外基质复合支架诱导人骨髓基质细胞成骨基因表达。

Biomimetic extracellular matrix-incorporated scaffold induces osteogenic gene expression in human marrow stromal cells.

机构信息

Department of Oral Biology, University of Illinois, Chicago, Illinois 60612, USA.

出版信息

Tissue Eng Part A. 2012 Feb;18(3-4):295-309. doi: 10.1089/ten.TEA.2011.0136. Epub 2011 Oct 24.

Abstract

Engineering biomaterials mimicking the biofunctionality of the extracellular matrix (ECM) is important in instructing and eliciting cell response. The native ECM is highly dynamic and has been shown to support cellular attachment, migration, and differentiation. The advantage of synthesizing an ECM-based biomaterial is that it mimics the native cellular environment. However, the ECM has tissue-specific composition and patterned arrangement. In this study, we have employed biomimetic strategies to develop a novel collagen/chitosan template that is embedded with the native ECM of differentiating human marrow stromal cells (HMSCs) to facilitate osteoblast differentiation. The scaffold was characterized for substrate stiffness by magnetic resonance imaging and nanoindentation and by immunohistochemical analysis for the presence of key ECM proteins. Gene expression analysis showed that the ECM scaffold supported osteogenic differentiation of undifferentiated HMSCs as significant changes were observed in the expression levels of growth factors, transcription factors, proteases, receptors, and ECM proteins. Finally, we demonstrate that the scaffold had the ability to nucleate calcium phosphate polymorphs to form a mineralized matrix. The results from this study suggest that the three-dimensional native ECM scaffold directly controls cell behavior and supports the osteogenic differentiation of mesenchymal stem cells.

摘要

工程仿生生物材料模仿细胞外基质(ECM)的生物功能对于指导和引发细胞反应非常重要。天然 ECM 高度动态,并已被证明支持细胞附着、迁移和分化。合成基于 ECM 的生物材料的优势在于它模仿了天然的细胞环境。然而,ECM 具有组织特异性的组成和图案排列。在这项研究中,我们采用仿生策略开发了一种新型胶原/壳聚糖模板,该模板嵌入了分化的人骨髓基质细胞(HMSC)的天然 ECM,以促进成骨细胞分化。通过磁共振成像和纳米压痕来评估支架的基底硬度,并通过免疫组织化学分析来评估关键 ECM 蛋白的存在。基因表达分析表明,ECM 支架支持未分化 HMSC 的成骨分化,因为在生长因子、转录因子、蛋白酶、受体和 ECM 蛋白的表达水平上观察到显著变化。最后,我们证明了支架具有成核磷酸钙多晶型物形成矿化基质的能力。这项研究的结果表明,三维天然 ECM 支架直接控制细胞行为并支持间充质干细胞的成骨分化。

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