Heterogeneous Differentiation of Human Mesenchymal Stem Cells in 3D Extracellular Matrix Composites

Q2 Biochemistry, Genetics and Molecular Biology BioResearch Open Access Pub Date : 2016-01-01 DOI:10.1089/biores.2015.0044
Jangwook P. Jung, Meredith K. Bache-Wiig, P. Provenzano, B. Ogle
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引用次数: 30

Abstract

Abstract Extracellular matrix (ECM) proteins are structural elements of tissue and also potent signaling molecules. Previously, our laboratory showed that ECM of 2D coatings can trigger differentiation of bone marrow-derived mesenchymal stem cells (MSCs) into mesodermal lineages in an ECM-specific manner over 14 days, in some cases comparable to chemical induction. To test whether a similar effect was possible in a 3D, tissue-like environment, we designed a synthetic-natural biomaterial composite. The composite can present whole-molecule ECM proteins to cells, even those that do not spontaneously form hydrogels ex vivo, in 3D. To this end, we entrapped collagen type I, laminin-111, or fibronectin in ECM composites with MSCs and directly compared markers of mesodermal differentiation including cardiomyogenic (ACTC1), osteogenic (SPP1), adipogenic (PPARG), and chondrogenic (SOX9) in 2D versus 3D. We found the 3D condition largely mimicked the 2D condition such that the addition of type I collagen was the most potent inducer of differentiation to all lineages tested. One notable difference between 2D and 3D was pronounced adipogenic differentiation in 3D especially in the presence of exogenous collagen type I. In particular, PPARG gene expression was significantly increased ∼16-fold relative to chemical induction, in 3D and not in 2D. Unexpectedly, 3D engagement of ECM proteins also altered immunomodulatory function of MSCs in that expression of IL-6 gene was elevated relative to basal levels in 2D. In fact, levels of IL-6 gene expression in 3D composites containing exogenously supplied collagen type I or fibronectin were statistically similar to levels attained in 2D with tumor necrosis factor-α (TNF-α) stimulation and these levels were sustained over a 2-week period. Thus, this novel biomaterial platform allowed us to compare the biochemical impact of whole-molecule ECM proteins in 2D versus 3D indicating enhanced adipogenic differentiation and IL-6 expression of MSC in the 3D context. Exploiting the biochemical impact of ECM proteins on MSC differentiation and immunomodulation could augment the therapeutic utility of MSCs.
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人间充质干细胞在三维细胞外基质复合材料中的异质分化
细胞外基质(Extracellular matrix, ECM)蛋白是组织的结构元件,也是重要的信号分子。之前,我们的实验室表明,2D涂层的ECM可以在14天内以ECM特异性的方式触发骨髓来源的间充质干细胞(MSCs)分化为中胚层谱系,在某些情况下可与化学诱导相媲美。为了测试在类似组织的3D环境中是否可能产生类似的效果,我们设计了一种合成的天然生物材料复合材料。这种复合物可以将全分子ECM蛋白以3D的形式呈现给细胞,即使是那些不能在体外自发形成水凝胶的细胞。为此,我们将I型胶原、层粘连蛋白-111或纤维连接蛋白包埋在含有间充质干细胞的ECM复合材料中,并在2D和3D中直接比较中胚层分化标志物,包括心肌(ACTC1)、成骨(SPP1)、脂肪(PPARG)和软骨(SOX9)。我们发现3D条件在很大程度上模仿了2D条件,因此添加I型胶原蛋白是所有测试谱系中最有效的分化诱导剂。2D和3D之间的一个显著差异是3D中明显的脂肪生成分化,特别是在外源i型胶原存在的情况下。特别是,相对于化学诱导,PPARG基因表达在3D中显著增加了16倍,而在2D中则没有。出乎意料的是,ECM蛋白的3D参与也改变了MSCs的免疫调节功能,IL-6基因的表达相对于2D的基础水平升高。事实上,在含有外源性I型胶原或纤维连接蛋白的3D复合材料中,IL-6基因表达水平在统计学上与肿瘤坏死因子-α (TNF-α)刺激的2D复合材料中达到的水平相似,并且这些水平持续了2周。因此,这种新型生物材料平台使我们能够比较全分子ECM蛋白在2D和3D环境下的生化影响,表明在3D环境下MSC的成脂分化和IL-6表达增强。利用ECM蛋白对间充质干细胞分化和免疫调节的生化影响可以增加间充质干细胞的治疗效用。
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来源期刊
BioResearch Open Access
BioResearch Open Access Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (all)
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期刊介绍: BioResearch Open Access is a high-quality open access journal providing peer-reviewed research on a broad range of scientific topics, including molecular and cellular biology, tissue engineering, regenerative medicine, stem cells, gene therapy, systems biology, genetics, virology, and neuroscience. The Journal publishes basic science and translational research in the form of original research articles, comprehensive review articles, mini-reviews, rapid communications, brief reports, technology reports, hypothesis articles, perspectives, and letters to the editor.
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