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硫酸葡聚糖增强的细胞外基质沉积促进间充质干细胞的成骨分化。

Dextran sulfate-amplified extracellular matrix deposition promotes osteogenic differentiation of mesenchymal stem cells.

机构信息

Institute for Tissue Engineering and Regenerative Medicine, The Chinese University of Hong Kong, Hong Kong SAR, China; School of Biomedical Sciences, Faculty of Medicine, The Chinese University of Hong Kong, Hong Kong SAR, China.

Institute for Tissue Engineering and Regenerative Medicine, The Chinese University of Hong Kong, Hong Kong SAR, China; Department of Orthopaedics & Traumatology, Faculty of Medicine, The Chinese University of Hong Kong, Hong Kong SAR, China.

出版信息

Acta Biomater. 2022 Mar 1;140:163-177. doi: 10.1016/j.actbio.2021.11.049. Epub 2021 Dec 4.

Abstract

The development of bone-like tissues in vitro that exhibit key features similar to those in vivo is needed to produce tissue models for drug screening and the study of bone physiology and disease pathogenesis. Extracellular matrix (ECM) is a predominant component of bone in vivo; however, as ECM assembly is sub-optimal in vitro, current bone tissue engineering approaches are limited by an imbalance in ECM-to-cell ratio. We amplified the deposition of osteoblastic ECM by supplementing dextran sulfate (DxS) into osteogenically induced cultures of human mesenchymal stem cells (MSCs). DxS, previously implicated to act as a macromolecular crowder, was recently demonstrated to aggregate and co-precipitate major ECM components, including collagen type I, thereby amplifying its deposition. This effect was re-confirmed for MSC cultures undergoing osteogenic induction, where DxS supplementation augmented collagen type I deposition, accompanied by extracellular osteocalcin accumulation. The resulting differentiated osteoblasts exhibited a more mature osteogenic gene expression profile, indicated by a strong upregulation of the intermediate and late osteogenic markers ALP and OCN, respectively. The associated cellular microenvironment was also enriched in bone morphogenetic protein 2 (BMP-2). Interestingly, the resulting decellularized matrices exhibited the strongest osteo-inductive effects on re-seeded MSCs, promoted cell proliferation, osteogenic marker expression and ECM calcification. Taken together, these findings suggest that DxS-mediated enhancement of osteogenic differentiation by MSCs is mediated by the amplified ECM, which is enriched in osteo-inductive factors. We have thus established a simple and reproducible approach to generate ECM-rich bone-like tissue in vitro with sequestration of osteo-inductive factors. STATEMENT OF SIGNIFICANCE: As extracellular matrix (ECM) assembly is significantly retarded in vitro, the imbalance in ECM-to-cell ratio hampers current in vitro bone tissue engineering approaches in their ability to faithfully resemble their in vivo counterpart. We addressed this limitation by leveraging a poly-electrolyte mediated co-assembly and amplified deposition of ECM during osteogenic differentiation of human mesenchymal stem cells (MSCs). The resulting pericelluar space in culture was enriched in organic and inorganic bone ECM components, as well as osteo-inductive factors, which promoted the differentiation of MSCs towards a more mature osteoblastic phenotype. These findings thus demonstrated a simple and reproducible approach to generate ECM-rich bone-like tissue in vitro with a closer recapitulation of the in vivo tissue niche.

摘要

体外培养具有类似体内关键特征的骨样组织对于药物筛选和骨生理学及疾病发病机制的研究至关重要。细胞外基质(ECM)是体内骨的主要成分;然而,由于 ECM 在体外的组装效果不佳,目前的骨组织工程方法受到 ECM 与细胞比例失衡的限制。我们通过在人骨髓间充质干细胞(MSCs)的成骨诱导培养物中添加葡聚糖硫酸酯(DxS)来扩增成骨细胞 ECM 的沉积。DxS 先前被认为是一种大分子拥挤剂,最近被证明可以聚集和共沉淀主要的 ECM 成分,包括 I 型胶原,从而扩增其沉积。这一效应在经历成骨诱导的 MSC 培养中得到了再次证实,其中 DxS 补充剂增加了 I 型胶原的沉积,同时伴随着细胞外骨钙素的积累。由此产生的分化成骨细胞表现出更成熟的成骨基因表达谱,分别由中间和晚期成骨标志物 ALP 和 OCN 的强烈上调表示。相关的细胞微环境也富含骨形态发生蛋白 2(BMP-2)。有趣的是,脱细胞基质对再接种的 MSCs 表现出最强的成骨诱导作用,促进细胞增殖、成骨标志物表达和 ECM 钙化。总之,这些发现表明,通过 MSC 介导的 DxS 增强成骨分化是由富含成骨诱导因子的扩增 ECM 介导的。我们已经建立了一种简单且可重复的方法,在体外生成富含 ECM 的骨样组织,并将成骨诱导因子隔离。

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