Seib F Philipp, Müller Katrin, Franke Martina, Grimmer Milauscha, Bornhäuser Martin, Werner Carsten
Leibniz Institute for Polymer Research, Max Bergmann Centre for Biomaterials Dresden, Dresden, Germany.
Tissue Eng Part A. 2009 Oct;15(10):3161-71. doi: 10.1089/ten.TEA.2008.0600.
The bone marrow harbors multipotent mesenchymal stromal cells (MSCs) that nurture hematopoietic stem cells (HSCs). The extracellular matrix (ECM) is an integral part of the bone marrow, and the aim of this study was therefore to examine the effect of engineered ECM substrates on MSC gene expression over time and to determine quantitatively the functional ability of ECM-cultured MSCs to support HSCs. ECMs were surface immobilized using thin films of maleic anhydride to covalently immobilize tropocollagen or fibrillar collagen type I to the substrate. Where indicated, collagen type I fibrils were supplemented with heparin or hyaluronic acid. All surfaces maintained MSC viability and supported cell expansion. Microarray analysis of MSCs cultured on engineered ECM substrates revealed that culture time, as well as substrate composition, significantly affected expression levels. Based on these studies, it was possible to predict the effect of these substrates on in vitro HSC clonogenicity and self-renewal. The ability to regulate the expression of stromal factors using engineered ECM is exciting and warrants further studies to identify the ECM components and combinations that maximize the expansion of clonogenic HSCs.
骨髓中含有多能间充质基质细胞(MSC),这些细胞滋养造血干细胞(HSC)。细胞外基质(ECM)是骨髓的一个组成部分,因此本研究的目的是研究工程化ECM底物随时间对MSC基因表达的影响,并定量确定ECM培养的MSC支持HSC的功能能力。使用马来酸酐薄膜将ECM表面固定,以将原胶原蛋白或I型纤维状胶原蛋白共价固定到底物上。在指定的情况下,I型胶原纤维补充有肝素或透明质酸。所有表面均维持MSC的活力并支持细胞扩增。对在工程化ECM底物上培养的MSC进行微阵列分析表明,培养时间以及底物组成均显著影响表达水平。基于这些研究,可以预测这些底物对体外HSC克隆形成能力和自我更新的影响。利用工程化ECM调节基质因子表达的能力令人兴奋,值得进一步研究以确定能使克隆性HSC最大程度扩增的ECM成分及其组合。