Collagen Networks within 3D PEG Hydrogels Support Valvular Interstitial Cell Matrix Mineralization

M. E. Schroeder, Andrea Gonzalez Rodriguez, Kelly F Speckl, Cierra J. Walker, Firaol S. Midekssa, Joseph C. Grim, R. Weiss, K. Anseth
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引用次数: 12

Abstract

Enzymatically degradable hydrogels were designed for the 3D culture of valvular interstitial cells (VICs), and through the incorporation of various functionalities, we aimed to investigate the role of the tissue microenvironment in promoting the osteogenic properties of VICs and matrix mineralization. Specifically, porcine VICs were encapsulated in a poly(ethylene glycol) hydrogel crosslinked with a matrix metalloproteinase (MMP)-degradable crosslinker (KCGPQG↓IWGQCK) and formed via a thiol-ene photoclick reaction in the presence or absence of collagen type I to promote matrix mineralization. VIC-laden hydrogels were treated with osteogenic medium for up to 15 days, and the osteogenic response was characterized by the expression of RUNX2 as an early marker of an osteoblast-like phenotype, osteocalcin (OCN) as a marker of a mature osteoblast-like phenotype, and vimentin (VIM) as a marker of the fibroblast phenotype. In addition, matrix mineralization was characterized histologically with Von Kossa stain for calcium phosphate. Osteogenic response was further characterized biochemically with calcium assays, and physically via optical density measurements. When the osteogenic medium was supplemented with calcium chloride, OCN expression was upregulated and mineralization was discernable at 12 days of culture. Finally, this platform was used to screen various drug therapeutics that were assessed for their efficacy in preventing mineralization using optical density as a higher throughput read out. Collectively, these results suggest that matrix composition has a key role in supporting mineralization deposition within diseased valve tissue.
三维聚乙二醇水凝胶内的胶原网络支持瓣膜间质细胞基质矿化
我们设计了酶降解水凝胶用于瓣膜间质细胞(VICs)的三维培养,通过结合各种功能,我们旨在研究组织微环境在促进VICs成骨性能和基质矿化中的作用。具体来说,猪VICs被包裹在与基质金属蛋白酶(MMP)可降解交联剂(KCGPQG↓IWGQCK)交联的聚乙二醇水凝胶中,并在存在或不存在I型胶原的情况下通过巯基光点击反应形成,以促进基质矿化。满载vic的水凝胶在成骨培养基中处理长达15天,其成骨反应的特征是表达RUNX2(成骨细胞样表型的早期标记物)、骨钙素(OCN)(成熟成骨细胞样表型的标记物)和vimentin (VIM)(成纤维细胞表型的标记物)。此外,磷酸钙Von Kossa染色组织学表征基质矿化。成骨反应通过钙测定进一步生化表征,并通过光密度测量进行物理表征。当在成骨培养基中添加氯化钙时,OCN表达上调,并在培养12天后出现矿化。最后,该平台用于筛选各种药物治疗方法,使用光密度作为更高通量读出来评估其预防矿化的功效。总的来说,这些结果表明基质成分在支持病变瓣膜组织内矿化沉积中起关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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