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Injectable dual-gelling cell-laden composite hydrogels for bone tissue engineering

机译:用于骨组织工程的可注射双凝胶载有细胞的复合水凝胶

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摘要

The present work investigated the osteogenic potential of injectable, dual thermally and chemically gelable composite hydrogels for mesenchymal stem cell (MSC) delivery in vitro and in vivo. Composite hydrogels comprising copolymer macromers of N-isopropylacrylamide were fabricated through the incorporation of gelatin microparticles (GMPs) as enzymatically digestible porogens and sites for cellular attachment. High and low polymer content hydrogels with and without GMP loading were shown to successfully encapsulate viable MSCs and maintain their survival over 28 days in vitro. GMP incorporation was also shown to modulate alkaline phosphatase production, but enhanced hydrogel mineralization along with higher polymer content even in the absence of cells. Moreover, the regenerative capacity of 2 mm thick hydrogels with GMPs only, MSCs only, or GMPs and MSCs was evaluated in vivo in an 8 mm rat critical size cranial defect for 4 and 12 weeks. GMP incorporation led to enhanced bony bridging and mineralization within the defect at each timepoint, and direct bone-implant contact as determined by microcomputed tomography and histological scoring, respectively. Encapsulation of both GMPs and MSCs enabled hydrogel degradation leading to significant tissue infiltration and osteoid formation. The results suggest that these injectable, dual-gelling cell-laden composite hydrogels can facilitate bone ingrowth and integration, warranting further investigation for bone tissue engineering.
机译:本工作研究了可注射,热和化学双重凝胶化复合水凝胶在体外和体内递送间充质干细胞(MSC)的成骨潜力。通过掺入明胶微粒(GMP)作为可酶消化的致孔剂和细胞附着位点,制备出包含N-异丙基丙烯酰胺共聚物大分子单体的复合水凝胶。具有和不具有GMP载量的高和低聚合物含量水凝胶均已成功封装了可行的MSC,并在体外维持了超过28天的存活率。 GMP的掺入还显示出调节碱性磷酸酶的产生,但是即使在没有细胞的情况下,水凝胶矿化作用也得以增强,同时聚合物含量也更高。此外,在8mm大鼠临界大小颅骨缺损中,仅在2mm厚的仅GMP,仅MSC或GMPs和MSC的水凝胶的再生能力评估了4和12周。 GMP的引入在每个时间点都增强了缺损处的骨桥和矿化,并分别通过微计算机断层扫描和组织学评分确定了直接的骨-植入物接触。 GMP和MSC的封装均使水凝胶降解,从而导致明显的组织浸润和类骨质形成。结果表明,这些可注射的,充满双凝胶的充满细胞的复合水凝胶可以促进骨向内生长和整合,从而有必要进一步研究骨组织工程。

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