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首页> 外文期刊>Journal of biomedical materials research, Part A >Rheological and mechanical properties of acellular and cell-laden methacrylated gellan gum hydrogels
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Rheological and mechanical properties of acellular and cell-laden methacrylated gellan gum hydrogels

机译:脱细胞和充满细胞的甲基丙烯酸结冷胶水凝胶的流变和力学性能

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摘要

Tissue engineered hydrogels hold great potential as nucleus pulposus substitutes (NP), as they promote intervertebral disc (IVD) regeneration and re-establish its original function. But, the key to their success in future clinical applications greatly depends on its ability to replicate the native 3D micro-environment and circumvent their limitation in terms of mechanical performance. In the present study, we investigated the rheological/mechanical properties of both ionic- (iGG-MA) and photo-crosslinked methacrylated gellan gum (phGG-MA) hydrogels. Steady shear analysis, injectability and confined compression stress-relaxation tests were carried out. The injectability of the reactive solutions employed for the preparation of iGG-MA and phGG-MA hydrogels was first studied, then the zero-strain compressive modulus and permeability of the acellular hydrogels were evaluated. In addition, human intervertebral disc (hIVD) cells encapsulated in both iGG-MA and phGG-MA hydrogels were cultured in vitro, and its mechanical properties also investigated under dynamic mechanical analysis at 37°C and pH 7.4. After 21 days of culturing, hIVD cells were alive (Calcein AM) and the E′ of ionic-crosslinked hydrogels and photo-crosslinked was higher than that observed for acellular hydrogels. Our study suggests that methacrylated gellan gum hydrogels present promising mechanical and biological performance as hIVD cells were producing extracellular matrix.
机译:组织工程水凝胶具有作为髓核替代物(NP)的巨大潜力,因为它们可以促进椎间盘(IVD)再生并重新建立其原始功能。但是,它们在未来临床应用中成功的关键很大程度上取决于其复制天然3D微环境并避免其在机械性能方面受到限制的能力。在本研究中,我们研究了离子型(iGG-MA)和光交联的甲基丙烯酸化吉兰糖胶(phGG-MA)水凝胶的流变/力学性能。进行了稳定的剪切分析,可注射性和有限的压缩应力松弛试验。首先研究了用于制备iGG-MA和phGG-MA水凝胶的反应溶液的可注射性,然后评估了无细胞水凝胶的零应变压缩模量和渗透性。此外,在体外培养封装在iGG-MA和phGG-MA水凝胶中的人椎间盘(hIVD)细胞,并在37°C和pH 7.4的动态力学分析下研究了其力学性能。培养21天后,hIVD细胞存活(钙调素AM),并且离子交联的水凝胶和光交联的E'高于无细胞水凝胶的E'。我们的研究表明,随着hIVD细胞产生细胞外基质,甲基丙烯酸结冷胶水凝胶具有良好的机械和生物学性能。

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