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首页> 外文期刊>Tissue engineering, Part A >Gellan gum injectable hydrogels for cartilage tissue engineering applications: in vitro studies and preliminary in vivo evaluation.
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Gellan gum injectable hydrogels for cartilage tissue engineering applications: in vitro studies and preliminary in vivo evaluation.

机译:用于软骨组织工程应用的结冷胶可注射水凝胶:体外研究和初步体内评估。

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摘要

Gellan gum is a polysaccharide that we have previously proposed for applications in the cartilage tissue engineering field. In this work, gellan gum hydrogels were tested for their ability to be used as injectable systems using simple processing methods, able to deliver and maintain chondrocytes by in situ gelation, and support cell viability and production of extracellular matrix (ECM). Rheological measurements determined that the sol-gel transition occurred near the body temperature at 39 degrees C, upon temperature decrease, in approximately 20 s. Gellan gum discs shows a storage compression modulus of around 80 kPa at a frequency of 1 Hz by dynamic mechanical analysis. Human articular chondrocytes were encapsulated in the gels, cultured in vitro for total periods of 56 days, and analyzed for cell viability and ECM production. Calcein AM staining showed that cell kept viable after 14 days and the histological analysis and real-time quantitative polymerase chain reaction revealed that hyaline-like cartilage ECM was synthesized. Finally, the in vivo performance of the gellan gum hydrogels, in terms of induced inflammatory reaction and integration into the host tissue, was evaluated by subcutaneous implantation in Balb/c mice for 21 days. Histological analysis showed a residual fibrotic capsule at the end of the experiments. Dynamic mechanical analysis revealed that the gels were stable throughout the experiments while evidencing a tendency for decreasing mechanical properties, which was consistent with weight measurements. Altogether, the results demonstrate the adequacy of gellan gum hydrogels processed by simple methods for noninvasive injectable applications toward the formation of a functional cartilage tissue-engineered construct and originally report the preliminary response of a living organism to the subcutaneous implantation of the gellan gum hydrogels. These are the two novel features of this work.
机译:结冷胶是我们先前提出的用于软骨组织工程领域的多糖。在这项工作中,使用简单的加工方法测试了吉兰糖胶水凝胶用作注射系统的能力,能够通过原位凝胶化递送和维持软骨细胞,并支持细胞活力和细胞外基质(ECM)的产生。流变学测定表明,在温度降低后大约39 s内,体温在39℃附近发生了溶胶-凝胶转变。通过动态力学分析,结冷胶盘在1 Hz的频率下显示约80 kPa的储能压缩模量。将人关节软骨细胞封装在凝胶中,在体外培养总共56天,并分析细胞活力和ECM产生。钙黄绿素AM染色显示细胞在14天后仍能存活,组织学分析和实时定量聚合酶链反应显示合成了透明状软骨ECM。最后,通过在Balb / c小鼠中皮下植入21天,评估了吉兰糖胶水凝胶的体内性能,包括诱导的炎症反应和整合到宿主组织中。组织学分析显示在实验结束时残留纤维化囊。动态力学分析表明,凝胶在整个实验过程中都是稳定的,同时表现出力学性能下降的趋势,这与重量测量结果是一致的。总而言之,结果表明通过简单方法加工的结冷胶水凝胶对于无创注射应用对功能性软骨组织工程构建体的形成是足够的,并且最初报道了活生物体对结冷胶水凝胶的皮下植入的初步反应。这是这项工作的两个新颖特征。

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