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首页> 外文期刊>Artificial Organs >Potential of fortified fibrin/hyaluronic acid composite gel as a cell delivery vehicle for chondrocytes.
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Potential of fortified fibrin/hyaluronic acid composite gel as a cell delivery vehicle for chondrocytes.

机译:强化纤维蛋白/透明质酸复合凝胶作为软骨细胞的细胞传递载体的潜力。

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Numerous treatment methods have been applied for use in cartilage repair, including abrasion, drilling, and microfracture. Although chondrocyte transplantation is the preferred treatment, it has some shortcomings, such as difficulty of application (large and posterior condylar regions), poor chondrocyte distribution, and potential cell leakage from the defect region. The cell delivery system of the tissue engineering technique can be used to overcome these shortcomings. We chose fibrin/hyaluronan (HA) composite gel as an effective cell delivery system to resolve these issues. Both components are derived from natural extracellular matrix. In the first trial, fortified fibrin/HA composite gels with rabbit chondrocytes were tested by implantation in nude mice. At 4 weeks, glycosaminoglycan contents in the fibrin/HA composite (0.186 +/- 0.006 mg/mg) were significantly higher than those in the presence of fibrin alone (0.153 +/- 0.017 mg/mg). As a next step, we applied the fibrin/HA composite gel to animal cartilage defects using full thickness cartilage defect rabbit models. The fibrin/HA composite gel with rabbit chondrocytes (allogenic) was implanted into the experimental group, and the control group was implanted with the fibrin/HA composite gel alone. Implanted chondrocytes with the fibrin/HA composite showed improved cartilage formation. In conclusion, the key to successful regeneration of cartilage is to provide the repair site with a sufficient supply of chondrogenic cells with a suitable delivery vehicle to ensure maximal differentiation and deposition of the proper extracellular matrix. This study suggests the feasibility of tissue-engineered cartilage formation using fibrin/HA composite gel.
机译:许多方法已用于软骨修复,包括磨损,钻孔和微骨折。尽管软骨细胞移植是首选治疗方法,但它也有一些缺点,例如应用困难(large突区和后con区较大),软骨细胞分布不良以及潜在的细胞从缺损区渗漏。组织工程技术的细胞递送系统可用于克服这些缺点。我们选择纤维蛋白/透明质酸(HA)复合凝胶作为有效的细胞递送系统来解决这些问题。两种成分均源自天然细胞外基质。在第一个试验中,通过植入裸鼠来测试具有兔软骨细胞的强化纤维蛋白/ HA复合凝胶。在第4周,血纤蛋白/ HA复合物中的糖胺聚糖含量(0.186 +/- 0.006 mg / mg)显着高于单独存在血纤蛋白时的含量(0.153 +/- 0.017 mg / mg)。下一步,我们使用全厚度软骨缺损兔模型将纤维蛋白/ HA复合凝胶应用于动物软骨缺损。将具有兔软骨细胞(同种异体)的纤维蛋白/ HA复合凝胶植入实验组,对照组仅植入纤维蛋白/ HA复合凝胶。纤维蛋白/ HA复合物植入的软骨细胞显示出改善的软骨形成。总之,成功再生软骨的关键是为修复部位提供充足的软骨细胞供应,并提供合适的递送载体,以确保最大程度地分化和沉积适当的细胞外基质。这项研究表明使用纤维蛋白/ HA复合凝胶形成组织工程软骨的可行性。

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