首页> 外文期刊>The international journal of artificial organs >Ectopic cartilage formation induced by mesenchymal stem cells on porous gelatin-chondroitin-hyaluronate scaffold containing microspheres loaded with TGF-beta1.
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Ectopic cartilage formation induced by mesenchymal stem cells on porous gelatin-chondroitin-hyaluronate scaffold containing microspheres loaded with TGF-beta1.

机译:间充质干细胞在多孔明胶-软骨素-透明质酸支架上诱导的异位软骨形成,所述支架包含载有TGF-β1的微球。

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摘要

The study aimed to produce a novel porous gelatin-chondroitin-hyaluronate scaffold in combination with a controlled release of TGF- beta1 and to evaluate its potentials in ectopic cartilage formation. The gelatin-chondroitin-hyaluronate scaffold was developed to mimic the natural extra cellular matrix of cartilage. Gelatin microspheres loaded with TGF- beta1 (MS-TGF beta1) showed a fast cytokine release at initial phase (37.4%) and the ultimate accumulated release was 83.1% by day 18. Then MS-TGF beta1 were incorporated into scaffold. The MSCs seeded on scaffold with or without MS-TGF beta1 were incubated in vitro or implanted subcutaneously in nude mice. In vitro study showed that, compared to the scaffold, the scaffold/MS-TGF beta1 significantly augmented the proliferation of MSCs and GAG synthesis. Three weeks postoperatively histology observation showed that in MSCs/scaffold/MS-TGF beta1 implantation group, cells of newly formed ectopic cartilage were located within typical lacunae and demonstratedmorphological characteristics of chondrocytes. Six weeks later the ectopic cartilage grew more and islands of cartilage were observed. The matrix was extensively metachromatic by safranin-O/Fast green staining. Immunohistochemical staining also indicated ectopic cartilage was intensely stained for type II collagen. Instead, in the MSCs/scaffold implantation group, no cartilage-like tissue formed and matrix showed negative or weak positive staining. The percentage of positive staining area was significantly larger in MSCs/scaffold/MS-TGF beta1 group (p<0.05) at each time point. The results indicated that the novel gelatin-chondroitin-hyaluronate scaffold with MS-TGF beta1 could induce the chondral differentiation of MSCs to form cartilage and might serve as a new way to repair cartilage defects.
机译:该研究旨在生产新型多孔明胶-软骨素-透明质酸支架与TGF-β1的控制释放相结合,并评估其在异位软骨形成中的潜力。明胶软骨素透明质酸支架被开发来模仿天然的软骨细胞外基质。载有TGF-beta1(MS-TGF beta1)的明胶微球在初始阶段显示出快速的细胞因子释放(37.4%),到第18天最终累积释放为83.1%。然后将MS-TGF beta1掺入支架中。在有或没有MS-TGF beta1的情况下,将接种在支架上的MSC体外孵育或皮下植入裸鼠中。体外研究表明,与支架相比,支架/ MS-TGF beta1显着增强了MSC的增殖和GAG的合成。术后三周的组织学观察表明,在MSCs /支架/ MS-TGF beta1植入组中,新形成的异位软骨细胞位于典型的腔内,并表现出软骨细胞的形态学特征。六周后,异位软骨生长更多,并观察到了软骨岛。番红O /快速绿染色显示基质广泛变色。免疫组织化学染色也表明异位软骨被强烈染色为II型胶原。相反,在MSCs /支架植入组中,没有形成软骨样组织并且基质显示阴性或弱阳性染色。在每个时间点,MSCs /支架/ MS-TGF beta1组的阳性染色面积百分比显着更大(p <0.05)。结果表明,新型的MS-TGFβ1明胶软骨素透明质酸盐支架可诱导MSCs的软骨分化形成软骨,为修复软骨缺损提供了一种新途径。

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