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Human Embryonic Stem Cell-derived Mesenchymal Stem Cells and BMP7 Promote Cartilage Repair

机译:人胚胎干细胞衍生的间充质干细胞和BMP7促进软骨修复

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ESCs are pluripotential, but their application for cartilage regenration has not been explored. Our study was designed to explore a strategy of using human embryonic stem cell-derived mesenchymal stem cells(hESC-MSCs) with BMP7 in collagen scaffold to improve the therapeutic efficacy of cartilage defect repair. Full-thickness cartilage defects (diame-ter=2mm, thickness=2 mm) were made in the patellar grooves of male SD rat and randomly divided into four groups: No treatment group, collagen scaffold group, hESC-MSCs in collagen scaffold group or hESC-MSCs with BMP7 in collagen scaffold group, respectively (n=ll in each group). The rats were sacrificed at 4 and 8 weeks after operation. The repaired tissues were processed for histology and for mechanical test. The histological results showed that the group treated with hESC-MSCs had more amounts of hyaline cartilage, higher ICRS histological scores and Young's modulus of the repaired cartilage tissue. Moreover, hESC-MSCs with BMP7 group had the highest histological scores and Young's modulus of the repaired cartilage tissue. The amounts of hyaline cartilage were significantly higher than those in hESC-MSCs group. Our results demonstrated that hESC-MSCs can improve the regeneration of cartilage tissue. It acts synergistically with BMP7 in stimulating the formation of hyaline cartilage tissues. These findings suggested that the combination of hESC-MSCs with BMP7 in collagen matrix may be used to improve the quality of cartilage repair.
机译:ESC是多能的,但他们对软骨重新开始的应用尚未探讨。我们的研究旨在探讨使用人胚胎干细胞衍生的间充质干细胞(HESC-MSC)在胶原蛋白支架中使用BMP7的策略,以改善软骨缺陷修复的治疗效果。在雄性SD大鼠的髌骨凹槽中制造全厚的软骨缺陷(Diame-Ter = 2mm,厚度= 2mm),随机分为四组:胶原蛋白支架组的HESC-MSCs,胶原蛋白,胶原屑组或HESC-MSC分别具有BMP7的胶原蛋白支架组(每组N = LL)。在操作后4和8周处死大鼠。处理修复的组织以组织学和机械测试。组织学结果表明,用HESC-MSCs处理的组具有更多的透明软骨,更高的ICRS组织学评分和修复的软骨组织的杨氏模量。此外,具有BMP7组的HESC-MSCs具有最高的组织学评分和修复的软骨组织的杨氏模量。透明软骨量显着高于HESC-MSCS组的量。我们的结果表明,HESC-MSCs可以改善软骨组织的再生。它用BMP7协同作用于刺激透明软骨组织的形成。这些发现表明,HESC-MSCs在胶原基质中的HESC-MSCs的组合可用于改善软骨修复的质量。

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