首页> 外文期刊>Journal of tissue engineering and regenerative medicine >Composition-function relations of cartilaginous tissues engineered from chondrocytes and mesenchymal stem cells isolated from bone marrow and infrapatellar fat pad.
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Composition-function relations of cartilaginous tissues engineered from chondrocytes and mesenchymal stem cells isolated from bone marrow and infrapatellar fat pad.

机译:从骨髓和腋磨型脂肪垫中分离的软骨细胞和间充质干细胞的组成功能关系。

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The objective of this study was to determine the functional properties of cartilaginous tissues generated by porcine MSCs isolated from different tissue sources, and to compare these properties to those derived from chondrocytes (CCs). MSCs were isolated from bone marrow (BM) and infrapatellar fat pad (FP), while CCs were harvested from the articular surface of the femoro-patellar joint. Culture-expanded CCs and MSCs were encapsulated in agarose hydrogels and cultured in the presence of TGFbeta3. Samples were analysed biomechanically, biochemically and histologically at days 0, 21 and 42. After 42 days in free swelling culture, mean GAG content was 1.50% w/w in CC-seeded constructs, compared to 0.95% w/w in FP- and 0.43% w/w in BM-seeded constructs. Total collagen accumulation was highest in FP constructs. DNA content increased with time for all the groups. The mechanical functionality of cartilaginous tissues engineered using CCs was superior to that generated from either source of MSCs. Differences were also observed in the spatial distribution of matrix components in tissues engineered using CCs and MSCs, which appears to have a strong influence on the apparent mechanical properties of the constructs. Therefore, while functional cartilaginous tissues can be engineered using MSCs isolated from different sources, the spatial composition of these tissues is unlike that generated using chondrocytes, suggesting that MSCs and chondrocytes respond differently to the regulatory factors present within developing cartilaginous constructs.
机译:本研究的目的是确定由不同组织源分离的猪MSCs产生的软骨组织的功能性质,并将这些性质与源自软骨细胞(CCS)的那些进行比较。从骨髓(BM)和Infrapatellar脂肪垫(FP)中分离MSC,而CCS从股髌骨关节的关节表面收获。培养基膨胀的CCS和MSCs在琼脂糖水凝胶中包封并在TGFBeta 3的存在下培养。在第0,21和42天生物化学和组织学分析样品。在游离溶胀培养中42天后,CC种子构建体中的平均GAG含量为1.50%w / w,而Fp-和w中的0.95%w / w。在BM播种构建体中0.43%w / w。 FP构建体中总胶原累积最高。 DNA含量随着时间的推移而增加。使用CCS工程化的软骨组织的机械功能优于从MSC的任一源产生的。在使用CCS和MSC的组织中基质组分的空间分布中也观察到差异,这似乎对构建体的表观力学性能产生了强烈影响。因此,虽然可以使用从不同来源分离的MSC来设计功能性软骨组织,但是这些组织的空间组合物与使用软骨细胞产生的空间组成,表明MSC和软骨细胞与在开发中存在的调节因素不同。

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