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首页> 外文期刊>Stem cell reviews and Reports >Comparison of the Chondrogenic Potential of Mesenchymal Stem Cells Derived from Bone Marrow and Umbilical Cord Blood Intended for Cartilage Tissue Engineering
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Comparison of the Chondrogenic Potential of Mesenchymal Stem Cells Derived from Bone Marrow and Umbilical Cord Blood Intended for Cartilage Tissue Engineering

机译:用于软骨组织工程的骨髓和脐脐血中间充质干细胞软骨菌潜力的比较

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摘要

Osteoarthritis (OA) remains incurable in humans or horses and mesenchymal stromal/stem cells (MSCs) represent an attractive solution for producing a neocartilage substitute. However, the best MSC source still needs to be identified. This study compared the chondrogenic potential of equine MSCs derived from bone marrow (BM) and umbilical cord blood (UCB), at their undif-ferentiated status to check if one cell source is better proned, and after chondrogenic-induced differentiation. Chondrogenesis was induced by culture in collagen scaffold with BMP-2 + TGF-?1 in hypoxia or normoxia. MSCs chondrogenic potential was evaluated using the mRNA and corresponding protein levels for osteogenic, hypertrophic and chondrogenic markers. MSCs characterization demonstrated that BM- and UCB-MSCs differ in proliferation and tripotencies. At undifferentiated status, they also showed differences in their expression of osteogenic, chondrogenic and hypertrophic markers. Upon chondrogenesis induction, both MSCs sources exhibited increased chondrogenic expression and produce an extracellular matrix (ECM) of better quality in hypoxia, although collagen I remained expressed. UCB-MSCs produced higher amounts of collagen II, particularly its IIB isoform, than BM-MSCs, but also collagen I and Htra1, regardless of the oxygen condition. Finally, immunohistochemistry revealed that the BM-MSCs synthesized an ECM of higher quality, regarding the more homogenous distribution of type IIB collagen, compared to UCB-MSCs. Considering collagen I as the major undesirable component in the neo-synthesis of in vitro cartilage, we recommend using BM-MSCs for horse cartilage engineering.
机译:骨关节炎(OA)仍然存在于人体或马匹和间充质基质/干细胞(MSCs)中代表一种产生新桥线替代品的有吸引力的溶液。但是,仍然需要识别最佳的MSC源。该研究将源自骨髓(BM)和脐带血(UCB)衍生的马MSCs的软骨形成潜力与其杂交状态相比,以检查一个细胞源是否更好地效果,并且在软骨诱导的分化后。缺氧或常氧中的BMP-2 + TGF-β1,胶原蛋白支架中的培养物诱导有软骨菌。使用mRNA和相应的蛋白质水平评估MSC软骨潜力,用于骨质发生,肥大和软骨菌标记物。 MSCS表征展示了BM-和UCB-MSC的增殖和超越。在未分化的状态下,他们还显示出骨质酸,软骨和肥厚标记表达的差异。在软骨发生诱导后,MSCS源的含量增加,缺氧在缺氧中的细胞内表达增加,并且在缺氧中产生更好的质量,尽管我保持表达胶原蛋白。 UCB-MSCs生产较高量的胶原II,特别是其IIB同种型,而不是BM-MSCs,而是胶原蛋白I和HTRA1,无论氧气状况如何。最后,免疫组织化学发现,与UCB-MSC相比,BM-MSCs在IIB型胶原蛋白的更均匀分布中合成了高质量的ECM。考虑到胶原蛋白I作为体外软骨中的新合成中的主要不良组分,我们建议使用BM-MSC进行马软骨工程。

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