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Primary Cilia as a Biomarker in Mesenchymal Stem Cells Senescence: Influencing Osteoblastic Differentiation Potency Associated with Hedgehog Signaling Regulation

机译:原发性纤毛作为间充质干细胞的生物标志物衰老:影响与刺猬信号传导调节相关的骨细胞分化效力

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Bone tissue engineering-based therapy for bone lesions requires the expansion of seeding cells, such as autologous mesenchymal stem cells (MSCs). A major obstacle to this process is the loss of the phenotype and differentiation capacity of MSCs subjected to passage. Recent studies have suggested that primary cilia, primordial organelles that transduce multiple signals, particularly hedgehog signals, play a role in senescence. Therefore, we explored the relationships among senescence, primary cilia, and hedgehog signaling in MSCs. Ageing of MSCs by expansion in vitro was accompanied by increased cell doubling time. The osteogenic capacity of aged MSCs at passage 4 was compromised compared to that of primary cells. P4 MSCs exhibited reductions in the frequency and length of primary cilia associated with decreased intensity of Arl13b staining on cilia. Senescence also resulted in downregulation of the expression of hedgehog components and CDKN2A. Suppression of ciliogenesis reduced the gene expression of both Gli1, a key molecule in the hedgehog signaling pathway and ALP, a marker of osteoblastic differentiation. This study demonstrated that the senescence of MSCs induced the loss of osteoblastic differentiation potency and inactivated hedgehog signaling associated with attenuated ciliogenesis, indicating that primary cilia play a mediating role in and are biomarkers of MSC senescence; thus, future antisenescence strategies involving manipulation of primary cilia could be developed.
机译:骨组织工程的骨病变治疗需要膨胀播种细胞,例如自体间充质干细胞(MSCs)。该过程的主要障碍是丧失经过通过的MSC的表型和分化能力。最近的研究表明,纤毛,转导多种信号,特别是刺猬信号的原始细胞器,在衰老中发挥作用。因此,我们探讨了MSCS中衰老,原代纤毛和刺猬信令之间的关系。通过体外膨胀的MSCs老化伴随着增加的细胞倍增时间。与原代细胞相比,通过4的老化MSCs的骨质发生能力损害。 P4 MSCs表现出与纤毛染色的ARL13B染色强度降低相关的原发性纤毛的频率和长度。衰老还导致刺猬组件和CDKN2A的表达的下调。抑制纤氯化,降低了GLI1,刺猬信号通路中的关键分子的基因表达,骨质细胞分化的标志物。该研究表明,MSCs的衰老诱导与减毒纤西发生相关的骨细胞分化效力和灭活刺猬的丧失,表明原发性纤毛在MSC衰老中发挥着介质作用,并且是MSC衰老的生物标志物;因此,可以开发涉及操纵原发性纤毛的未来的抗动策略。

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