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Tension-loaded bone marrow stromal cells potentiate the paracrine osteogenic signaling of co-cultured vascular endothelial cells

机译:张力加载的骨髓基质细胞增强了共培养血管内皮细胞的旁分泌成骨信号

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Co-culture of bone marrow stromal cells (BMSCs) and vascular endothelial cells (VECs) is a promising strategy for better osteogenesis and pre-vascularization in bone tissue engineering. Recent reports have shown that mechanical stretching further promotes osteogenesis in BMSC/VEC co-culture systems, but the underlying mechanism of this process remains unclear. In this study, noncontact co-cultures of rat primary BMSCs and VECs were employed to interrogate paracrine cell-to-cell communications in response to tension. Exposure of VECs to 6% tension for 48?h elicited neither ALP activity nor mRNA expression of OCN and OPN in BMSCs incubated in a shared culture medium. Instead, BMSCs subjected to tension induced robust VEGF release, and its conditioned medium enhanced the proliferation and tubular formation of VECs with a concurrent increase in BMP-2 and IGF-1 production. Conditioned medium from activated VECs in turn promoted expression of osteogenic genes in BMSCs, followed by an increase in matrix mineralization. The addition of VEGF-R inhibitor Tivozanib to these systems abrogated the tension-induced paracrine effects on VECs and subsequently impaired BMSC osteogenesis. These results clearly demonstrate that the response of BMSCs to tension potentiates paracrine osteogenic signaling from VECs; this positive feedback loop is initiated by VEGF release.
机译:骨髓基质细胞(BMSC)和血管内皮细胞(VEC)的共培养是在骨组织工程中更好的成骨和预血管形成的一种有前途的策略。最近的报道表明,机械拉伸进一步促进了BMSC / VEC共培养系统中的成骨作用,但该过程的潜在机制仍不清楚。在这项研究中,大鼠原代BMSC和VEC的非接触式共培养被用于询问旁分泌细胞对细胞之间的通信以响应张力。将VEC暴露在6%的张力下48小时,既不会引起在共享培养基中孵育的BMSC中ALP活性也不会引起OCN和OPN的mRNA表达。取而代之的是,受到张力的BMSCs诱导强烈的VEGF释放,其条件培养基增强了VEC的增殖和肾小管形成,同时增加了BMP-2和IGF-1的产生。来自活化的VEC的条件培养基反过来促进了BMSC中成骨基因的表达,随后基质矿化增加。向这些系统中添加VEGF-R抑制剂Tivozanib消除了张力诱发的旁分泌对VEC的作用,并随后破坏了BMSC的成骨作用。这些结果清楚地表明,BMSC对张力的应答增强了来自VEC的旁分泌成骨信号。这种正反馈回路是由VEGF释放引发的。

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