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Integrin α2β1 plays a critical role in osteoblast response to micron-scale surface structure and surface energy of titanium substrates

机译:整合素α2β1在成骨细胞对微米级表面结构和钛基底表面能的响应中起关键作用

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摘要

Efforts to improve bone response to biomaterials have focused on ligands that bind α5β1 integrins. However, antibodies to α5β1 reduce osteoblast proliferation but do not affect differentiation when cells are grown on titanium (Ti). β1-silencing blocks the differentiation stimulus of Ti microtopography, suggesting that other β1 partners are important. Stably α2-silenced MG63 human osteoblast-like cells were used to test whether α2β1 specifically mediates osteoblast response to Ti surface micron-scale structure and energy. WT and α2-silenced MG63 cells were cultured on tissue culture polystyrene (TCPS) and Ti disks with different surface microtopographies: machined pretreatment (PT) surfaces [mean peak to valley roughness (Ra) < 0.02 μm], PT surfaces that were grit-blasted and acid-etched (SLA; Ra = 4 μm), and SLA with high surface energy (modSLA). Alkaline phosphatase (ALP), α2 and β1 mRNA, but not α5, αv, β3, type-I collagen, or osteocalcin, increased on SLA and modSLA at 6 days. α2 increased at 8 days on TCPS and PT, but remained unchanged on SLA and modSLA. α2-protein was reduced 70% in α2-siRNA cells, whereas α5-mRNA and protein were unaffected. α2-knockdown blocked surface-dependent increases in β1 and osteocalcin and decreases in cell number and increases in ALP and local factors typical of MG63 cells grown on SLA and modSLA [e.g., prostaglandin E2, osteoprotegerin, latent and active TGF-β1, and stimulatory effects of 1α,25(OH)2D3 on these parameters]. This finding indicates that α2β1 signaling is required for osteoblastic differentiation caused by Ti microstructure and surface energy, suggesting that conclusions based on cell behavior on TCPS are not predictive of behavior on other substrates or the mechanisms involved.
机译:改善骨骼对生物材料的反应的努力集中在结合α5β1整联蛋白的配体上。但是,当细胞在钛(Ti)上生长时,抗α5β1的抗体会减少成骨细胞的增殖,但不会影响分化。 β1沉默阻止了Ti微形貌的分化刺激,表明其他β1伴侣很重要。使用稳定的α2沉默的MG63人成骨细胞样细胞来测试α2β1是否特异性介导成骨细胞对Ti表面微米级结构和能量的反应。将WT和α2沉默的MG63细胞培养在具有不同表面微观形貌的组织培养聚苯乙烯(TCPS)和Ti盘上:机加工的预处理(PT)表面[平均峰谷粗糙度(Ra)<0.02μm],PT表面为粗砂-喷砂和酸蚀(SLA; Ra = 4μm),以及具有高表面能的SLA(modSLA)。碱性磷酸酶(ALP),α2和β1mRNA在6天时在SLA和modSLA上增加,但不增加α5,αv,β3,I型胶原或骨钙蛋白。在TCPS和PT上,α2在第8天增加,但在SLA和modSLA上保持不变。 α2-siRNA细胞中的α2-蛋白质减少了70%,而α5-mRNA和蛋白质未受影响。 α2-敲低阻止了S1和modSLA上生长的MG63细胞典型的表面依赖性增加的β1和骨钙蛋白的增加,细胞数目的减少以及ALP和局部因子的增加[例如,前列腺素E2,骨保护素,潜在和活性的TGF-β1,以及刺激性1α,25(OH)2D3对这些参数的影响]这一发现表明,α2β1信号是Ti微结构和表面能引起的成骨细胞分化所必需的,这表明基于TCPS上细胞行为的结论不能预测其他底物上的行为或所涉及的机制。

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