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Regulation of mesenchymal stem cell differentiation on microstructured titanium surfaces by semaphorin 3A

机译:信号素3A对微观结构钛表面的间充质干细胞分化调节

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摘要

Peri-implant bone formation depends on the ability of mesenchymal stem cells (MSCs) to colonize implant surfaces and differentiate into osteoblasts, but the precise mechanisms controlling this process remain unclear. In vitro, MSCs undergo osteoblastic differentiation on microstructured titanium (Ti) surfaces in the absence of exogenous media supplements and produce factors that promote osteogenesis while regulating osteoclast activity, including semaphorins. The goal of this study was to evaluate the role of semaphorin 3A (Sema3A) on surface-mediated osteoblastic differentiation and determine the hierarchy of this signaling cascade. Human MSCs were cultured on 15 mm grade 2 smooth (pretreatment, PT), hydrophobic-microrough (sand blasted/acid etched, SLA), hydrophilic-microrough Ti (mSLA) (Institut Straumann AG, Basel, Switzerland), or tissue culture polystyrene (TCPS). Expression of SEMA3A family proteins increased after 7 days of culture, and the increased expression in response to microstructured Ti was dependent on recognition of the surface by integrin alpha 2131. Exogenous Sema3A increased differentiation whereas differentiation was decreased in cells treated with a Sema3A antibody. Furthermore, Sema3A influenced the production of osteoprotegerin and osteopontin suggesting it as an important local regulator of bone remodeling. Inhibition of Wnt3A and Wnt5A revealed that activation of Sema3A occurs downstream of Wnt5A and may facilitate the translocation of beta-catenin bypassing the canonical Wnt3A initiating signal associated with osteoblastic differentiation. Furthermore, chemical inhibition of calmodulin (CaM), Ca2+/calmodulin-dependent protein kinase (CaMKII), phospholipase A(2) (PLA2), protein kinase C (PKC), and BMP receptors suggest that Sema3A could serve as a feedback mechanism for both Wnt5A and BMP2. Here, we show novel roles for Sema3A family proteins in the surface-dependent modulation of MSCs as well as important interactions with pathways known to be associated with osteoblastic differentiation. Moreover, their effects on bone remodeling markers have significant implications for peri-implant bone remodeling and downstream modulation of osteoclastic activity. These results suggest that Sema3A aids in periimplant bone formation through regulation on multiple stages of osseointegration, making it a potential target to promote osseointegration in patients with compromised bone remodeling.
机译:Peri-植入物骨形成取决于间充质干细胞(MSCs)将植入物表面分化并分化为成骨细胞的能力,但控制该过程的精确机制仍然不清楚。体外,MSCs在没有外源介质补充剂的情况下对微结构化钛(Ti)表面进行骨细胞分化,并产生促进成骨的因素,同时调节骨质细胞活性,包括曲面素。本研究的目的是评估信号素3a(sema3a)对表面介导的骨细胞分化并确定该信号传导级联的等级的作用。人体MSCs在15毫米2级光滑(预处理,Pt),疏水性微黄(砂喷砂/酸蚀刻,SLA),亲水 - 微黄TI(MSLA)(Institut Straumann Ag,Basel,瑞士)或组织培养聚苯乙烯(TCPS)。 Sema3a家族蛋白在培养7天后增加的表达,并且响应于微结构Ti的增加的表达依赖于整合素α2131的表面识别。随着SEMA3A抗体处理的细胞中,外源Sema3a增加。此外,Sema3a影响了骨蛋白酶和骨桥蛋白的产生,表明它是骨重塑的重要局部调节因子。 Wnt3a和Wnt5a的抑制表明,Sema3a的激活发生在Wnt5a的下游,并且可以促进β-连环蛋白的易位绕过与骨细胞分化相关的规范Wnt3a引发信号。此外,钙调蛋白(CAM),CA2 + /钙调蛋白依赖性蛋白激酶(Camkipia),磷脂酶A(2)(PLA2),蛋白激酶C(PKC)和BMP受体的化学抑制表明SEMA3A可以作为反馈机制Wnt5a和bmp2都。在此,我们对MSC的表面依赖性调节中的SEMA3A系列蛋白显示了新颖的作用以及已知与骨细胞分化相关的途径的重要相互作用。此外,它们对骨重塑标志物的影响对骨细胞骨骼活性的Peri植入骨重塑和下游调节具有显着影响。这些结果表明,SEMA3A通过对骨整合的多个阶段的调节进行膜骨形成,使其成为促进骨质重塑患者患者骨整合的潜在目标。

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