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首页> 外文期刊>Biomaterials >Mechanisms by which the inhibition of specific intracellular signaling pathways increase osteoblast proliferation on apatite surfaces.
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Mechanisms by which the inhibition of specific intracellular signaling pathways increase osteoblast proliferation on apatite surfaces.

机译:抑制特定细胞内信号通路增加磷灰石表面成骨细胞增殖的机制。

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摘要

Osteoblasts proliferate slowly on the surface of calcium phosphate apatite which is widely used as a substrate biomaterial in bone regeneration. Owing to poor adhesion signaling in the cells grown on the calcium phosphate surface, inadequate growth factor signaling is generated to trigger cell cycle progression. The present study investigated an intracellular signal transduction pathway involved in the slow cell proliferation in osteoblasts grown on the calcium phosphate surface. Small GTPase RhoA and phosphatase and tensin homolog (PTEN) were more activated in cells grown on the surface of calcium phosphate apatite than on tissue culture plate. Specific inhibition of RhoA and PTEN induced the cells on calcium phosphate apatite surface to proliferate at a similar rate as cells on tissue culture plate surface. Specific inhibition of ROCK, which is a downstream effector of RhoA and an upstream activator of PTEN also increased proliferation of these osteoblasts. Present results indicate that physical property of calcium phosphate crystals that impede cell proliferation may be surmounted by the inhibition of the RhoA/ROCK/PTEN pathway to rescue delayed proliferation of osteoblasts on the calcium phosphate apatite surface. In addition, specific inhibition of ROCK promoted cell migration and osteoblast differentiation. Inhibition of the RhoA/ROCK/PTEN intracellular signaling pathway is expected to enhance cell activity to promote and accelerate bone regeneration on the calcium phosphate apatite surface.
机译:成骨细胞在磷酸钙磷灰石表面上缓慢增殖,磷酸钙磷灰石被广泛用作骨再生的基质生物材料。由于在磷酸钙表面上生长的细胞中的粘附信号差,因此生成的生长因子信号不足以触发细胞周期进程。本研究调查了在磷酸钙表面生长的成骨细胞中涉及缓慢细胞增殖的细胞内信号转导途径。与在组织培养板上相比,磷酸钙磷灰石表面生长的细胞中的小GTP酶RhoA和磷酸酶与张力蛋白同源物(PTEN)的活化程度更高。对RhoA和PTEN的特异性抑制诱导磷酸钙磷灰石表面上的细胞以与组织培养板表面上的细胞相似的速率增殖。 ROCK的特定抑制作用是RhoA的下游效应子,PTEN的上游激活剂也增加了这些成骨细胞的增殖。目前的结果表明,可以通过抑制RhoA / ROCK / PTEN途径来克服阻碍细胞增殖的磷酸钙晶体的物理特性,以挽救磷酸钙磷灰石表面成骨细胞的延迟增殖。另外,对ROCK的特异性抑制促进了细胞迁移和成骨细胞分化。预期抑制RhoA / ROCK / PTEN细胞内信号传导途径可增强细胞活性,从而促进和加速磷酸钙磷灰石表面上的骨再生。

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