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Microscopic study on resorption of β-tricalcium phosphate materials by osteoclasts

机译:破骨细胞对β-磷酸三钙物质吸收的微观研究

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摘要

Sintered compounds prepared with β-tricalcium phosphate (β-TCP) are commonly used as biocompatible materials for bone regenerative medicine. Although implanted β-TCP is gradually replaced with new bone after resorption by osteoclasts, exactly how osteoclasts resorb β-TCP is not well understood. To elucidate this mechanism, we analyzed the structure of β-TCP discs on which mouse mature osteoclasts were cultured using scanning electron microscopy. We found that β-TCP was resorbed by mature osteoclasts on one side of each disc, as evidenced by the formation of multiple spine-like crystals at the exposed areas. Because osteoclasts secrete acid to resorb bone minerals, we mimicked this acidification by dipping β-TCP slices into HCl solution (pH 2.0). However, no spine-like crystals appeared even though the size of each β-TCP particle was reduced. On dentin slices, osteoclasts formed clear actin rings, which are cytoskeletal structures characteristic of bone-resorbing osteoclasts. No clear actin rings were observed in osteoclasts cultured on β-TCP slices, although small actin dots were observed. Analysis by transmission electron microscopy showed that osteoclasts attached to β-TCP particles. These results suggest that osteoclasts resorb β-TCP particles independently of clear actin ring formation.
机译:用β-磷酸三钙(β-TCP)制备的烧结化合物通常用作骨再生医学的生物相容性材料。尽管破骨细胞吸收后,植入的β-TCP逐渐被新骨取代,但对破骨细胞如何吸收β-TCP的确切了解仍不甚清楚。为了阐明这种机制,我们分析了使用扫描电子显微镜在其上培养小鼠成熟破骨细胞的β-TCP盘的结构。我们发现,β-TCP被每个椎间盘的一侧上成熟的破骨细胞吸收,如在暴露区域形成多个脊柱状晶体所证明。由于破骨细胞分泌酸来吸收骨矿物质,因此我们通过将β-TCP切片浸入HCl溶液(pH 2.0)中来模拟这种酸化作用。然而,即使每个β-TCP颗粒的尺寸减小,也没有出现脊柱状晶体。在牙本质切片上,破骨细胞形成了透明的肌动蛋白环,这是骨吸收性破骨细胞的细胞骨架结构。尽管观察到小的肌动蛋白点,但在β-TCP切片上培养的破骨细胞中未观察到清晰的肌动蛋白环。透射电子显微镜分析表明破骨细胞附着在β-TCP颗粒上。这些结果表明破骨细胞独立于透明肌动蛋白环形成而吸收β-TCP颗粒。

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