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Enhanced bone regeneration by electrical polarization of hydroxyapatite.

机译:通过羟基磷灰石的电极化增强骨骼再生。

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摘要

We examined osteogenic cell responses and new bone formation on electrically polarized hydroxyapatite (HAp) plates implanted into calvarial bone defects in rats. In the first group of rats, test pieces were placed with their positively charged surfaces face down on the dura mater. In a second group, test pieces were placed with their negatively charged surfaces facedown on the dura mater. A third group received noncharged test pieces. Histological examination was carried out to characterize the newly formed bone as well as quantification. Enzyme histochemistry involving the detection of alkaline phosphatase and tartrate-resistant acid phosphatase was performed to quantify osteogenic cell activity. Bone growth was enhanced in the groups that received polarized HAp plates, both at the negatively and positively charged surfaces. In addition to the electrostatic force that attracts Ca(2+) to the negatively charged surfaces, the suppressive effects on osteoclasts proliferation on the positively charged surfaces may enhance bone formation.
机译:我们在植入大鼠颅骨缺损的电极化羟基磷灰石(HAp)板上检查了成骨细胞反应和新骨形成。在第一组大鼠中,将试件的带正电的表面朝下放在硬脑膜上。在第二组中,将测试片的带负电的表面朝下放置在硬脑膜上。第三组接受不带电的测试件。进行组织学检查以表征新形成的骨以及定量。进行了涉及检测碱性磷酸酶和抗酒石酸酸性磷酸酶的酶组织化学实验,以量化成骨细胞的活性。接受极化HAp板的组的骨生长都得到了增强,无论是在带负电的表面还是带正电的表面。除了将Ca(2+)吸引到带负电的表面上的静电力之外,对带正电的表面上破骨细胞增殖的抑制作用可能会增强骨骼的形成。

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