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Wortmannin inhibits spreading and chemotaxis of rat osteoclasts in vitro.

机译:渥曼青霉素在体外抑制大鼠破骨细胞的扩散和趋化性。

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摘要

Wortmannin (WT) and 17beta-hydroxywortmannin (HWT), which are inhibitors of phosphatidylinositol-3(OH)-kinase (PI3K), have been shown previously to inhibit bone resorption in vitro and in vivo, possibly by interfering with formation of the osteoclast ruffled border. Since migration of osteoclasts also plays an important role in the process of bone resorption, we investigated the effects of these inhibitors on osteoclast morphology and motility. Both HWT and WT caused a sustained decrease in the planar area of osteoclasts in vitro (half maximal effect at 25 and 165 nM, respectively), with the effect of HWT on cell area more readily reversible than WT. These agents also caused accumulation of intracellular vesicles. Time-lapse video microscopy was used to record the migration of osteoclasts in response to macrophage colony-stimulating factor (M-CSF) or vehicle, flowing passively from a micropipette positioned 200-400 microm from the cell. M-CSF caused directed migration of osteoclasts, indicating chemotaxis (over 3 h osteoclasts migrated 96 +/- 14 microm in response to M-CSF vs. 11 +/- 2 microm in control experiments). Both WT (100 or 500 nM) and LY294002 (100 microM), a specific PI3K inhibitor structurally unrelated to WT, significantly inhibited osteoclast chemotaxis in response to M-CSF. Taken together, these effects of WT, HWT, and LY294002 are consistent with an important role for PI3K in regulating cytoskeletal function in osteoclasts. The inhibitory effects of WT and HWT on bone resorption may be due, in part, to impairment of osteoclast motility.
机译:Wortmannin(WT)和17β-hydroxywortmannin(HWT)是磷脂酰肌醇3(OH)激酶(PI3K)的抑制剂,先前已显示在体​​内外抑制骨吸收,可能是通过干扰破骨细胞的形成皱边。由于破骨细胞的迁移在骨吸收过程中也起着重要作用,因此我们研究了这些抑制剂对破骨细胞形态和运动的影响。 HWT和WT都会导致破骨细胞的平面面积持续减少(分别在25和165 nM时有最大的一半效应),HWT对细胞面积的影响比WT更容易逆转。这些药剂还引起细胞内囊泡的积累。延时视频显微镜用于记录破骨细胞对巨噬细胞集落刺激因子(M-CSF)或媒介物的迁移,这些破骨细胞是从距离细胞200-400微米的微量移液器被动流出的。 M-CSF导致破骨细胞定向迁移,表明趋化性(响应M-CSF,超过3小时破骨细胞迁移96 +/- 14微米,而对照实验中为11 +/- 2微米)。 WT(100或500 nM)和LY294002(100 microM)(一种结构上与WT不相关的特异性PI3K抑制剂)均显着抑制响应M-CSF的破骨细胞趋化性。综上,WT,HWT和LY294002的这些作用与PI3K在调节破骨细胞中细胞骨架功能中的重要作用相一致。 WT和HWT对骨吸收的抑制作用可能部分是由于破骨细胞运动性受损。

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