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Mode of Action of Interleukin-6 on Mature Osteoclasts. Novel Interactions with Extracellular Ca2+ Sensing in the Regulation of Osteoclastic Bone Resorption

机译:白介素6对成熟破骨细胞的作用方式。新型的相互作用与细胞外Ca 2+感应调节破骨细胞的骨吸收

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摘要

We describe a physiologically significant mechanism through which interleukin-6 (IL-6) and a rising ambient Ca2+ interact to regulate osteoclastic bone resorption. VOXEL-based confocal microscopy of nonpermeabilized osteoclasts incubated with anti– IL-6 receptor antibodies revealed intense, strictly peripheral plasma membrane fluorescence. IL-6 receptor expression in single osteoclasts was confirmed by in situ reverse transcriptase PCR histochemistry. IL-6 (5 ng/l to 10 μg/l), but not IL-11 (10 and 100 μg/l), reversed the inhibition of osteoclastic bone resorption induced by high extracellular Ca2+ (15 mM). The IL-6 effect was abrogated by excess soluble IL-6 receptor (500 μg/l). Additionally, IL-6 (5 pg/l to 10 μg/l) inhibited cytosolic Ca2+ signals triggered by high Ca2+ or Ni2+. In separate experiments, osteoclasts incubated in 10 mM Ca2+ or on bone released more IL-6 than those in 1.25 mM Ca2+. Furthermore, IL-6 mRNA histostaining was more intense in osteoclasts in 10 or 20 mM Ca2+ than cells in 1.25 mM Ca2+. Similarly, IL-6 receptor mRNA histostaining was increased in osteoclasts incubated in 5 or 10 mM Ca2+. Thus, while high Ca2+ enhances IL-6 secretion, the released IL-6 attenuates Ca2+ sensing and reverses inhibition of resorption by Ca2+. Such an autocrine–paracrine loop may sustain osteoclastic activity in the face of an inhibitory Ca2+ level generated locally during resorption.
机译:我们描述了一种重要的生理机制,白介素6(IL-6)和周围的Ca2 +上升相互作用来调节破骨细胞的骨吸收。基于VOXEL的未透化破骨细胞与抗IL-6受体抗体共聚焦显微镜检查显示强烈,严格的外周质膜荧光。通过原位逆转录酶PCR组织化学证实了单个破骨细胞中IL-6受体的表达。 IL-6(5 ng / l至10μg/ l),而不是IL-11(10和100μg/ l)逆转了高细胞外Ca2 +(15 mM)诱导的破骨细胞骨吸收的抑制作用。过量的可溶性IL-6受体(500μg/ l)消除了IL-6的作用。此外,IL-6(5 pg / l至10μg/ l)抑制了高Ca2 +或Ni2 +触发的胞质Ca2 +信号。在单独的实验中,与在1.25 mM Ca2 +中孵育的破骨细胞相比,在10 mM Ca2 +中或骨骼上孵育的破骨细胞释放更多的IL-6。此外,在10或20 mM Ca2 +中的破骨细胞中,IL-6 mRNA的组织染色比在1.25 mM Ca2 +中的细胞更强。同样,在5或10 mM Ca2 +中孵育的破骨细胞中,IL-6受体mRNA的组织染色增加。因此,尽管高的Ca2 +增强了IL-6的分泌,但释放的IL-6减弱了Ca2 +的感应并逆转了Ca2 +对吸收的抑制作用。面对在吸收过程中局部产生的抑制性Ca2 +水平,这种自分泌-旁分泌循环可能维持破骨细胞的活性。

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