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首页> 外文期刊>Journal of orthopaedic research >Effects of Blockade of Endogenous G(i) Signaling in Tie2-Expressing Cells on Bone Formation in a Mouse Model of Heterotopic Ossification
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Effects of Blockade of Endogenous G(i) Signaling in Tie2-Expressing Cells on Bone Formation in a Mouse Model of Heterotopic Ossification

机译:Tie2表达细胞中内源性G(i)信号的阻断对异位骨化小鼠模型中骨形成的影响

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Available evidence indicates that some Tie2-expressing (Tie2(+)) cells serve as multipotent progenitors that have robust BMP-dependent osteogenic activity and mediate heterotopic ossification (HO). Since signaling through the G protein G(i) is required for cell motility, we hypothesized that blockade of endogenous G(i) signaling in Tie2(+) cell populations would prevent HO formation. Blockade of G(i) signaling in Tie2(+) cells was accomplished in transgenic mice with expression of pertussis toxin (PTX) under the control of the Tie2 promoter (Tie2(+)/PTX+). Bone formation within HOs was evaluated 2 weeks after BMP injection. Expression of PTX in Tie2(+) cells significantly reduced the bone volume (BV) of HOs in male and female mice. Orthotopic bones were assessed at the distal femur and expression of PTX significantly increased trabecular bone fractional volume and bone formation rate in females only. In adult Tie2(+)/GFP(+) mice, GFP(+) cells appeared both inside and at the surfaces of bone tissue within HOs and in orthotopic bones. In summary, blockade of G(i) signaling in Tie2(+) cells reduced the accrual of HOs and stimulated osteogenesis in orthotopic bones. Targeting of G(i) protein coupled receptors in Tie2(+) cells may be a novel therapeutic strategy in states of abnormal bone formation such as osteoporosis and HO. (C) 2015 Orthopaedic Research Society. Published by Wiley Periodicals, Inc.
机译:现有证据表明,某些表达Tie2的(Tie2(+))细胞可作为多能祖细胞,具有强大的BMP依赖性成骨活性并介导异位骨化(HO)。由于通过G蛋白G(i)进行信号传递对于细胞运动是必需的,因此我们假设在Tie2(+)细胞群体中内源性G(i)信号传递的阻断将阻止HO的形成。在Tie2启动子(Tie2(+)/ PTX +)的控制下,表达百日咳毒素(PTX)的转基因小鼠完成了对Tie2(+)细胞中G(i)信号的阻断。 BMP注射后2周评估HO内的骨形成。 Tie2(+)细胞中PTX的表达显着降低了雄性和雌性小鼠HO的骨体积(BV)。仅在女性中评估了股骨远端的原位骨,PTX的表达显着增加了小梁的骨体积和骨形成率。在成年Tie2(+)/ GFP(+)小鼠中,GFP(+)细胞同时出现在HO内和原位骨的骨组织内部和表面。总之,在Tie2(+)细胞中G(i)信号传导的阻断减少了HOs的积累并刺激了原位骨中的成骨作用。在Tie2(+)细胞中靶向G(i)蛋白偶联受体可能是异常骨形成状态(如骨质疏松症和HO)中的一种新型治疗策略。 (C)2015骨科研究学会。由Wiley Periodicals,Inc.发布

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