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Age-related regulation of bone formation by the sympathetic cannabinoid CB1 receptor

机译:交感神经大麻素CB1受体的年龄相关调节骨形成

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Abstract The endocannabinoid (eCB) system, including its receptors, ligands, and their metabolizing enzymes, plays an important role in bone physiology. Skeletal cannabinoid type 1 (CB1) receptor signaling transmits retrograde signals that restrain norepinephrine (NE) release, thus transiently stimulating bone formation following an acute challenge, suggesting a feedback circuit between sympathetic nerve terminals and osteoblasts. To assess the effect of chronic in vivo occurrence of this circuit, we characterized the skeletal phenotype of mice with a conditional deletion of the CB1 receptor in adrenergic/noradrenergic cells, including sympathetic nerves. Whereas the deletion of the CB1 receptor did not affect bone mass accrual in the distal femoral metaphysis and in vertebral bodies of young, 12-week-old mice, it substantially increased bone mass in aged, 35-week-old mutant mice as compared to wild-type controls. Contrary to our expectations, specific deficiency of the CB1 receptor in sympathetic neurons led to a markedly increased bone mass phenotype, associated with an enhanced bone formation rate and reduced osteoclastogenesis. Mechanistically, the reduced skeletal eCB ‘tone’ in the null mice did not reflect in increased sympathetic tone and reduced bone formation, suggesting that constitutive genetic inactivation of sympathetic CB1 receptor disrupts the negative feedback loop between eCBs and NE signaling in bone. Highlights ? Sympathetic CB1 does not regulate bone mass accrual in young mice. ? Aged sympathetic CB1-deficient mice have increased bone mass. ? Sympathetic CB1-deficient mice show enhanced bone formation & reduced osteoclastogenesis during aging.
机译:摘要内胆蛋白(ECB)系统(包括其受体,配体和所述代谢酶)在骨生理学中起重要作用。骨骼大麻素类型1(CB1)受体信号传导透射抑制脑肾上腺素(NE)释放的逆行信号,从而瞬时刺激急性攻击后的骨形成,表明交感神经末端和成骨细胞之间的反馈电路。为了评估慢性体内体内发生该电路的影响,我们以肾上腺素能/去甲肾上腺素能细胞中的CB1受体的条件缺失表征小鼠的骨骼表型,包括交感神经。虽然CB1受体的缺失不影响远端股骨质的骨质应计,但在杨氏12周龄小鼠的椎体中,它基本上增加了骨骼肿块,与...相比野生型控制。与我们的期望相反,CB1受体在交感神经元中的特异性缺乏导致具有显着增加的骨质表型,与增强的骨形成速率和降低的骨质细胞发生相关。机械地,零小鼠中的减少的骨架ECB'TONE'没有反映较大的交感神经和降低的骨形成,表明同情CB1受体的组成型遗传失活扰乱eCBS和骨中的NE信号之间的负反馈环。强调 ?交感神经CB1不调节幼小小鼠中的骨量应计。还老化的同情CB1缺陷小鼠具有增加的骨质量。还交感神经CB1缺陷小鼠显示出在老化期间增强的骨形成和降低的骨质细胞发生。

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