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Reduced gravitational loading does not account for the skeletal effect of botulinum toxin-induced muscle inhibition suggesting a direct effect of muscle on bone

机译:减少的重力负载不考虑肉毒杆菌毒素诱导的肌肉抑制的骨骼效应表明肌肉在骨骼上的直接作用

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摘要

Intramuscular injection of botulinum toxin (botox) into rodent hindlimbs has developed as a useful model for exploring muscle–bone interactions. Botox-induced muscle inhibition rapidly induces muscle atrophy and subsequent bone loss, with the latter hypothesized to result from reduced muscular loading of the skeleton. However, botox-induced muscle inhibition also reduces gravitational loading (as evident by reduced ground reaction forces during gait) which may account for its negative skeletal effects. The aim of this study was to investigate the skeletal effect of botox-induced muscle inhibition in cage control and tail suspended mice, with tail suspension being used to control for the reduced gravitational loading associated with botox. Female C57BL/6J mice were injected unilaterally with botox and contralaterally with vehicle, and subsequently exposed to tail suspension or normal cage activities for 6 weeks. Botox-induced muscle inhibition combined with tail suspension had the largest detrimental effect on the skeleton, causing the least gains in midshaft tibial bone mass, cortical area and cortical thickness, greatest gains in midshaft tibial medullary area, and lowest proximal tibial trabecular bone volume fraction. These data indicate botox-induced muscle inhibition has skeletal effects over and above any effect it has in altering gravitational loading, suggesting that muscle has a direct effect on bone. This effect may be relevant in the development of strategies targeting musculoskeletal health.
机译:向啮齿动物后肢肌肉注射肉毒杆菌毒素(肉毒杆菌毒素)已成为探索肌肉与骨骼相互作用的有用模型。肉毒杆菌毒素引起的肌肉抑制作用迅速引起肌肉萎缩和随后的骨质流失,后者被认为是由于骨骼肌肉负荷减少所致。但是,肉毒杆菌毒素引起的肌肉抑制作用也会降低重力负荷(步态期间地面反作用力的降低很明显),这可能是其负骨骼作用的原因。这项研究的目的是研究肉毒杆菌引起的笼子控制和尾巴悬浮小鼠的肌肉抑制的骨骼作用,尾巴悬浮被用来控制与肉毒杆菌毒素相关的重力降低。雌性C57BL / 6J小鼠单侧注射肉毒杆菌毒素,对侧注射媒介物,随后暴露于尾巴悬吊或正常笼养活动6周。肉毒杆菌毒素引起的肌肉抑制与尾部悬吊相结合对骨骼的损害最大,造成胫中轴胫骨质量,皮质区域和皮质厚度的增加最少,胫中胫骨延髓区域的增加最大,胫骨近端小梁小骨体积分数最低。这些数据表明,肉毒杆菌毒素引起的肌肉抑制作用具有骨骼作用,其作用超过了改变重力负荷的任何作用,表明肌肉对骨骼具有直接作用。这种效果可能与针对肌肉骨骼健康的策略的制定有关。

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