...
首页> 外文期刊>American Journal of Physiology >beta-Hydroxy-beta-methylbutyrate reduces myonuclear apoptosis during recovery from hind limb suspension-induced muscle fiber atrophy in aged rats.
【24h】

beta-Hydroxy-beta-methylbutyrate reduces myonuclear apoptosis during recovery from hind limb suspension-induced muscle fiber atrophy in aged rats.

机译:β-羟基 - β-甲基丁酯在从后肢悬浮诱导的肌纤维萎缩中减少神经核细胞凋亡在老年大鼠中的肌纤维萎缩。

获取原文
获取原文并翻译 | 示例
           

摘要

beta-Hydroxy-beta-methylbutyrate (HMB) is a leucine metabolite shown to reduce protein catabolism in disease states and promote skeletal muscle hypertrophy in response to loading exercise. In this study, we evaluated the efficacy of HMB to reduce muscle wasting and promote muscle recovery following disuse in aged animals. Fisher 344xBrown Norway rats, 34 mo of age, were randomly assigned to receive either Ca-HMB (340 mg/kg body wt) or the water vehicle by gavage (n = 32/group). The animals received either 14 days of hindlimb suspension (HS, n = 8/diet group) or 14 days of unloading followed by 14 days of reloading (R; n = 8/diet group). Nonsuspended control animals were compared with suspended animals after 14 days of HS (n = 8) or after R (n = 8). HMB treatment prevented the decline in maximal in vivo isometric force output after 2 wk of recovery from hindlimb unloading. The HMB-treated animals had significantly greater plantaris and soleus fiber cross-sectional area compared with the vehicle-treated animals. HMB decreased the amount of TUNEL-positive nuclei in reloaded plantaris muscles (5.1% vs. 1.6%, P < 0.05) and soleus muscles (3.9% vs. 1.8%, P < 0.05). Although HMB did not significantly alter Bcl-2 protein abundance compared with vehicle treatment, HMB decreased Bax protein abundance following R, by 40% and 14% (P < 0.05) in plantaris and soleus muscles, respectively. Cleaved caspase-3 was reduced by 12% and 9% (P < 0.05) in HMB-treated reloaded plantaris and soleus muscles, compared with vehicle-treated animals. HMB reduced cleaved caspase-9 by 14% and 30% (P < 0.05) in reloaded plantaris and soleus muscles, respectively, compared with vehicle-treated animals. Although, HMB was unable to prevent unloading-induced atrophy, it attenuated the decrease in fiber area in fast and slow muscles after HS and R. HMB's ability to protect against muscle loss may be due in part to putative inhibition of myonuclear apoptosis via regulation of mitochondrial-associated caspase signaling.
机译:β-羟基 - β-甲基丁酸酯(HMB)是亮氨酸代谢物,证明可降低疾病状态的蛋白质分解代谢,并促进骨骼肌肥大以应对装载运动。在这项研究中,我们评估了HMB减少肌肉浪费的功效,并促进肌肉恢复在老年动物中。 Fisher 344xbrown Norway大鼠34毫安被随机分配给接收Ca-HMB(340mg / kg体WT)或水载体(n = 32 /组)。这些动物接受了14天的后肢悬浮液(HS,N = 8 /饮食组)或14天的卸载,然后重新加载14天(R; n = 8 /饮食组)。在HS(n = 8)或在R(n = 8)之后,将非悬浮的对照动物与悬浮动物进行比较。 HMB治疗可防止在Hindlimb卸载2周后的体内等轴力输出中的最大值下降。与载体处理的动物相比,HMB处理的动物具有明显更大的植物和单叶纤维横截面积。 HMB减少了重新加载的植物肌肉(5.1%vs.1.6%,P <0.05)和肌肉(3.9%vs.1.8%,P <0.05)中的动脉阳性核的量。虽然HMB与载体处理相比没有显着改变BCl-2蛋白质丰度,但分别在植物和肌肉肌肉中,HMB减少了r,40%和14%(p <0.05)。与载体处理的动物相比,切割的Caspase-3在HMB处理的重载的Plantaris和Soleus肌肉中减少了12%和9%(P <0.05)。与载体处理的动物相比,HMB分别在重载的Plantaris和Soleus肌肉中减少14%和30%(P <0.05)。虽然HMB无法防止卸载萎缩,但在HS和R.HMB防止肌损的能力之后,它在快速和缓慢的肌肉中减少了快速和缓慢的肌肉的降低可能是由于通过调节而抑制神经核细胞凋亡的抑制线粒体相关的Caspase信号。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号