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首页> 外文期刊>Biomedicine & pharmacotherapy =: Biomedecine & pharmacotherapie >Identification of the optimal dose and calpain system regulation of tetramethylpyrazine on the prevention of skeletal muscle atrophy in hindlimb unloading rats
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Identification of the optimal dose and calpain system regulation of tetramethylpyrazine on the prevention of skeletal muscle atrophy in hindlimb unloading rats

机译:鉴定四甲基吡嗪对后肢卸料大鼠骨骼肌萎缩预防的最佳剂量和钙粉骨系统调节

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Abstract Previous studies in our lab have shown that tetramethylpyrazine (TMP) could effectively attenuate disuse induced muscle atrophy. In order to screening out the optimal dose of tetramethylpyrazine (TMP) for protection against disuse induced muscle atrophy in hindlimb unloading (HLU) rats, in this study, we compared effects of 4 TMP doses on muscle wet weight (MWW), the ratios of muscle wet weight/body weight (MWW/BW) and muscle wet weight/dry weight (MWW/DW), fiber type composition, as well as cross-sectional area (CSA) in soleus (SOL) muscle. Consequently, we quantified optimal dose effects on both functional properties and protein expression (calpain-1, calpain-2, calpastatin and MuRF1) in SOL and extensor digitorum longus (EDL) muscles. Data indicated that the protective potential of TMP was dose-dependent: 60mg/kg TMP was most effective in terms of atrophy prevention. This dose reduced SOL MWW, MWW/BW and CSA muscle loss by 60, 60 and 54% ( P 0.001), respectively. HLU-induced slow-to-fast fiber transition was reduced by 17% ( P 0.01). 60mg/kg TMP also significantly lessened the decrease of contractile force, the increase of shorting velocity and fatigability induced by HLU. Besides, it also attenuated expressions of calpain-1 (SOL ?8.6%, P 0.05; EDL ?10.9%, P 0.05), calpain-2 (SOL ?60%, P 0.001; EDL ?32%, P 0.01) and MuRF1 expression (SOL ?21%, P 0.001; EDL ?10%, P 0.01), promoted the expression of calpastatin by 18% ( P 0.05) in SOL muscle. Taken together, present study demonstrated that 60mg/kg body weight was the optimal dose of TMP against disuse induced muscle atrophy which effectively protected muscle function by inhibiting calpain-1, calpain-2 and MuRF1 expression, promoted calpastatin expression, especially in slow-twitch muscle.
机译:摘要我们实验室的先前研究表明,四甲基吡嗪(TMP)可以有效地减弱废弃物诱导的肌肉萎缩。为了筛选出在后肢卸载(HLU)大鼠中的抗废弃物诱导肌肉萎缩的抗甲基吡嗪(TMP)的最佳剂量,在本研究中,我们比较了4 TMP剂量对肌肉湿重(MWW)的影响,比较肌肉湿重/体重(MWW / BW)和肌肉湿重/干重(MWW / DW),纤维型组合物,以及Soleus(溶胶)肌肉的横截面积(CSA)。因此,我们对溶胶和伸肌位数(EDL)肌肉中的功能性和蛋白质表达(Calpain-1,Calpain-2,Calpastatin和Murf1)量化了最佳剂量效应。数据表明,TMP的保护势依赖性:60mg / kg TMP在萎缩的预防方面最有效。该剂量减少了溶胶MWW,MWW / BW和CSA肌损,分别为60,60和54%(p 0.001)。 HLU诱导的慢速纤维过渡减少17%(P 0.01)。 60mg / kg TMP也显着减少了收缩力的降低,恒温诱导的短路速度和疲劳性的增加。此外,它还减弱了Calpain-1的表达(Sol?8.6%,P 0.05; EDL?10.9%,P 0.05),Calpain-2(Sol?60%,P 0.201; EDL?32%,P 0.01)和Murf1表达(溶胶?21%,p 0.001; EDL?10%,P 0.01),促进钙喇叭的表达18%(p 0.05)在溶胶肌肉中。在一起,目前的研究表明,60mg / kg体重是通过抑制Calpain-1,Calpain-2和Murf1表达,促进Calpastatin表达,促进Calpastatin表达的最佳剂量的TMP的最佳剂量的TMP,所述肌肉萎缩是有效保护的肌肉功能,促进Calpastatin表达,尤其是在慢速抽搐中肌肉。

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