C14-Cblin和celastrol同时治疗对倾斜诱导的大鼠L6肌管萎缩的影响。

Kanako Kitahata, Takayuki Uchida, Runa Taniguchi, A. Kato, Kosuke Sugiura, Iori Sakakibara, M. Oarada, T. Fukawa, Park Junsoo, Cho Inho, T. Nikawa
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引用次数: 1

摘要

两种新试剂,n -肉豆汁酰基化ccl -b抑制肽(C14-Cblin)和雷公酚(一种醌类三萜)被报道能有效预防肌管萎缩。本实验研究C14-Cblin和雷公藤红素联合对模拟微重力3d旋转大鼠L6肌管萎缩的影响。我们首先研究了它们对atrogenes表达的影响。C14-Cblin或celastrol治疗可显著抑制3d旋转引起的MAFbx1/atrogin-1和MuRF-1的升高,但同时治疗无叠加效应。然而,通过3d -变色,celastrol显著抑制了ccl -b和HSP70的上调。3d变色降低了L6肌管中IRS-1的蛋白水平,而C14-Cblin和celastrol抑制了IRS-1的降解。即使在微重力条件下,C14-Cblin和celastrol也能促进FOXO3a的磷酸化。同时给药C14-Cblin和celastrol在逆转3d旋转引起的IGF-1信号损伤方面显示出很少的叠加效应。3d倾转诱导的L6肌管明显氧化应激,而雷公藤红素抑制3d倾转诱导的ROS生成。最后,C14-Cblin和celastrol处理组均能抑制3d变色培养的慢抽搐MyHC的L6肌管直径下降和蛋白质含量增加。C14-Cblin和celastrol同时治疗比单独治疗更能预防3d倾斜诱导的肌管萎缩。中国医学杂志,2009,31(2):357 - 357。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Additional effects of simultaneous treatment with C14-Cblin and celastrol on the clinorotation-induced rat L6 myotube atrophy.
Two novel reagents, N-myristoylated Cbl-b inhibitory peptide (C14-Cblin) and celastrol, a quinone methide triterpene, are reported to be effective in preventing myotube atrophy. The combined effects of C14-Cblin and celastrol on rat L6 myotubes atrophy induced by 3D-clinorotation, a simulated microgravity model, was investigated in the present study. We first examined their effects on expression in atrogenes. Increase in MAFbx1/atrogin-1 and MuRF-1 by 3D-clinorotation was significantly suppressed by treatment with C14-Cblin or celastrol, but there was no additive effect of simultaneous treatment. However, celastrol significantly suppressed the upregulation of Cbl-b and HSP70 by 3D-clinorotation. Whereas 3D-clinorotation decreased the protein level of IRS-1 in L6 myotubes, C14-Cblin and celastrol inhibited the degradation of IRS-1. C14-Cblin and celastrol promoted the phosphorylation of FOXO3a even in microgravity condition. Simultaneous administration of C14-Cblin and celastrol had shown little additive effect in reversing the impairment of IGF-1 signaling by 3D-clinorotation. While 3D-clinorotation-induced marked oxidative stress in L6 myotubes, celastrol suppressed 3D-clinorotation-induced ROS production. Finally, the C14-Cblin and celastrol-treated groups were inhibited decrease in L6 myotube diameter and increased the protein content of slow-twitch MyHC cultured under 3D-clinorotation. The simultaneous treatment of C14-Cblin and celastrol additively prevented 3D-clinorotation-induced myotube atrophy than single treatment. J. Med. Invest. 69 : 127-134, February, 2022.
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