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β 激动剂福莫特罗对癌症恶病质大鼠呼吸肌和肢体肌萎缩信号、自噬和肌肉表型的影响。

Effects of the beta agonist formoterol on atrophy signaling, autophagy, and muscle phenotype in respiratory and limb muscles of rats with cancer-induced cachexia.

机构信息

Pulmonology Department-Muscle Wasting and Cachexia in Chronic Respiratory Diseases and Lung Cancer Research Group, IMIM-Hospital del Mar, Parc de Salut Mar, Health and Experimental Sciences Department (CEXS), Universitat Pompeu Fabra (UPF), Barcelona Biomedical Research Park (PRBB), Barcelona, Spain.

Cancer Research Group, Departament de Bioquímica i Biomedicina Molecular, Facultat de Biologia, Universitat de Barcelona, Barcelona, Spain; Institut de Biomedicina de la Universitat de Barcelona (IBUB), Barcelona, Spain.

出版信息

Biochimie. 2018 Jun;149:79-91. doi: 10.1016/j.biochi.2018.04.009. Epub 2018 Apr 12.

Abstract

Muscle mass loss and wasting are characteristic features of patients with chronic conditions including cancer. Beta-adrenoceptors attenuate muscle wasting. We hypothesized that specific muscle atrophy signaling pathways and altered metabolism may be attenuated in cancer cachectic animals receiving treatment with the beta agonist formoterol. In diaphragm and gastrocnemius of tumor-bearing rats (intraperitoneal inoculum, 10 AH-130 Yoshida ascites hepatoma cells, 7-day study period) with and without treatment with formoterol (0.3 mg/kg body weight/day/7days, subcutaneous), atrophy signaling pathways (NF-κB, MAPK, FoxO), proteolytic markers (ligases, proteasome, ubiquitination), autophagy markers (p62, beclin-1, LC3), myostatin, apoptosis, muscle metabolism markers, and muscle structure features were analyzed (immunoblotting, immunohistochemistry). In diaphragm and gastrocnemius of cancer cachectic rats, fiber sizes were reduced, levels of structural alterations, atrophy signaling pathways, proteasome content, protein ubiquitination, autophagy, and myostatin were increased, while those of regenerative and metabolic markers (myoD, mTOR, AKT, and PGC-1alpha) were decreased. Formoterol treatment attenuated such alterations in both muscles. Muscle wasting in this rat model of cancer-induced cachexia was characterized by induction of significant structural alterations, atrophy signaling pathways, proteasome activity, apoptotic and autophagy markers, and myostatin, along with a significant decline in the expression of muscle regenerative and metabolic markers. Treatment of the cachectic rats with formoterol partly attenuated the structural alterations and atrophy signaling, while improving other molecular perturbations similarly in both respiratory and limb muscles. The results reported in this study have relevant therapeutic implications as they showed beneficial effects of the beta agonist formoterol in the cachectic muscles through several key biological pathways.

摘要

肌肉质量损失和消耗是患有慢性疾病(包括癌症)的患者的特征。β-肾上腺素受体可减轻肌肉消耗。我们假设,在接受β激动剂福莫特罗治疗的癌症恶病质动物中,特定的肌肉萎缩信号通路和代谢改变可能会减弱。在荷瘤大鼠(腹腔接种 10 个 AH-130 吉田腹水肝癌细胞,为期 7 天的研究期)的膈肌和腓肠肌中,分析了萎缩信号通路(NF-κB、MAPK、FoxO)、蛋白水解标志物(连接酶、蛋白酶体、泛素化)、自噬标志物(p62、beclin-1、LC3)、肌肉生长抑制素、凋亡、肌肉代谢标志物和肌肉结构特征,同时还观察了接受和未接受福莫特罗(0.3mg/kg 体重/天/7 天,皮下)治疗的大鼠。在荷瘤恶病质大鼠的膈肌和腓肠肌中,纤维尺寸减小,结构改变、萎缩信号通路、蛋白酶体含量、蛋白质泛素化、自噬和肌肉生长抑制素的水平增加,而再生和代谢标志物(myoD、mTOR、AKT 和 PGC-1alpha)的水平降低。福莫特罗治疗可减轻这两种肌肉的这种变化。这种癌症诱导的恶病质大鼠模型中的肌肉消耗特征是诱导显著的结构改变、萎缩信号通路、蛋白酶体活性、凋亡和自噬标志物以及肌肉生长抑制素,同时肌肉再生和代谢标志物的表达显著下降。福莫特罗治疗恶病质大鼠部分减轻了结构改变和萎缩信号,同时改善了呼吸肌和肢体肌中其他分子扰动。本研究报告的结果具有相关的治疗意义,因为它们显示了β激动剂福莫特罗通过几种关键的生物学途径对恶病质肌肉的有益作用。

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