Martin D, Merkel E, Tucker K K, McManaman J L, Albert D, Relton J, Russell D A
Department of Pharmacology, Synergen, Boulder 80301, USA.
Am J Physiol. 1996 Nov;271(5 Pt 2):R1422-8. doi: 10.1152/ajpregu.1996.271.5.R1422.
Recombinant human ciliary neurotrophic factor (rh-CNTF) was reported to attenuate skeletal muscle wasting in rats after unilateral transection of the sciatic nerve (M. E. Helgren, S. P. Squinto, H. L. Davis, D. J. Parry, T. G. Bolton, C. S. Heck, Y. Zhu, G. D. Yancopoulos, R. M. Lindsay, and P. S. DiStefano. Cell 76: 493-504, 1994). Under the experimental conditions reported herein, the absolute masses of the denervated gastrocnemius and soleus muscles were not increased in mature or immature rats of either sex by treatment with rhCNTF. At the highest doses of rhCNTF (1 and 0.1 mg/kg), increases in the ratio of the masses of the denervated to the contralateral innervated gastrocnemius and soleus muscles could be attributed entirely to a muscle-wasting effect on the contralateral innervated muscle rather than any muscle-sparing effect on the denervated muscle. The muscle-wasting effects of rhCNTF were associated with reductions in body weight gain and reduced food intake. Pair-fed rats lost less body weight and skeletal muscle mass than rhCNTF-injected freely fed rats but experienced significantly greater loss of visceral mass. Male rats displayed greater loss of body weight and skeletal muscle mass than female rats. Recombinant inhibitors of the cachectic cytokines, tumor necrosis factor and interleukin-1, did not significantly alter the wasting effects of rhCNTF. These findings demonstrate that, in contrast to its well-characterized trophic effects on cells of the nervous system, rhCNTF causes atrophy of skeletal muscle by mechanisms involving both anorexia and cachexia based on the results of pair-feeding experiments.
据报道,重组人睫状神经营养因子(rh-CNTF)可减轻大鼠坐骨神经单侧横断后的骨骼肌萎缩(M. E. 赫尔格伦、S. P. 斯昆托、H. L. 戴维斯、D. J. 帕里、T. G. 博尔顿、C. S. 赫克、Y. 朱、G. D. 扬科波洛斯、R. M. 林赛和P. S. 迪斯泰法诺。《细胞》76: 493 - 504, 1994)。在本文报道的实验条件下,无论雌雄,成熟或未成熟大鼠经rhCNTF治疗后,失神经支配的腓肠肌和比目鱼肌的绝对质量均未增加。在rhCNTF的最高剂量(1和0.1 mg/kg)下,失神经支配的与对侧神经支配的腓肠肌和比目鱼肌质量之比的增加完全可归因于对侧神经支配肌肉的肌肉萎缩效应,而非对失神经支配肌肉的任何肌肉保护效应。rhCNTF的肌肉萎缩效应与体重增加减少和食物摄入量减少有关。成对喂养的大鼠比注射rhCNTF的自由进食大鼠体重和骨骼肌质量损失更少,但内脏质量损失显著更大。雄性大鼠比雌性大鼠体重和骨骼肌质量损失更大。恶病质细胞因子肿瘤坏死因子和白细胞介素-1的重组抑制剂并未显著改变rhCNTF的消瘦效应。基于成对喂养实验的结果,这些发现表明,与rhCNTF对神经系统细胞具有明确特征的营养作用相反,其通过涉及厌食和恶病质的机制导致骨骼肌萎缩。