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首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >Partial recovery of skeletal muscle sodium channel properties in aged rats chronically treated with growth hormone or the GH-secretagogue hexarelin.
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Partial recovery of skeletal muscle sodium channel properties in aged rats chronically treated with growth hormone or the GH-secretagogue hexarelin.

机译:长期用生长激素或GH-分泌-六聚体素治疗的老年大鼠骨骼肌钠通道特性的部分恢复。

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摘要

This study was aimed at investigating the effects of chronic treatment of aged rats with growth hormone (GH, 8 weeks) or the GH-secretagogue hexarelin (4 weeks) on the biophysical modifications that voltage-gated sodium channels of skeletal muscle undergo during aging, by means of the patch-clamp technique applied to fast-twitch muscle fibers. Two phenotypes of aged-rat fibers could be discriminated on the basis of channel conductance. In the young phenotype, sodium channels present a conductance of 18 pS as in young-adult rats. In the aged phenotype, channels present a conductance of 9 pS while ensemble average currents activate and inactivate more slowly. Nevertheless, in all situations, sodium channels shared a number of biophysical properties, such as open probability, mean open time, steady-state inactivation and use-dependent inhibition. Furthermore, channel density on extrajunctional sarcolemma was higher in aged rats, a result independent of the phenotype. Chronic treatment of aged rats with either GH or hexarelin restored current kinetics but not channel conductance and density. These results confirm the specific age-related changes in sodium channel behavior and show that treatment with either GH or hexarelin has partial restorative effects. Moreover, hexarelin restored the firing capacity of fast-twitch muscle fibers, as did GH in previous studies. These findings support the possible therapeutic value of the synthetic peptide in cases of GH deficiency, as in the elderly.
机译:这项研究的目的是研究用生长激素(GH,8周)或GH-secrettagogue hexarelin(4周)对老年大鼠的慢性治疗对骨骼肌电压门控钠通道在衰老过程中发生的生物物理修饰的影响,通过应用于快速抽动肌肉纤维的膜片钳技术。可以根据通道电导来区分衰老大鼠纤维的两种表型。在年轻表型中,钠通道的电导率与成年大鼠一样为18 pS。在衰老的表型中,通道的电导为9 pS,而整体平均电流的激活和失活速度则更慢。然而,在所有情况下,钠通道都具有许多生物物理特性,例如打开概率,平均打开时间,稳态失活和使用依赖性抑制。此外,老年大鼠结膜外肌膜上的通道密度更高,其结果与表型无关。用GH或hexarelin长期治疗老年大鼠可恢复电流动力学,但不能恢复通道电导和密度。这些结果证实了与年龄有关的钠通道行为的特定变化,并表明用GH或hexarelin进行的治疗具有部分恢复作用。而且,像以前的研究中的GH一样,hexarelin可以恢复快肌纤维的放电能力。这些发现支持合成肽在GH缺乏的情况下(如老年人)的可能的治疗价值。

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