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大鼠垂体中生物活性生长激素的骨骼肌传入调节

Skeletal muscle afferent regulation of bioassayable growth hormone in the rat pituitary.

作者信息

Gosselink K L, Grindeland R E, Roy R R, Zhong H, Bigbee A J, Grossman E J, Edgerton V R

机构信息

Department of Physiological Science, California 94035, USA.

出版信息

J Appl Physiol (1985). 1998 Apr;84(4):1425-30. doi: 10.1152/jappl.1998.84.4.1425.

DOI:10.1152/jappl.1998.84.4.1425
PMID:9516213
Abstract

There are forms of growth hormone (GH) in the plasma and pituitary of the rat and in the plasma of humans that are undetected by presently available immunoassays (iGH) but can be measured by bioassay (bGH). Although the regulation of iGH release is well documented, the mechanism(s) of bGH release is unclear. On the basis of changes in bGH and iGH secretion in rats that had been exposed to microgravity conditions, we hypothesized that neural afferents play a role in regulating the release of these hormones. To examine whether bGH secretion can be modulated by afferent input from skeletal muscle, the proximal or distal ends of severed hindlimb fast muscle nerves were stimulated ( approximately 2 times threshold) in anesthetized rats. Plasma bGH increased approximately 250%, and pituitary bGH decreased approximately 60% after proximal nerve trunk stimulation. The bGH response was independent of muscle mass or whether the muscles were flexors or extensors. Distal nerve stimulation had little or no effect on plasma or pituitary bGH. Plasma iGH concentrations were unchanged after proximal nerve stimulation. Although there may be multiple regulatory mechanisms of bGH, the present results demonstrate that the activation of low-threshold afferents from fast skeletal muscles can play a regulatory role in the release of bGH, but not iGH, from the pituitary in anesthetized rats.

摘要

在大鼠的血浆和垂体以及人类的血浆中,存在目前可用的免疫测定法(iGH)检测不到但可通过生物测定法(bGH)测量的生长激素(GH)形式。虽然iGH释放的调节已有充分记录,但bGH释放的机制尚不清楚。基于暴露于微重力条件下的大鼠中bGH和iGH分泌的变化,我们推测神经传入在调节这些激素的释放中起作用。为了研究bGH分泌是否可由骨骼肌的传入输入调节,在麻醉大鼠中刺激切断的后肢快肌神经的近端或远端(约2倍阈值)。近端神经干刺激后,血浆bGH增加约250%,垂体bGH减少约60%。bGH反应与肌肉质量或肌肉是屈肌还是伸肌无关。远端神经刺激对血浆或垂体bGH几乎没有影响。近端神经刺激后血浆iGH浓度未改变。虽然bGH可能有多种调节机制,但目前的结果表明,来自快速骨骼肌的低阈值传入神经的激活可在麻醉大鼠垂体中bGH而非iGH的释放中发挥调节作用。

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