Treatment of experimental spinal trauma with thyrotropin-releasing hormone: central serotonergic and vascular mechanisms of action.

S K Salzman, E Hirofugi, P B Knight, C Llados-Eckman, A L Beckman, A Winokur
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引用次数: 20

Abstract

The sites and mechanisms by which thyrotropin-releasing hormone (TRH) may ameliorate the effects of spinal cord contusion were studied in the rabbit. We have examined the actions of an effective intravenous TRH infusion on the spinal content and utilization of the monoamine neurotransmitters (norepinephrine [NE], dopamine [DA], and serotonin [5-HT]) in both control and injured animals. The ability of TRH to penetrate the blood-brain barrier was determined by the measurement of spinal cord TRH immunoreactivity and the effect of TRH upon the development of traumatic edema was evaluated. TRH was found to enter the spinal cord to a large extent in approximately half the animals, but to a lesser degree in the remainder. This indicates the potential for a central site of action. In this regard, TRH induced a significant increase in the metabolism or utilization of 5-HT above the injury site. This effect was not observed in control animals. Finally, TRH was able to cancel the formation of edema at the injury site. These results are correlated with previously described mechanisms and are discussed in terms of the co-existence of TRH and 5-HT in raphe-spinal neurons descending from the medulla.

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促甲状腺激素释放激素治疗实验性脊柱创伤:中枢血清素能和血管作用机制。
研究了促甲状腺素释放激素(TRH)改善兔脊髓挫伤的部位和机制。我们研究了有效静脉注射TRH对对照和受伤动物脊柱中单胺类神经递质(去甲肾上腺素[NE]、多巴胺[DA]和血清素[5-HT])含量和利用的影响。通过脊髓TRH免疫反应性测定TRH穿透血脑屏障的能力,并评价TRH对创伤性水肿发生的影响。在大约一半的动物中发现TRH在很大程度上进入脊髓,但在其余动物中进入程度较低。这表明可能有一个中枢作用部位。在这方面,TRH诱导损伤部位以上5-羟色胺的代谢或利用显著增加。在对照动物中没有观察到这种效应。最后,TRH能够消除损伤部位水肿的形成。这些结果与先前描述的机制相关,并根据TRH和5-HT在从延髓下行的大脊髓神经元中的共存进行了讨论。
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Treatment of experimental spinal trauma with thyrotropin-releasing hormone: central serotonergic and vascular mechanisms of action. Opiate-receptor antagonists, thyrotropin-releasing hormone (TRH), and TRH analogs in the treatment of spinal cord injury. The post-injury responses in trauma and ischemia: secondary injury or protective mechanisms? Total phosphate determination in brain tissues: a method for regional determination of total phosphate in rat brain. Evaluation and diagnosis of cervical spine injuries: a review of the literature.
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