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微重力和卧位引起的贫血:交感神经对促红细胞生成素产生的控制作用。

The anemia of microgravity and recumbency: role of sympathetic neural control of erythropoietin production.

作者信息

Robertson D, Krantz S B, Biaggioni I

机构信息

Center for Space Physiology and Medicine, Departments of Medicine and Pharmacology, Vanderbilt University, Nashville, Tennessee 37232-2195, USA.

出版信息

Acta Astronaut. 1994 Jul;33:137-41. doi: 10.1016/0094-5765(94)90118-x.

Abstract

We hypothesize that reduced sympathetic stimulation of erythropoietin production may maintain the anemia which develops in virtually all space travellers. We tested this hypothesis in a human model of reduced sympathetic activity. Thirty-three patients with the Bradbury-Eggleston syndrome were divided into three groups according to their hemoglobin (Hgb) level. Patients with low Hgb had lower upright norepinephrine and lower upright renin. Patients with anemia also had inappropriately low plasma erythropoietin levels. We administered recombinant erythropoietin (Epogen) 25-50 units/kg s.c. 3 times per week and found that the anemia seen in autonomic failure could be reversed by this treatment. These results support the hypothesis that erythropoiesis is modulated by the sympathetic nervous system and that at such mechanisms may also operate in the microgravity environment where sympathetic activity is reduced.

摘要

我们推测,促红细胞生成素产生过程中交感神经刺激的减少可能会维持几乎所有太空旅行者都会出现的贫血状态。我们在一个交感神经活动减少的人体模型中对这一推测进行了验证。33例患有布拉德伯里-埃格尔斯顿综合征的患者根据其血红蛋白(Hgb)水平被分为三组。血红蛋白水平低的患者其直立位去甲肾上腺素水平较低,直立位肾素水平也较低。贫血患者的血浆促红细胞生成素水平也异常低下。我们每周皮下注射3次重组促红细胞生成素(爱普列特),剂量为25 - 50单位/千克,发现自主神经功能衰竭患者中出现的贫血可通过这种治疗得到逆转。这些结果支持了以下推测:红细胞生成受交感神经系统调节,并且在交感神经活动减少的微重力环境中,这样的机制可能也会起作用。

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