The brain and other sites of erythropoietin production.

I Baciu, C Oprişiu, P Derevenco, V Vasile, A Mureşan, M Hriscu, I Chiş
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Abstract

Ischemic hypoxia of the head induced in dogs by carotid compression produces EPO secretion, upon direct cerebral stimulation, and adaptive carotid-respiratory reflexes via sino-carotid stimulation. During hypoxic hypoxia, there also occurs extrarenal EPO production, as shown in binephrectomized rats compared to controls. Ischemic hypoxia of a single kidney transplanted in the neck area (the other kidney being removed) does not induce EPO secretion. An additional factor, of extra-renal origin, is required for the renal production of EPO in a non-hypoxic organism. Section of the spinal cord at C6 level in rats does not abolish EPO secretion induced by hypobaric hypoxia, a fact that suggests that there is no nervous center to control EPO release into a peripheral organ, but EPO might be produced in the brain itself, possibly crossing the blood-brain barrier to reach the blood flow. Stereotactical attempts to locate nervous centers of erythropoiesis regulation also failed. EPO secretion obtained by electrical stimulation of different brain areas suggests the existence of widespread secretory cells, which might be the astrocytes. EPO production along the lymph-forming territories and the involvement of the lining macrophages is reported.

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促红细胞生成素产生的大脑和其他部位
颈动脉压迫引起的犬头部缺血性缺氧在直接脑刺激下产生EPO分泌,并通过颈动脉刺激产生适应性颈动脉呼吸反射。在低氧缺氧时,肾外也会产生EPO,如双肾切除大鼠与对照组相比所示。移植于颈部的单肾缺血缺氧(另一个肾被切除)不诱导EPO分泌。一个额外的因素,肾外来源,是需要肾脏生产促红细胞生成素在一个非缺氧的生物体。大鼠C6水平的脊髓切面不能消除低气压缺氧诱导的EPO分泌,这表明没有神经中枢控制EPO向外周器官释放,但EPO可能在脑内产生,可能穿过血脑屏障到达血流。立体定向定位红细胞生成调节神经中枢的尝试也失败了。通过电刺激不同脑区获得EPO分泌,提示广泛存在分泌细胞,可能是星形胶质细胞。EPO生产沿淋巴形成区域和参与的内层巨噬细胞被报道。
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