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On the in vivo action of erythropoietin: a quantitative analysis

机译:关于促红细胞生成素的体内作用:定量分析

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摘要

The composite response of the erythron to exogenous erythropoietin has been studied in normal, splenectomized, and polycythemic mice. After stimulation the normal animal doubled its marrow nucleated red cells by the 3rd day with little further change by the 5th. Nucleated red cells within the spleen began to increase sharply on the 2nd day and, by the 5th, exceeded those in the marrow. The total nucleated erythroid response represented a fourfold increase. Reticulocytes lagged behind the expansion of the nucleated red cell mass, but by the 5th day the original ratio was re-established. Hemoglobin synthesis was increased, but the ratio of hemoglobin synthesized in nucleated red cells and reticulocytes was basically unchanged. Early displacement of marrow reticulocytes into circulation and the production of a larger red cell also occurred. No evidence of a change in the number of erythroid mitoses was found; only a slight decrease in the average cell cycle time was demonstrated. Thus, whereas erythropoietin stimulation induced several changes in erythropoiesis, the increased number of cells entering into the maturing pool appeared to be of greatest quantitative significance.Splenectomy reduced the proliferative response of the erythron over 5 days stimulation to three-fourths that found in the normal animal. This difference, also reflected in a proportionately lower reticulocyte response and increment in circulating red cell mass, suggests that erythropoiesis within the mouse marrow is spatially or otherwise restricted and that the spleen provided a supplemental area of erythroid expansion.
机译:已在正常,脾切除和多细胞小鼠中研究了赤藓红对外源促红细胞生成素的复合反应。刺激后,正常动物在第3天将其骨髓核红细胞增加了一倍,而在第5天几乎没有变化。脾脏中的有核红细胞在第2天开始急剧增加,到第5天,已超过骨髓中的那些。总有核红系反应代表增加了四倍。网织红细胞滞后于有核红细胞团的扩张,但到第5天,原始比例得以恢复。血红蛋白合成增加,但有核红细胞和网织红细胞中合成的血红蛋白比例基本不变。骨髓网状细胞的早期移位进入循环并产生更大的红细胞。没有发现红系有丝分裂数目改变的证据。仅证明平均细胞周期时间略有减少。因此,尽管促红细胞生成素刺激引起了促红细胞生成的若干变化,但进入成熟池的细胞数量的增加似乎具有最大的定量意义。脾切除术将促红细胞在5天的刺激下的增殖反应降低到正常水平的四分之三。动物。这种差异也反映在网织红细胞反应的比例降低和循环红细胞量增加中,这表明小鼠骨髓内的红细胞生成受到空间或其他方面的限制,脾脏提供了红细胞扩张的补充区域。

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