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类固醇激素代谢产物对源自人骨髓的红系集落体外发育的影响。

The influence of steroid hormone metabolites on the in vitro development of erythroid colonies derived from human bone marrow.

作者信息

Urabe A, Sassa S, Kappas A

出版信息

J Exp Med. 1979 Jun 1;149(6):1314-25. doi: 10.1084/jem.149.6.1314.

Abstract

Certain C19 and C21 steroid metabolites, when incubated with normal human bone marrow cells in culture, increased the number of erythroid colonies in the presence of erythropoietin. Among a number of pairs of C5 epimeric steroids tested, most 5beta (A:B cis) steroids stimulated the growth of both early erythroid progenitor cells (BFU-E) and late erythroid progenitor cells (CFU-E), whereas only a few 5alpha-(A:B trans) steroids stimulated the growth of CFU-E. No 5alpha-compounds of six pairs of steroids studied were found to stimulate BFU-E formation. This structure-activity relationship conforms with that previously observed in studies of steroid induction of ALA-synthase in avian embryo liver cells and hemoglobin synthesis in the cultured avian blastoderm. When human bone marrow cells were preincubated with the steroids for 2 d, followed by incubation with erythropoietin, only the 5 beta-compounds stimulated the growth of BFU-E. Similarly, when addition of steroids was delayed in relation to erythropoietin in the culture, only the 5 beta-derivative of a pair of C5 epimeric compounds displayed an enhancing effect on the growth of BFU-E. This effect required that the steroid addition be made no later than 48 h after initiation of the culture. These data demonstrate that certain natural steroid metabolites significantly stimulate erythropoiesis in normal human bone marrow cells in culture. They also indicate that 5 beta-compounds are more stimulatory than their 5 alpha-epimers, and they suggest that these 5 beta-steroids act preferentially on very primitive erythroid progenitor cells, probably on BFU-E.

摘要

某些C19和C21甾体代谢物在培养中与正常人骨髓细胞一起孵育时,在促红细胞生成素存在的情况下会增加红系集落的数量。在测试的多对C5差向异构甾体中,大多数5β(A:B顺式)甾体刺激早期红系祖细胞(BFU-E)和晚期红系祖细胞(CFU-E)的生长,而只有少数5α-(A:B反式)甾体刺激CFU-E的生长。在所研究的六对甾体中,未发现5α-化合物能刺激BFU-E的形成。这种构效关系与先前在禽类胚胎肝细胞中甾体诱导ALA合酶以及培养的禽类胚盘血红蛋白合成的研究中观察到的一致。当人骨髓细胞先与甾体预孵育2天,然后再与促红细胞生成素孵育时,只有5β-化合物能刺激BFU-E的生长。同样,当在培养中相对于促红细胞生成素延迟添加甾体时,只有一对C5差向异构化合物的5β-衍生物对BFU-E的生长有增强作用。这种作用要求甾体添加不迟于培养开始后48小时进行。这些数据表明某些天然甾体代谢物能显著刺激培养中的正常人骨髓细胞的红细胞生成。它们还表明5β-化合物比其5α-差向异构体更具刺激性,并且表明这些5β-甾体优先作用于非常原始的红系祖细胞,可能是BFU-E。

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