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乳酸脱氢酶小鼠突变体伴溶血性贫血的造血应激模型。

A model of hemopoietic stress in a lactate dehydrogenase mouse mutant with hemolytic anemia.

作者信息

Kremer J P, Datta T, Dörmer P

出版信息

Blut. 1986 Mar;52(3):179-83. doi: 10.1007/BF00320534.

Abstract

A codominantly inherited mutation of the lactate dehydrogenase (LDH) in the C3H mouse causes a severe hemolytic anemia in homozygous mutants, whereas viability and fertility are close to normal. Investigation of multipotent hemopoietic stem cells (CFU-S), myeloid (GM-CFC) and erythroid progenitors (BFU-E, CFU-E) in femur and spleen indicates a general shift from bone marrow to splenic hemopoiesis. In terms of total body hemopoiesis, however, the BFU-E pool is 1.4- and the CFU-E pool 19-fold enlarged, whereas CFU-S and GM-CFC show little or no deviation from normal. It is concluded that this mouse mutant is an appropriate model of long-term hemopoietic stress showing that compensation in this severe hemolytic anemia is achieved primarily by an increase of the number of the most mature erythroid progenitors.

摘要

C3H小鼠中乳酸脱氢酶(LDH)的共显性遗传突变在纯合突变体中导致严重的溶血性贫血,而其生存能力和繁殖能力接近正常。对股骨和脾脏中的多能造血干细胞(CFU-S)、髓系祖细胞(GM-CFC)和红系祖细胞(BFU-E、CFU-E)的研究表明,造血过程总体上从骨髓转移到了脾脏。然而,就全身造血而言,BFU-E池扩大了1.4倍,CFU-E池扩大了19倍,而CFU-S和GM-CFC与正常情况相比几乎没有偏差或没有偏差。得出的结论是,这种小鼠突变体是长期造血应激的合适模型,表明在这种严重溶血性贫血中,补偿主要是通过增加最成熟红系祖细胞的数量来实现的。

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