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弗氏病毒诱导的红细胞白血病中的细胞调节。对基因型为Sl/Sld的贫血小鼠的研究。

Cellular regulation in Friend virus induced erythroleukemia. Studies with anemic mice of genotype Sl/Sld.

作者信息

McCool D, Mak T W, Bernstein A

出版信息

J Exp Med. 1979 Apr 1;149(4):837-46. doi: 10.1084/jem.149.4.837.

Abstract

Genetically anemic SI/SI(d) mice have been shown previously to have a defective hematopoietic environment which prevents extensive erythroid differentiation of normal hematopoietic stem cells and also confers resistance to the erythroleukemia-inducing virus, Friend spleen focus-forming virus (SFFV). In this study, we show that the relative resistance of SI/SI(d) mice to transformation by SFFV is not due to the inability of SFFV to replicate, nor is it because SFFV cannot transform erythroid cells, in the spleens of these mice. Injection of syngeneic +/+ mouse spleen cells, previously infected in vivo with SFFV, into secondary SI/SI(d) recipients resulted in marked splenic enlargement, and the appearance of large numbers of erythropoietin (Epo)-independent erythroid colonies in plasma clot culture. The cellular proliferation observed in these SI/SI(d) secondary recipients appeared to be due to infection and transformation of host SI/SI(d) cells rather than the growth of possible tumor colony-forming units (TCFU) present in the infected +/+ spleens, because preirradiation of the SI/SI(d) recipients abolished the splenomegaly and appearance of Epo- independent erythroid colonies. Furthermore, prior irradiation (1,200 rads) of donor spleen cells from SFFV-infected +/+ mice only slightly reduced spleen focus formation in unirradiated SI/SI(d) recipients. The conclusion that SI/SI(d) target cells could be infected and transformed by SFFV was confirmed directly by injecting a high titered preparation of SFFV into SI/SI(d) mice. SI/SI(d) mice were not absolutely resistant to infection or transformation by SFFV. Nevertheless, cells from the spleens of SFFV-infected mice were unable to form tumor colonies (TCFU) in irradiated SI/SI(d) recipients, suggesting that TCFU are either present at an undetectably low frequency in these spleens, or that they are still subject to the regulatory influences of the Steel locus.

摘要

先前已表明,基因性贫血的SI/SI(d)小鼠具有有缺陷的造血环境,这种环境会阻止正常造血干细胞广泛的红系分化,并且还赋予其对诱导红细胞白血病的病毒——Friend脾集落形成病毒(SFFV)的抗性。在本研究中,我们表明,SI/SI(d)小鼠对SFFV转化的相对抗性并非由于SFFV无法复制,也不是因为SFFV不能在这些小鼠的脾脏中转化红系细胞。将先前在体内感染了SFFV的同基因+/+小鼠脾细胞注射到二级SI/SI(d)受体中,导致脾脏明显肿大,并在血浆凝块培养中出现大量不依赖促红细胞生成素(Epo)的红系集落。在这些SI/SI(d)二级受体中观察到的细胞增殖似乎是由于宿主SI/SI(d)细胞的感染和转化,而不是由于感染的+/+脾脏中可能存在的肿瘤集落形成单位(TCFU)的生长,因为对SI/SI(d)受体进行预照射消除了脾肿大和不依赖Epo的红系集落的出现。此外,对来自感染SFFV的+/+小鼠的供体脾细胞进行预先照射(1200拉德),只会略微降低未照射的SI/SI(d)受体中的脾集落形成。通过将高滴度的SFFV制剂注射到SI/SI(d)小鼠中,直接证实了SI/SI(d)靶细胞可被SFFV感染和转化这一结论。SI/SI(d)小鼠对SFFV的感染或转化并非绝对抗性。然而,来自感染SFFV小鼠脾脏的细胞在照射后的SI/SI(d)受体中无法形成肿瘤集落(TCFU),这表明TCFU要么在这些脾脏中以低到无法检测的频率存在,要么它们仍然受到Steel位点的调节影响。

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