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逆转录病毒诱导的猫纯红细胞再生障碍:发病机制及对苏拉明的反应

Retrovirus-induced feline pure red blood cell aplasia: pathogenesis and response to suramin.

作者信息

Abkowitz J L

机构信息

Department of Medicine, University of Washington, Seattle 98195.

出版信息

Blood. 1991 Apr 1;77(7):1442-51.

PMID:1849031
Abstract

Feline leukemia virus, subgroup C/Sarma (FeLV-C/Sarma) induces pure red blood cell aplasia in cats. Although erythroid (BFU-E and CFU-E) and granulocyte/macrophage (CFU-GM) progenitors are infected with this virus, only erythropoiesis is impaired. Two to 3 weeks before the onset of anemia, CFU-E become undetectable in marrow cultures while earlier erythroid progenitors (BFU-E) persist, suggesting that FeLV-C/Sarma (presumably via its envelope glycoprotein gp70) inhibits the differentiation of BFU-E to CFU-E in vivo. To correlate in vitro observations with the progression of disease, prospective studies were performed in six cats. These studies showed that at the time that the frequencies of CFU-E decreased in marrow cultures, BFU-E no longer responded to hematopoietic growth factor(s), although the responses of CFU-GM were unchanged. In further studies, anemic cats received suramin, a reverse-transcriptase inhibitor with other diverse effects. Within 4 to 14 days, erythropoiesis improved and up to 1,616 CFU-E were detected per 10(5) marrow mononuclear cells. However, progenitor cells remained infected, suggesting that suramin modulated erythroid differentiation without inhibiting progenitor infection. These observations led to the hypothesis that the gp70 of FeLV-C/Sarma impairs BFU-E differentiation by interference with ligand/receptor interactions or signal transduction pathways unique to erythroid cells. Understanding this mechanism should provide insights into the interactions controlling early erythropoiesis.

摘要

猫白血病病毒C/Sarma亚群(FeLV-C/Sarma)可在猫中诱发纯红细胞再生障碍。尽管红系祖细胞(BFU-E和CFU-E)以及粒细胞/巨噬细胞祖细胞(CFU-GM)都感染了这种病毒,但只有红细胞生成受到损害。在贫血发作前2至3周,骨髓培养物中无法检测到CFU-E,而早期红系祖细胞(BFU-E)仍然存在,这表明FeLV-C/Sarma(可能通过其包膜糖蛋白gp70)在体内抑制BFU-E向CFU-E的分化。为了将体外观察结果与疾病进展相关联,对6只猫进行了前瞻性研究。这些研究表明,当骨髓培养物中CFU-E的频率下降时,BFU-E对造血生长因子不再有反应,尽管CFU-GM的反应没有变化。在进一步的研究中,贫血猫接受了苏拉明,一种具有其他多种作用的逆转录酶抑制剂。在4至14天内,红细胞生成得到改善,每10(5)个骨髓单个核细胞中可检测到多达1616个CFU-E。然而,祖细胞仍然受到感染,这表明苏拉明调节了红系分化,而没有抑制祖细胞感染。这些观察结果导致了这样一个假设,即FeLV-C/Sarma的gp70通过干扰红系细胞特有的配体/受体相互作用或信号转导途径来损害BFU-E的分化。了解这一机制应该能够深入了解控制早期红细胞生成的相互作用。

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