首页> 外文期刊>The Journal of Experomental Medicine >Continuous replication of Friend virus complex (spleen focus-forming virus-lymphatic leukemia-inducing virus) in mouse embryo fibroblasts. Retention of leukemogenicity and loss of immunosuppressive properties.
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Continuous replication of Friend virus complex (spleen focus-forming virus-lymphatic leukemia-inducing virus) in mouse embryo fibroblasts. Retention of leukemogenicity and loss of immunosuppressive properties.

机译:在小鼠胚胎成纤维细胞中不断复制Friend病毒复合物(形成脾脏病灶的病毒-淋巴性白血病诱导病毒)。保留致白血病性和免疫抑制特性的丧失。

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Exposure of NIH Swiss mouse embryo fibroblasts (MEF) to infectious Friend virus (FV) complex [containing defective spleen focus-forming virus (SFFV) and endogenous NB-tropic leukemia-inducing helper virus (LLV-F)] resulted in the productive infection of these cells by both SFFV and LLV-F. Stocks of SFFV derived after extensive growth in this Swiss MEF cell culture system are fully leukemogenic in adult mice for the induction of erythroleukemia and spleen foci. In addition, in vitro-derived LLV-F, when isolated free of SFFV, is fully leukemogenic for the induction of lymphatic leukemia when inoculated into susceptible newborn BALB/c mice. The host range of in vitro-derived FV complex (i.e., FV-TC) for focus formation in vivo is NB-tropic. Unlike in vivo-derived FV complex, FV-TC does not suppress the responsiveness of murine thymocytes to concanavalin A (Con A) in vitro. Rather, FV-TC acts as a mitogen to nonspecifically stimulate the proliferation of BALB/c thymocytes. The mitogenicity of in vitro-derived FV complex is directly associated with the presence of type-C virus particles, is a heat-labile and UV-sensitive property of the virus, and may be primarily due to LLV since equivalent amounts of LLV with or without SFFV present are equally mitogenic. One in vivo passage of FV-TC resulted in the total loss of this mitogenic property with the reappearance of full immunosuppressive properties. This result demonstrates a clear association between in vivo growth of FV and its ability to suppress mouse thymocytes, and suggests that FV complex (SFFV-LLV) is not inherently immunosuppressive for these cells. While the mechanism of this interconversion between immunostimulatory and fully suppressive virus is unknown, both virus markers appear to be dependent upon the presence of infectious FV.
机译:将NIH瑞士小鼠胚胎成纤维细胞(MEF)暴露于传染性Friend病毒(FV)复合体[包含有缺陷的脾脏聚焦形成病毒(SFFV)和内源性NB-tropic白血病诱导型辅助病毒(LLV-F)]导致生产性感染SFFV和LLV-F共同检测这些细胞。在此瑞士MEF细胞培养系统中大量生长后衍生的SFFV存量在成年小鼠中完全致白血病,可诱发红白血病和脾脏灶。此外,体外分离的LLV-F在不含SFFV的情况下被接种到易感的新生BALB / c小鼠中时,具有完全的致白血病性,可诱导淋巴性白血病。用于体内形成焦点的体外衍生的FV复合物(即FV-TC)的宿主范围是NB-tropic。与体内衍生的FV复合物不同,FV-TC在体外不会抑制鼠胸腺细胞对伴刀豆球蛋白A(Con A)的反应。相反,FV-TC充当有丝分裂原,非特异性地刺激BALB / c胸腺细胞的增殖。体外衍生的FV复合物的促有丝分裂性与C型病毒颗粒的存在直接相关,是病毒的不耐热和对紫外线敏感的特性,并且可能主要归因于LLV,因为等量的LLV与或没有SFFV存在同样有丝分裂。 FV-TC在体内的一次传代导致完全丧失了这种有丝分裂特性,并再次出现了完全的免疫抑制特性。该结果表明FV的体内生长与其抑制小鼠胸腺细胞的能力之间存在明显的联系,并表明FV复合物(SFFV-LLV)并非固有地对这些细胞具有免疫抑制作用。虽然这种免疫刺激性病毒和完全抑制性病毒之间相互转化的机制尚不清楚,但两种病毒标记似乎都取决于感染性FV的存在。

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