首页> 外文期刊>Leukemia Research: A Forum for Studies on Leukemia and Normal Hemopoiesis >Engraftment and tumorigenesis of HTLV-1 transformed T cell lines in SCID/bg and NOD/SCID mice.
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Engraftment and tumorigenesis of HTLV-1 transformed T cell lines in SCID/bg and NOD/SCID mice.

机译:HTLV-1的植入和肿瘤发生在SCID/BG和NOD/SCID小鼠中转化了T细胞系。

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Human T cell leukemia/lymphoma virus type-1 (HTLV-1) is recognized as the etiological agent of adult T cell leukemia (ATL). Although HTLV-1 can immortalize human lymphocytes in culture, identification of molecular events leading to tumorigenesis after HTLV-1 infection remain elusive. SCID/bg and NOD/SCID mice have reduced natural killer (NK) cell activity and were inoculated intraperitoneally with HTLV-1 transformed cells to refine and characterize the SCID mouse as a small animal model for investigation of HTLV-1 tumorigenesis. HTLV-1 transformed cell lines originally derived by cocultivation of uninfected peripheral blood mononuclear cells (PBMC) with lethally irradiated leukemic cells from patient samples (SLB-1, MT-2 and HT-1-RV) were lymphomagenic when inoculated into NOD/SCID mice. In contrast, immortalized cell lines generated by transfection PBMC with an infectious molecular clone of HTLV-1 (ACH or ACH.p12) were not tumorigenic. The differing behaviors of HTLV-1 infected cell lines in NOD/SCID mice indicates that viral infection and immortalization of human PBMC for growth in culture is not sufficient for induction of a tumorigenic phenotype. The higher level of engraftment of HTLV-1 transformed cell lines in NOD/SCID mice suggests that this is an effective animal model to investigate molecular determinants of HTLV-1 lymphomagenesis.
机译:人类T细胞白血病/淋巴瘤病毒类型1(HTLV-1)被认为是成年T细胞白血病(ATL)的病因。尽管HTLV-1可以使人类淋巴细胞在培养中永生,但在HTLV-1感染后导致肿瘤发生的分子事件的鉴定仍然难以捉摸。 SCID/BG和NOD/SCID小鼠的天然杀伤(NK)细胞活性降低,并用HTLV-1转化的细胞腹膜内接种,以完善并将SCID小鼠作为小动物模型,以研究HTLV-1肿瘤发生。 HTLV-1转化的细胞系最初通过未感染的未感染的外周血单核细胞(PBMC)与患者样品(SLB-1,MT-2和HT-1-RV)的致命辐照性白血病细胞共培养,淋巴细胞计学是淋巴细胞的老鼠。相比之下,由HTLV-1(ACH或ACH.P12)的传染性分子克隆转染PBMC产生的永生细胞系并非肿瘤。在NOD/SCID小鼠中,HTLV-1感染的细胞系的不同行为表明,人类PBMC在培养中生长的病毒感染和永生化不足以诱导肿瘤性表型。在NOD/SCID小鼠中,HTLV-1转化的细胞系的植入水平较高,这表明这是研究HTLV-1淋巴细胞促分子决定因素的有效动物模型。

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