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新型t(7;9)早前B细胞急性淋巴细胞白血病细胞系MIELIKI的增殖同时受到白细胞介素-4和白细胞介素-7的抑制。

Proliferation of MIELIKI a novel t(7;9) early pre-B acute lymphoblastic leukemia cell line is inhibited concomitantly by IL-4 and IL-7.

作者信息

Renard N, Duvert V, Matthews D J, Pagés M P, Magaud J P, Manel A M, Pandrau-Garcia D, Philippe N, Banchereau J, Saeland S

机构信息

Schering-Plough, Laboratory for Immunological Research, Dardilly, France.

出版信息

Leukemia. 1995 Jul;9(7):1219-26.

PMID:7630198
Abstract

The present study describes a novel cell line, MIELIKI, established from bone marrow of a pediatric patient with B lineage acute lymphoblastic leukemia (ALL) at diagnosis. The MIELIKI cell line displays an early pre-B cell phenotype (CD10+, CD19+, CD20+, CD34-, Cmu-, sIg-) with rearrangements on both Ig heavy chain and k light chain alleles, and carries an unfrequent t(7;9) chromosomal translocation identical to the freshly isolated leukemic blasts. The proliferation of MIELIKI cells was abrogated by IL-4 and by IL-7, as measured by DNA replication and viable cell recovery. The effects of IL-4 and IL-7 were mediated, respectively, through the CDw124 and CDw127 IL-4 and IL-7 receptor components. Growth inhibition by IL-4 was not mediated by soluble factors released by MIELIKI cells in response to IL-4, suggesting the existence of an intrinsic negative signaling pathway. Finally, neither IL-4 nor IL-7 were found to induce maturation of MIELIKI into cells expressing cytoplasmic or surface membrane mu chain. The present cell line should constitute a useful model of t(7;9) early pre-B ALL and allow investigation of the relationship between IL-4 and IL-7 negative signaling in leukemic B cell ontogeny.

摘要

本研究描述了一种新的细胞系MIELIKI,它是从一名诊断为B系急性淋巴细胞白血病(ALL)的儿科患者的骨髓中建立的。MIELIKI细胞系表现出早期前B细胞表型(CD10+、CD19+、CD20+、CD34-、Cmu-、sIg-),免疫球蛋白重链和κ轻链等位基因均发生重排,并携带与新鲜分离的白血病原始细胞相同的罕见t(7;9)染色体易位。通过DNA复制和活细胞恢复检测发现,IL-4和IL-7可消除MIELIKI细胞的增殖。IL-4和IL-7的作用分别通过CDw124和CDw127这两种IL-4和IL-7受体成分介导。IL-4引起的生长抑制不是由MIELIKI细胞响应IL-4释放的可溶性因子介导的,这表明存在一种内在的负信号通路。最后,未发现IL-4和IL-7能诱导MIELIKI细胞成熟为表达细胞质或表面膜μ链的细胞。本细胞系应可构成t(7;9)早期前B ALL的有用模型,并有助于研究白血病B细胞个体发生过程中IL-4和IL-7负信号之间的关系。

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