Kita K, Nakase K, Miwa H, Masuya M, Nishii K, Morita N, Takakura N, Otsuji A, Shirakawa S, Ueda T
Second Department of Internal Medicine, Mie University School of Medicine, Tsu, Japan.
Blood. 1992 Jul 15;80(2):470-7.
Twenty-three acute myelocytic leukemia (AML) patients with t(8;21) chromosomal abnormality, all classified as M2 (French-American-British [FAB] classification), were investigated. Blastic cells from all patients were positive for the stem cell-associated antigens, CD34 and HLA-DR, and the immature myeloid antigens, CD13 and CD33. The nonblastic leukemic cells expressed the more mature myeloid antigens, CD11b and CD15, with loss of the immature phenotype. The incidence of positivities for the stem cell-associated antigens, CD34 and HLA-DR, in t(8;21) AML cells was significantly higher in comparison with those in other AML showing granulocytic differentiation (M2 or M3). AML cells with t(8;21) also showed some phenotypic abnormalities. Frequent expression of CD19 was found in the blastic population of t(8;21) AML (18 of 23 cases) without other B-cell antigens and Ig gene rearrangements. CD19 expression was confirmed by immunocytochemistry and Northern blotting. The CD19+ blastic cells coexpressed both CD34 and HLA-DR. In addition, CD33+ cells among the blastic fraction in t(8;21) AML cells were fewer in number than in those of M2 or M3 AML without t(8;21). Our findings indicate that leukemic blasts of t(8;21) AML commonly express CD19 while preserving the stem cell-associated antigens, and differentiate into the granulocytic pathway with discordant maturation such as low CD33 expression.
对23例伴有t(8;21)染色体异常的急性髓细胞白血病(AML)患者进行了研究,所有患者均被归类为M2型(法国-美国-英国[FAB]分类)。所有患者的原始细胞均表达干细胞相关抗原CD34和HLA-DR,以及未成熟髓系抗原CD13和CD33。非原始白血病细胞表达更成熟的髓系抗原CD11b和CD15,未成熟表型消失。与其他显示粒细胞分化的AML(M2或M3)相比,t(8;21) AML细胞中干细胞相关抗原CD34和HLA-DR的阳性率显著更高。伴有t(8;21)的AML细胞也表现出一些表型异常。在t(8;21) AML的原始细胞群体中发现CD19频繁表达(23例中有18例),且无其他B细胞抗原和Ig基因重排。通过免疫细胞化学和Northern印迹法证实了CD19的表达。CD19+原始细胞同时表达CD34和HLA-DR。此外,t(8;21) AML细胞原始部分中的CD33+细胞数量少于无t(8;21)的M2或M3 AML。我们的研究结果表明,t(8;21) AML的白血病原始细胞通常表达CD19,同时保留干细胞相关抗原,并分化为粒细胞途径,但成熟不一致,如CD33表达较低。