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正常外周血和骨髓细胞亚群表达功能性多药耐药表型。

Subpopulations of normal peripheral blood and bone marrow cells express a functional multidrug resistant phenotype.

作者信息

Drach D, Zhao S, Drach J, Mahadevia R, Gattringer C, Huber H, Andreeff M

机构信息

University of Texas M.D. Anderson Cancer Center, Department of Hematology, Houston 77030.

出版信息

Blood. 1992 Dec 1;80(11):2729-34.

PMID:1360266
Abstract

The multidrug-resistance gene, MDR1 is expressed in many normal tissues, but little is known about its expression in normal hematopoietic cells. Using the monoclonal antibody C219 and flow cytometric analysis, P-glycoprotein (P-gp) was found to be expressed in all peripheral blood (PB) subpopulations (CD4, CD8, CD14, CD19, CD56) except granulocytes. To specifically determine MDR1 gene expression, these PB subpopulations were isolated by fluorescence-activated cell sorting (FACS) and analyzed for MDR1 mRNA by polymerase chain reaction (PCR). All subsets were positive by PCR, but only minimal MDR1 mRNA was detected in monocytes and granulocytes. Significant efflux of Rhodamine-123 (Rh-123), a measure of P-gp function, was detected in CD4+, CD8+, CD14+, CD19+, and CD56+ cells but not in granulocytes. Next, PCR-analysis was performed on FACS-sorted bone marrow (BM) cells to assess MDR1 expression in different maturational stages. Precursors (CD34+), early and late myeloid cells (CD33+/CD34+, CD33+/CD34-) as well as lymphocytes of the B-cell lineage (CD19+/CD10+, CD19+/CD10-) expressed the MDR1 gene. BM monocytic cells (CD33++/CD34-) were negative, and a very weak signal was detected in erythroid cells (glycophorin A+). Significant Rh-123 efflux was found in CD34+, CD10+, CD33+, and CD33++ BM cells, but not in glycophorin A+ cells. We conclude that PB and BM lymphocytes, PB monocytes, BM progenitors, and immature myeloid cells, but not late BM monocytes, erythroid cells, and PB granulocytes, express MDR1 mRNA and a functional P-gp. These results have to be taken into account when MDR1 expression is determined in tumor samples containing normal blood cells.

摘要

多药耐药基因MDR1在许多正常组织中表达,但对其在正常造血细胞中的表达了解甚少。使用单克隆抗体C219和流式细胞术分析发现,除粒细胞外,所有外周血(PB)亚群(CD4、CD8、CD14、CD19、CD56)均表达P-糖蛋白(P-gp)。为了特异性地确定MDR1基因的表达,通过荧光激活细胞分选(FACS)分离这些PB亚群,并通过聚合酶链反应(PCR)分析MDR1 mRNA。所有亚群通过PCR均呈阳性,但在单核细胞和粒细胞中仅检测到微量的MDR1 mRNA。在CD4 +、CD8 +、CD14 +、CD19 +和CD56 +细胞中检测到罗丹明123(Rh-123)的显著外排,这是P-gp功能的一种衡量指标,但在粒细胞中未检测到。接下来,对FACS分选的骨髓(BM)细胞进行PCR分析,以评估MDR1在不同成熟阶段的表达。前体细胞(CD34 +)、早期和晚期髓样细胞(CD33 + / CD34 +、CD33 + / CD34 -)以及B细胞系淋巴细胞(CD19 + / CD10 +、CD19 + / CD10 -)表达MDR1基因。BM单核细胞(CD33 ++ / CD34 -)为阴性,在红细胞(血型糖蛋白A +)中检测到非常微弱的信号。在CD34 +、CD10 +、CD33 +和CD33 ++ BM细胞中发现显著的Rh-12外排,但在血型糖蛋白A +细胞中未发现。我们得出结论,PB和BM淋巴细胞、PB单核细胞、BM祖细胞和未成熟髓样细胞表达MDR1 mRNA和功能性P-gp,但晚期BM单核细胞、红细胞和PB粒细胞不表达。在含有正常血细胞的肿瘤样本中测定MDR1表达时,必须考虑这些结果。

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