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原巨核细胞中的5-羟色胺摄取、储存及代谢

Serotonin uptake, storage and metabolism in megakaryoblasts.

作者信息

Yang M, Srikiatkhachorn A, Anthony M, Chesterman C N, Chong B H

机构信息

Centre for Thrombosis and Vascular Research, University of New South Wales, Sydney, Australia.

出版信息

Int J Hematol. 1996 Feb;63(2):137-42.

PMID:8867723
Abstract

Serotonin (5-hydroxytryptamine, 5-HT) uptake, storage and metabolism in human megakaryoblastic cell line (Meg-01) which acts as a model for megakaryocyte precursors, megakaryoblasts were investigated by using biochemical (HPLC) and morphological (electron microscope, EM) techniques. Results showed that Meg-01 cells were able to take up 5-HT. The intracellular 5-HT level was 2.8 +/- 0.4 and 51.8 +/- 4.9 (1 h) or 59.0 +/- 4.4 (2 h) ng/10(6) cells, before and after incubation with 5-HT, respectively, but no dense bodies were visualized after incubation with excess 5-HT by electron microscope observation. This uptake was inhibited by 28% on pre-incubation with fluoxetine and 60% of 5-HT in the cells was released on incubation with reserpine. 5-Hydroxyindoleacetic acid (5-HIAA) concentration of Meg-01 cells was increased after incubation of the cells with 5-HT (0 and 17.6 +/- 2.1 or 19.9 +/- 1.9 ng/10(6) cells, before and after incubation 1 or 2 h, respectively). The study suggests that: (1) 5-HT uptake ability is well established in megakaryocytes precursors, megakaryoblasts and the uptake ability is affected by reserpine and fluoxetine; (2) however, the capacity to store the amine is not well developed in megakaryoblasts and (3) megakaryoblasts may contain monoamine oxidase (MAO) which converts 5-HT to 5-HIAA.

摘要

采用生化(高效液相色谱法,HPLC)和形态学(电子显微镜,EM)技术,对作为巨核细胞前体模型的人巨核母细胞系(Meg-01)中的血清素(5-羟色胺,5-HT)摄取、储存和代谢进行了研究。结果表明,Meg-01细胞能够摄取5-HT。在与5-HT孵育之前和之后,细胞内5-HT水平分别为2.8±0.4和51.8±4.9(1小时)或59.0±4.4(2小时)ng/10⁶个细胞,但通过电子显微镜观察,在与过量5-HT孵育后未观察到致密小体。预先用氟西汀孵育后,这种摄取受到28%的抑制,用利血平孵育后,细胞中60%的5-HT被释放。Meg-01细胞与5-HT孵育后,5-羟吲哚乙酸(5-HIAA)浓度增加(孵育1或2小时之前和之后,分别为0和17.6±2.1或19.9±1.9 ng/10⁶个细胞)。该研究表明:(1)巨核细胞前体、巨核母细胞中5-HT摄取能力良好,且摄取能力受利血平和氟西汀影响;(2)然而,巨核母细胞中储存胺的能力发育不完善;(3)巨核母细胞可能含有将5-HT转化为5-HIAA的单胺氧化酶(MAO)。

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