无机砷对骨髓造血细胞的影响:对凋亡和Sca-1/c-Kit阳性人群的影响

Q4 Biochemistry, Genetics and Molecular Biology
Jacintha Archana Pereira, Prosun Das, Malay Chaklader, Sumanta Chatterjee, Pratima Basak, Samaresh Chaudhuri, Sujata Law
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引用次数: 0

摘要

细胞凋亡、细胞增殖和细胞分化是一个平衡的分子过程,在环境损害中可能改变其模式。砷是一种环境污染物,在地壳中含量第20位,在海水中含量第14位,在人体中含量第12位。全世界有数百万人长期接触砷,这通常是由于地下水中自然存在的砷。骨髓内的造血干细胞是所有造血细胞系的来源,对整个生命的组织发育至关重要。在这项实验研究中,我们评估了砷对血液和血液形成细胞的影响,通过改变其细胞形态,免疫功能能力,骨髓CD34阳性干细胞/祖细胞的改变以及Sca-1, c-Kit双阳性原始干细胞群体表型的变化。该研究表明,砷对骨髓和造血干细胞及其免疫能力和死亡过程的上调有显著影响,所有这些都表明分化受损,表明砷毒性使其前体出现失调。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of inorganic arsenic on bone marrow hematopoietic cells: an emphasis on apoptosis and Sca-1/c-Kit positive population.

Apoptosis, proliferation and differentiation are balanced molecular processes which may alter their pattern during environmental insults. Arsenic is an environmental pollutant, ranks 20(th) in abundance in the earth crust, 14(th) in sea water and 12(th) in the human body. Millions of people worldwide are chronically exposed to arsenic often due to naturally occurring arsenic in ground water. Hematopoietic stem cells within the bone marrow are the source of all haematopoietic cell lineages and are essential for tissue development throughout the life. In this experimental study, we have evaluated the impact of arsenic, on blood and blood forming cells by the changes in their cellular morphology, immune functional capacity, alteration of bone marrow CD34 positive stem/progenitors and changes in the phenotype of Sca-1, c-Kit dual positive primitive stem cell population. The study revealed that arsenic has a significant effect on bone marrow and hematopoietic stem cells, their immune capacity and upregulation of death process, all indicative of impairment in differentiation suggesting presence of deregulation in their precursors by arsenic toxicity.

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来源期刊
Journal of Stem Cells
Journal of Stem Cells Medicine-Transplantation
CiteScore
0.10
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