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Impact of Environmental Pollutant Cadmium on the Establishment of a Cancer Stem Cell Population in Breast and Hepatic Cancer

机译:环境污染物镉对乳腺癌癌症干细胞群体的影响

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摘要

Cadmium, a heavy metal pollutant, causes cancer. The existence of cancer stem cells (CSCs) in tumors is widely considered to be the reason for the recurrence and treatment failure of cancer. Increasing evidence has confirmed that under certain conditions non-CSCs could be converted into CSCs. The impact of cadmium on the development of CSC lineage in the bulk tumor cell population is not yet studied. The aim of this study was to evaluate the effect of cadmium on the conversion of non-CSCs to CSCs and the identification of CSCs based on the concurrent monitoring of multiple CSC markers. High-content monitoring of molecular markers was performed using quantum dot (QD) nanoprobes and an acousto-optical tunable filter (AOTF)-based imaging device. Cadmium treatment significantly increased the CSC population in MCF-7 and HepG2 cell lines. The cadmium-induced CSCs were identified by a concurrent analysis of stem-cell markers, namely, CD44, CD24, CD133, and ALDH1. Moreover, increased m-RNA expression of CD44, ALDH1, and CD133 and protein expression of p-Ras, p-Raf-1, p-MEK-1, and p-ERK-1 were observed in the cadmium-treated MCF-7 and HepG2 cells. This study demonstrates that cadmium induces the gene expression of CSC markers in the breast and liver cancer cell lineage and promotes the conversion of non-CSCs to CSCs.
机译:镉,一种重金属污染物,导致癌症。肿瘤中癌症干细胞(CSC)的存在被广泛认为是癌症复发和治疗失败的原因。越来越多的证据证实,在某些条件下,非CSC可以转化为CSC。尚未研究镉对散装肿瘤细胞群中CSC谱系发展的影响。本研究的目的是评估镉对CSC对CSC的转化的影响以及基于对多个CSC标记的并发监测的CSCs鉴定。使用量子点(QD)纳米素和分子光学可调滤波器(AOTF)的成像装置进行分子标记的高含量监测。镉治疗在MCF-7和HepG2细胞中显着增加了CSC种群。通过对茎细胞标记物的同时分析,即CD44,CD24,CD133和ALDH1鉴定镉诱导的CSCs。此外,在镉处理的MCF-7中观察到增加CD44,AlDH1和CD133和P-RAS,P-RAF-1,P-MEK-1和P-ERK-1的蛋白质表达的M-RNA表达。和hepg2细胞。本研究表明,镉诱导CSC标志物在乳腺和肝癌细胞谱系中的基因表达,并促进非CSCS对CSC的转化。

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