四膜虫
微量金属
质量细胞仪
流式细胞术
化学
跟踪(心理语言学)
金属
环境化学
生物
生物化学
分子生物学
有机化学
表型
语言学
哲学
基因
作者
Qi Wu,Shiyang Cheng,Wenchao Zhang,Jing Zhao,Liu Zhang,Meilin Lv,Junjie Ma,Jie Ding,Shunhao Wang,Xuehan Zheng,Jie Gao,Rui Liu,Yongguang Yin,Jianbo Shi,Guangbo Qu,Guibin Jiang
标识
DOI:10.1021/acs.est.4c12818
摘要
The uptake of heavy metals by unicellular organisms can lead to the bioaccumulation of these metals in higher organisms, detrimentally affecting organismal health and ultimately impacts the ecosystems. By studying the uptake and accumulation of heavy metals in unicellular organisms, we gain insights into potential risks associated with low-dose heavy metal exposure in aquatic environments. Thus, to investigate the accumulation characteristics of Mo, Ag, Cd, Sn, Sb, Hg, Tl, and Pb mixtures in single Tetrahymena thermophila cells, we developed a label-free approach for the simultaneous absolute quantification of multiple metals in a single cell using mass cytometry. Our results demonstrated the dynamic changes in metal concentrations in T. thermophila, and the competition between metals in uptake and excretory pathways resulted in heterogeneous accumulation and bioconcentration of these metals. Additionally, our findings revealed the limited capacity of T. thermophila to excrete Cd and Hg, suggesting a higher risk for T. thermophila cells when exposed to Cd and Hg over an extended period. Therefore, the current study provides valuable data for a more comprehensive understanding of the impact of low-dose heavy metals on aquatic ecosystems.
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