Instituto de Agroquímica y Tecnología de Alimentos (IATA-CSIC), Apdo. 73, 46100 Burjassot (Valencia), Spain.
Toxicol Lett. 2011 Jul 28;204(2-3):127-33. doi: 10.1016/j.toxlet.2011.04.023. Epub 2011 Apr 30.
Arsenic is a pollutant widely distributed in the environment. There are numerous studies on the toxicity of trivalent arsenic forms As(III), MMA(III), and DMA(III), but few data are available on the processes of digestion and absorption of these arsenic species and the mechanisms involved are unknown. The present study evaluated the processes involved in intestinal absorption of trivalent arsenic species, using the Caco-2 cell model as system. The apparent permeability values obtained for As(III) in apical-basolateral direction (4.6±0.3)×10(-6)cm/s, showing moderate intestinal absorption. Transport of MMA(III) [P(app)=(7.0±0.9)×10(-6)cm/s] and DMA(III) [P(app)=(10.6±1.4)×10(-6)cm/s] is greater than that of As(III). The cellular retention of As(III) (0.9-2.4%) was less than that observed for MMA(III) (30%) and DMA(III) (35%). A substantial paracellular component was observed in transport of As(III) and MMA(III), whereas DMA(III) does not use this pathway for its absorption. For all the trivalent species, transport depends on temperature, with an active transcellular component for MMA(III) and DMA(III). Variations in pH do not affect transport of these species. The presence of GSH and green tea extract significantly alters transport of As(III) across Caco-2 cells.
砷是一种广泛分布于环境中的污染物。目前已有大量研究关注三价砷形态(As(III)、MMA(III) 和 DMA(III))的毒性,但关于这些砷形态的消化和吸收过程的数据很少,其涉及的机制也尚不清楚。本研究采用 Caco-2 细胞模型评估了三价砷形态的肠道吸收过程。结果表明,As(III)在顶-底方向的表观渗透率值为 4.6±0.3)×10(-6)cm/s,表明其具有中等程度的肠道吸收能力。MMA(III) [P(app)=(7.0±0.9)×10(-6)cm/s]和 DMA(III) [P(app)=(10.6±1.4)×10(-6)cm/s]的转运高于 As(III)。As(III)在细胞内的滞留率(0.9-2.4%)低于 MMA(III)(30%)和 DMA(III)(35%)。As(III)和 MMA(III)的转运存在大量的细胞旁途径,而 DMA(III)则不通过这种途径进行吸收。对于所有三价形态,转运都依赖于温度,MMA(III)和 DMA(III)的转运具有主动的细胞内途径。pH 值的变化不会影响这些形态的转运。GSH 和绿茶提取物的存在显著改变了 As(III)在 Caco-2 细胞中的转运。