Wu G
Biochemical Section, National Institute for Minamata Disease, Kumamoto, Japan.
Arch Toxicol. 1995;70(1):34-42. doi: 10.1007/s002040050246.
The uptake of methyl mercury (MeHg) by isolated rat erythrocytes was studied at 37 degrees C using MeHg-cysteine (MeHgCySH), MeHg-glutathione (MeHgGSH), MeHg-mercaptalbumin (MeHgMASH) and the mixture of MeHgCySH with MeHgGSH, MeHgCySH with MeHgMASH, MeHgGSH with MeHgMASH at different MeHg concentrations. The measured MeHg concentrations were analyzed according to the Akaike's information criterion in order to determine the suitable compartment model. After determining a two-compartment model, a model-independent two-compartment model was developed from the kinetics of uptake of MeHg at a concentration of 1 mmol MeHg/l packed erythrocytes using MeHgCySH, MeHgGSH and MeHgMASH, respectively. The developed two-compartment model was validated by predicting the kinetics of uptake of MeHg by rat erythrocytes at different MeHg concentrations and different mixtures of MeHg-complexes. Then, the predicted values were compared with the measured values. The results suggested: 1) MeHg uptake appeared suitable to be described by a two-compartment model, while using MeHgGSH, MeHgMASH, MeHgCySH at lower concentrations and the mixtures of MeHg-complexes; 2) MeHgCySH uptake was slowest among three kinds of MeHg-complexes, although a postulated cysteine-facilitated MeHgCySH transport system might exist in erythrocyte membrane; 3) the mixture of MeHg-complexes might facilitate MeHgCySH uptake; 4) there might be a second MeHg intracellular compartment in rat erythrocytes.
在37摄氏度下,使用甲基汞-半胱氨酸(MeHgCySH)、甲基汞-谷胱甘肽(MeHgGSH)、甲基汞-巯基白蛋白(MeHgMASH)以及MeHgCySH与MeHgGSH、MeHgCySH与MeHgMASH、MeHgGSH与MeHgMASH的混合物,在不同甲基汞浓度下研究了分离的大鼠红细胞对甲基汞(MeHg)的摄取。根据赤池信息准则对测得的甲基汞浓度进行分析,以确定合适的房室模型。确定两房室模型后,分别使用MeHgCySH、MeHgGSH和MeHgMASH,从浓度为1 mmol MeHg/升压积红细胞的甲基汞摄取动力学建立了一个与模型无关的两房室模型。通过预测不同甲基汞浓度和不同甲基汞复合物混合物条件下大鼠红细胞对甲基汞的摄取动力学,对建立的两房室模型进行验证。然后,将预测值与测量值进行比较。结果表明:1)当使用较低浓度的MeHgGSH、MeHgMASH、MeHgCySH以及甲基汞复合物混合物时,甲基汞摄取似乎适合用两房室模型描述;2)在三种甲基汞复合物中,MeHgCySH的摄取最慢,尽管红细胞膜中可能存在假定的半胱氨酸促进的MeHgCySH转运系统;3)甲基汞复合物混合物可能促进MeHgCySH摄取;4)大鼠红细胞中可能存在第二个甲基汞细胞内房室。