Guo W X, Chakrabarti S, Malick M A, Côté M G
Département de médecine du travail et d'hygiène du milieu, Faculté de médecine, Université de Montréal, Québec, Canada.
Arch Biochem Biophys. 1990 Nov 15;283(1):206-9. doi: 10.1016/0003-9861(90)90632-9.
The effects of S-(2-chloroethyl)-DL-cysteine (CEC) (a potent nephrotoxin) on the transport of p-aminohippurate ion (PAH) in renal plasma membrane vesicles isolated from rat renal cortex were studied in vitro. The uptake of PAH was significantly reduced in a dose-dependent manner in both the brush border membrane (BBM) and basolateral membrane (BLM) vesicles. These results demonstrate that CEC is capable of interfering with the accumulation of PAH (a model organic anion for renal tubular transport system) by both energy-independent and energy-dependent carrier-mediated transport processes. Probenecid, a typical inhibitor of the organic anion transport system, showed the highest inhibition of PAH uptake in both the membranes vesicles. These data indirectly suggest that transport by renal tubular cells may result in the accumulation of CEC in renal cellular organelles eventually in toxic concentrations. Thus, CEC showed both dose- and time-dependent inhibition of the activities of gamma-glutamyl transferase (a BBM marker enzyme) and Na+, K(+)-ATPase (a BLM marker enzyme), while no such inhibition was noticed with probenecid. Pretreatment with probenecid prevented the inhibition of the gamma-glutamyl transferase activity due to CEC in BBM, but failed to do so for the Na+,K(+)-ATPase activity in BLM vesicles. Thus, the data suggest that the inhibition of the activities of these membrane-specific enzymes by CEC could lead to the initial development of its nephrotoxicity.
体外研究了S-(2-氯乙基)-DL-半胱氨酸(CEC,一种强效肾毒素)对从大鼠肾皮质分离的肾质膜囊泡中对氨基马尿酸离子(PAH)转运的影响。在刷状缘膜(BBM)囊泡和基底外侧膜(BLM)囊泡中,PAH的摄取均以剂量依赖性方式显著降低。这些结果表明,CEC能够通过能量非依赖性和能量依赖性载体介导的转运过程干扰PAH(肾小管转运系统的模型有机阴离子)的积累。丙磺舒是有机阴离子转运系统的典型抑制剂,在两种膜囊泡中对PAH摄取的抑制作用最强。这些数据间接表明,肾小管细胞的转运可能导致CEC在肾细胞器中最终以有毒浓度积累。因此,CEC对γ-谷氨酰转移酶(一种BBM标记酶)和Na+、K(+)-ATP酶(一种BLM标记酶)的活性表现出剂量和时间依赖性抑制,而丙磺舒未观察到这种抑制作用。用丙磺舒预处理可防止CEC对BBM中γ-谷氨酰转移酶活性的抑制,但对BLM囊泡中的Na+、K(+)-ATP酶活性则无效。因此,数据表明CEC对这些膜特异性酶活性的抑制可能导致其肾毒性的初步发展。