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顺铂对原代培养的肾近端小管细胞及刷状缘膜囊泡中钠偶联摄取和膜流动性的调节作用。

Modulation of sodium-coupled uptake and membrane fluidity by cisplatin in renal proximal tubular cells in primary culture and brush-border membrane vesicles.

作者信息

Courjault-Gautier F, Le Grimellec C, Giocondi M C, Toutain H J

机构信息

Département Sécurité du Médicament, Rhône-Poulenc Rorer SA, Vitry sur Seine, France.

出版信息

Kidney Int. 1995 Apr;47(4):1048-56. doi: 10.1038/ki.1995.151.

Abstract

The proximal tubule appears to be the main target for the adverse effects of cis-diamminedichloroplatinum (II) (cDDP). We evaluated the early effects of cDDP at concentrations (3 to 67 microM) lower that those which alter cell viability, on three apical transport systems and on the physical state of the brush border membrane (BBM) in rabbit proximal tubule (RPT) cells in primary culture. The maximal effect, corresponding to a 30% decrease in Na(+)-coupled uptake of phosphate (Pi) and alpha-methylglucopyranoside (MGP) and a twofold increase in Na(+)-coupled alanine uptake, was obtained at 17 microM (5 micrograms/ml) cDDP and occurred through a modification of their affinity. At this concentration, cDDP increased BBM fluidity and decreased the BBM cholesterol content by 28%, without increasing the permeability of tight junctions. To clarify the role of cDDP-induced increase in BBM fluidity on alterations of Na(+)-coupled uptake, these parameters were also investigated in BBM vesicles isolated from rabbit renal cortex directly exposed to cDDP. cDDP induced a concentration-dependent inhibition of Na(+)-coupled uptake of MGP, Pi and alanine in BBM vesicles from the renal cortex, associated with a decrease in protein sulfhydryl content, without modifying BBM fluidity. Our findings strongly suggest that the cDDP-induced increase in BBM fluidity in RPT cells results from an indirect mechanism, possibly an alteration of cholesterol metabolism, and did not play a major role in the cDDP-induced inhibition of Na+/Pi and Na+/glucose cotransport systems that may be mainly mediated through a direct chemical interaction with essential sulfhydryl groups of the transporters.

摘要

近端小管似乎是顺二氯二氨铂(II)(cDDP)产生不良反应的主要靶点。我们评估了cDDP在低于改变细胞活力浓度(3至67微摩尔)时,对原代培养的兔近端小管(RPT)细胞的三种顶端转运系统以及刷状缘膜(BBM)物理状态的早期影响。在17微摩尔(5微克/毫升)cDDP时获得最大效应,表现为钠耦联的磷酸盐(Pi)和α-甲基吡喃葡萄糖苷(MGP)摄取减少30%,钠耦联的丙氨酸摄取增加两倍,且是通过改变它们的亲和力实现的。在此浓度下,cDDP增加了BBM的流动性,使BBM胆固醇含量降低28%,而未增加紧密连接的通透性。为阐明cDDP诱导的BBM流动性增加对钠耦联摄取改变的作用,还对直接暴露于cDDP的兔肾皮质分离出的BBM囊泡中的这些参数进行了研究。cDDP对肾皮质BBM囊泡中钠耦联的MGP、Pi和丙氨酸摄取产生浓度依赖性抑制,同时蛋白质巯基含量降低,而未改变BBM的流动性。我们的研究结果强烈表明,RPT细胞中cDDP诱导的BBM流动性增加是由间接机制引起的,可能是胆固醇代谢改变,并且在cDDP诱导的钠/磷酸盐和钠/葡萄糖共转运系统抑制中不起主要作用,这种抑制可能主要是通过与转运蛋白的必需巯基直接发生化学相互作用介导的。

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