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体外环孢素毒性。维拉帕米的作用。

In vitro cyclosporine toxicity. The effect of verapamil.

作者信息

Scoble J E, Senior J C, Chan P, Varghese Z, Sweny P, Moorhead J F

机构信息

Renal Research Unit, Royal Free Hospital, London.

出版信息

Transplantation. 1989 Apr;47(4):647-50. doi: 10.1097/00007890-198904000-00016.

Abstract

The epithelial cell line LLC-PK1, which expresses many proximal tubular characteristics, was used to investigate the relationship between calcium, the calcium channel blocker verapamil, and cyclosporine toxicity. The LLC-PK1 cells took up cyclosporine when this was added in a concentration of 2 micrograms/ml, and this uptake was maximal at 30 min (112 +/- 3 ng cyclosporine/mg cell protein). At 12 micrograms/ml it inhibited the sodium glucose cotransporter, as assessed by phlorizin-inhibitable 14C-alpha-methyl glucopyranoside (alpha-MG) uptake (control 37.2 +/- 6.3, 12 micrograms/ml 21.2 +/- 1.1 mumol/hr/mg protein). Cyclosporine at 2 micrograms/ml did not affect cell growth after 5 days (control 945 +/- 60 micrograms cell protein per 25 cm2 flask, 2 micrograms/ml cyclosporine/ml 1046 +/- 32 micrograms protein/flask), even in the presence of 7.6 mM ionized calcium (862 +/- 37 micrograms protein/flask). Cyclosporine at 12 micrograms/ml inhibited cell growth (286 +/- 27 micrograms protein/flask), and raising the ambient ionized calcium concentration to 7.6 mM reduced cell growth further (91 +/- 6 micrograms protein/flask). Cyclosporine at concentrations of 2 and 12 micrograms/ml produced increasing cell vacuolation, as seen in vivo. Short-term uptake of 2 micrograms/ml cyclosporine could be inhibited by 1.0 mM and 0.5 mM verapamil (49 +/- 9.5 and 71 +/- 6.4 ng cyclosporine/mg cell protein, respectively, at 30 min). However, in the presence of 2 micrograms/ml cyclosporine 0.1 mM verapamil was toxic to the cells grown over five days (44 +/- 5 micrograms protein/flask). At 0.01 mM verapamil was not toxic to cell growth (921 +/- 29 micrograms protein/flask), but raising the medium calcium to 7.6 mM reduced cell growth (652 +/- 96 micrograms/ml). Inhibition of cyclosporine uptake did not occur with 0.01 mm verapamil (control 145.6 +/- 12.3 vs. 0.01 mM verapamil 150.4 +/- 3.8 ng cyclosporine/mg cell protein). The LLC-PK1 cell line represents a good in vitro model for cyclosporine renal tubular toxicity, as the in vivo observation of glycosuria and proximal tubular cell vacuolation in cyclosporine nephrotoxicity can be reproduced. In vitro this is shown to be associated with inhibition of sodium-dependent glucose cotransport. Verapamil inhibited cyclosporine uptake, but only at concentrations that were toxic to the cells. Verapamil potentiated rather than reduced the increased cyclosporine toxicity produced by increasing the medium calcium concentration. The suggested protective effect of verapamil against cyclosporine nephrotoxicity is therefore unlikely to be due to inhibition of cyclosporine uptake or of calcium entry into proximal tubular cells.

摘要

上皮细胞系LLC-PK1表达许多近端肾小管特征,被用于研究钙、钙通道阻滞剂维拉帕米与环孢素毒性之间的关系。当以2微克/毫升的浓度添加环孢素时,LLC-PK1细胞会摄取它,这种摄取在30分钟时达到最大值(112±3纳克环孢素/毫克细胞蛋白)。在12微克/毫升时,它抑制了钠葡萄糖共转运体,这通过根皮苷可抑制的14C-α-甲基吡喃葡萄糖苷(α-MG)摄取来评估(对照组为37.2±6.3,12微克/毫升时为21.2±1.1微摩尔/小时/毫克蛋白)。2微克/毫升的环孢素在5天后不影响细胞生长(每25平方厘米培养瓶中对照组为945±60微克细胞蛋白,2微克/毫升环孢素组为1046±32微克蛋白/培养瓶),即使在存在7.6毫摩尔离子钙的情况下(862±37微克蛋白/培养瓶)。12微克/毫升的环孢素抑制细胞生长(286±27微克蛋白/培养瓶),将环境离子钙浓度提高到7.6毫摩尔会进一步降低细胞生长(91±6微克蛋白/培养瓶)。2微克/毫升和12微克/毫升浓度的环孢素会导致细胞空泡化增加,这与体内观察到的情况一致。2微克/毫升环孢素的短期摄取可被1.0毫摩尔和0.5毫摩尔的维拉帕米抑制(30分钟时分别为49±9.5和71±6.4纳克环孢素/毫克细胞蛋白)。然而,在存在2微克/毫升环孢素的情况下,0.1毫摩尔的维拉帕米对培养5天的细胞有毒性(44±5微克蛋白/培养瓶)。在0.01毫摩尔时,维拉帕米对细胞生长无毒(921±29微克蛋白/培养瓶),但将培养基钙提高到7.6毫摩尔会降低细胞生长(652±96微克/毫升)。0.01毫摩尔的维拉帕米不会抑制环孢素摄取(对照组为145.6±12.3,0.01毫摩尔维拉帕米组为150.4±3.8纳克环孢素/毫克细胞蛋白)。LLC-PK1细胞系是环孢素肾小管毒性的良好体外模型,因为环孢素肾毒性中体内观察到的糖尿和近端肾小管细胞空泡化可以在体外重现。在体外,这表现为与抑制钠依赖性葡萄糖共转运有关。维拉帕米抑制环孢素摄取,但仅在对细胞有毒性的浓度下。维拉帕米增强而非降低了因提高培养基钙浓度而产生的环孢素毒性增加。因此,维拉帕米对环孢素肾毒性的所谓保护作用不太可能是由于抑制环孢素摄取或钙进入近端肾小管细胞。 }

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