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维拉帕米对氯化汞诱导的大鼠肾小球损伤的保护作用。

Verapamil protection against mercuric chloride-induced renal glomerular injury in rats.

作者信息

Girardi G, Elías M M

机构信息

Facultad de Ciencias Bioquímicas y Farmacéuticas, Universidad Nacional de Rosario, Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Argentina.

出版信息

Toxicol Appl Pharmacol. 1998 Oct;152(2):360-5. doi: 10.1006/taap.1998.8454.

Abstract

We have examined the effects of the calcium channel blocker verapamil on the renal glomerular structural damage produced by mercuric chloride in rats. Verapamil (75 micrograms/kg body wt iv) was administered 30 min prior to mercuric chloride injection (HgCl2, 5 mg/kg body wt sc). Verapamil prevented the glomerular proteinuria observed in HgCl2-treated rats. Isolated glomeruli from mercury-treated rats 1 h after injection presented a diminished cross-sectional area as compared with control glomeruli (control [micron2], 26,310 +/- 2545; HgCl2 [micron2], 18,474 +/- 1828) and increased glomerular calcium content (control, 23 +/- 6 nmol/mg protein; HgCl2, 43 +/- 7 nmol/mg protein). Verapamil pretreatment prevented glomerular cross-sectional area (GCSA) diminution and glomerular calcium content rise (GCSA [micron2] Vp + Hg, 28,281 +/- 4654, Ca2+ [nmol/mg protein] Vp + Hg, 18 +/- 5). Renal sections prepared for immunohistochemical detection and histochemical analysis showed increased deposits of fibronectin and lipids and enhanced cellularity in glomerular structures from HgCl2-treated rats. Renal sections from animals pretreated with verapamil showed fibronectin and lipid contents not different from control sections and their histological studies did not show any changes when compared with control. Verapamil pretreatment also protected glomeruli from enhanced leukocyte content (myeloperoxidase activity/mg protein): control, 59 +/- 7; HgCl2, 134 +/- 10; Vp + Hg, 79 +/- 11). HgCl2 also contracts GCSA in vitro; Vp prevented this GCSA diminution. The results described in this study indicate that mercuric chloride nephrotoxicity may be associated not only with changes in renal glomerular haemodynamics, but also with a direct effect on glomerular cells.

摘要

我们研究了钙通道阻滞剂维拉帕米对氯化汞所致大鼠肾小球结构损伤的影响。在注射氯化汞(HgCl₂,5mg/kg体重,皮下注射)前30分钟静脉注射维拉帕米(75μg/kg体重)。维拉帕米可预防HgCl₂处理大鼠中观察到的肾小球蛋白尿。注射后1小时,从汞处理大鼠分离的肾小球与对照肾小球相比,横截面积减小(对照[平方微米],26310±2545;HgCl₂[平方微米],18474±1828),且肾小球钙含量增加(对照,23±6nmol/mg蛋白质;HgCl₂,43±7nmol/mg蛋白质)。维拉帕米预处理可预防肾小球横截面积(GCSA)减小和肾小球钙含量升高(GCSA[平方微米]Vp + Hg,28281±4654,Ca²⁺[nmol/mg蛋白质]Vp + Hg,18±5)。为进行免疫组织化学检测和组织化学分析而制备的肾切片显示,HgCl₂处理大鼠的肾小球结构中纤连蛋白和脂质沉积增加,细胞增多。用维拉帕米预处理的动物的肾切片显示纤连蛋白和脂质含量与对照切片无差异,与对照相比,其组织学研究未显示任何变化。维拉帕米预处理还可保护肾小球免受白细胞含量增加的影响(髓过氧化物酶活性/mg蛋白质):对照,59±7;HgCl₂,134±10;Vp + Hg,79±11)。HgCl₂在体外也会使GCSA缩小;维拉帕米可防止这种GCSA缩小。本研究中描述的结果表明,氯化汞肾毒性可能不仅与肾小球血流动力学变化有关,还与对肾小球细胞的直接作用有关。

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