Isolated glomeruli of the Atlantic hagfish Myxine glutinosa as an alternative in vitro model to study glomerular protein metabolism in pharmaco-toxicology of anticancer drugs.

S Kastner, L M Fels, S Piippo, H Stolte
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Abstract

This study was designed to validate an alternative in vitro system with isolated glomeruli of the Atlantic hagfish Myxine glutinosa as a model to study alterations in glomerular protein metabolisms in pharmaco-toxicology of anticancer drugs. A morphometric characterization of the glomeruli of Myxine glutinosa reveals a calculated glomerular volume of 180 nl/glomerulus. The glomerular extracellular volume, measured as inulin space, is 38.5 nl/glomerulus. Total glomerular protein content of Myxine glutinosa amounts to 3.56 micrograms/glomerulus and total DNA content to 0.44 microgram/glomerulus. Metabolic properties, estimated as glomerular protein synthesis, are comparable with mammalian glomeruli. The glomeruli of Myxine glutinosa are viable in a tissue culture for up to 12 hr. The incorporation rate of radiolabeled amino acids into glomerular, acid-precipitable proteins is almost identical to that of rats (e.g. Myxine glutinosa 1091 +/- 98 DPM/micrograms DNA vs. rat 1340 +/- 84 DPM/micrograms DNA after 4 hr incubation). To evaluate how nephrotoxic substances affect glomerular metabolism in this model, the anticancer drug Adriamycin (ADR) was used to experimentally induce a glomerular lesion. ADR caused an increase in glomerular protein synthesis in isolated glomeruli of Myxine glutinosa, which is in accordance with data found in rats. Cisplatin, in contrast, known to mainly interfere with tubular integrity, had no effect on glomerular protein synthesis, confirming the specificity of the model. The isolated glomeruli of Myxine glutinosa are suggested as a valid alternative multicellular in vitro system for studying alterations in glomerular metabolism under pharmaco-toxicological conditions and for the evaluation of specific target-cell toxicity of selected nephrotoxins.

以大西洋盲鳗离体肾小球Myxine glutinosa为体外模型,研究肾小球蛋白代谢在抗癌药物毒理学中的作用。
本研究以大西洋盲鳗(Myxine glutinosa)的离体肾小球为模型,验证了另一种体外系统,以研究抗癌药物药物毒理学中肾小球蛋白代谢的变化。黏液粘多糖肾小球的形态特征显示计算出的肾小球体积为180 nl/肾小球。以菊粉间隙测量的肾小球细胞外体积为38.5 nl/肾小球。粘多糖的肾小球总蛋白含量为3.56微克/肾小球,总DNA含量为0.44微克/肾小球。代谢特性,估计肾小球蛋白合成,与哺乳动物肾小球相当。粘多糖的肾小球在组织培养中能存活12小时。放射性标记氨基酸进入肾小球的酸沉淀蛋白的掺入率与大鼠几乎相同(例如,培养4小时后,粘多糖1091 +/- 98 DPM/微克DNA与大鼠1340 +/- 84 DPM/微克DNA)。为了评估肾毒性物质在该模型中对肾小球代谢的影响,我们使用抗癌药物阿霉素(ADR)实验性诱导肾小球病变。ADR引起粘多糖(Myxine glutinosa)离体肾小球蛋白合成增加,这与在大鼠中发现的数据一致。相比之下,已知主要干扰肾小管完整性的顺铂对肾小球蛋白合成无影响,证实了该模型的特异性。黏液粘多糖(Myxine glutinosa)的离体肾小球被认为是一种有效的多细胞体外系统,可用于研究药物毒理学条件下肾小球代谢的变化,并评估选定肾毒素的特异性靶细胞毒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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