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银鲫肝脏金属硫蛋白的反应和凋亡活性证明了钴和锌从水性纳米复合材料中的释放。

Responses of hepatic metallothioneins and apoptotic activity in Carassius auratus gibelio witness a release of cobalt and zinc from waterborne nanoscale composites.

作者信息

Falfushynska Halina, Gnatyshyna Lesya, Turta Olga, Stoliar Oksana, Mitina Natalia, Zaichenko Alexander, Stoika Rostyslav

机构信息

Ternopil National Pedagogical University (TNPU), Ternopil, Ukraine; I.Ya. Horbachevsky Ternopil State Medical University, Ternopil, Ukraine.

Ternopil National Pedagogical University (TNPU), Ternopil, Ukraine.

出版信息

Comp Biochem Physiol C Toxicol Pharmacol. 2014 Mar;160:66-74. doi: 10.1016/j.cbpc.2013.11.009. Epub 2013 Dec 5.

Abstract

The main goal of this study was to evaluate the ability of fish Carassius auratus tissues to release cobalt (Co) and zinc (Zn) cations present in the applied Co- and Zn-containing nanoscale composites (NCs). Male fish was subjected to 14day long action of Co- and Zn-NCs, as well as of Co(2+) and Zn(2+) or polymeric substance (PS) used for the NC preparation and derived from the vinylpyrrolidone. 50μg∙L(-1) of Co and 100μg∙L(-1) of Zn were applied either as a salt or a nanocomposite. Both Co and Co-NC increased (3.1 and 2.3 times, respectively) concentration of total Co, metallothionein-related Co (3.7 and 6.6 times, respectively) and thiols (by 71 and 95%, respectively), and caspase-3 activity (2.2 and 3.7 times, respectively) in the fish liver. At the same time, Co and Co-NC decreased glutathione level (1.8 and 1.9 times, respectively) and activated vitellogenesis (5.1 and 9.9 times, respectively) in the fish liver. Both Zn and Zn-NC increased markedly concentrations of metallothionein-related Zn (2.4 and 2.9 times, respectively) and Cu (2.8 and 3.2 times, respectively), and decreased metallothionein-related thiol (2.5 and 4.2 times, respectively), oxyradical (by 30.4 and 44.2%, respectively), and caspase-3 (3.0 and 5.3 times, respectively) levels in the fish liver. These peculiarities are common for metal and metal-NC and witness a release of metal from NS in fish organism. The differences in the levels of DNA strand breaks, biotransformation enzymes and total Zn levels in the liver were dependent on the kind of exposure.

摘要

本研究的主要目标是评估鲫鱼组织释放应用的含钴和含锌纳米复合材料(NCs)中钴(Co)和锌(Zn)阳离子的能力。雄性鱼接受了为期14天的钴和锌纳米复合材料、钴离子(Co(2+))和锌离子(Zn(2+))或用于制备纳米复合材料且源自乙烯基吡咯烷酮的聚合物质(PS)的作用。以盐或纳米复合材料形式施加50μg∙L(-1)的钴和100μg∙L(-1)的锌。钴和钴纳米复合材料均使鱼肝中总钴浓度(分别增加3.1倍和2.3倍)、金属硫蛋白相关钴浓度(分别增加3.7倍和6.6倍)、硫醇水平(分别增加71%和95%)以及半胱天冬酶-3活性(分别增加2.2倍和3.7倍)升高。同时,钴和钴纳米复合材料使鱼肝中谷胱甘肽水平降低(分别降低1.8倍和1.9倍)并激活卵黄生成(分别增加5.1倍和9.9倍)。锌和锌纳米复合材料均显著提高金属硫蛋白相关锌浓度(分别增加2.4倍和2.9倍)和铜浓度(分别增加2.8倍和3.2倍),并降低鱼肝中金属硫蛋白相关硫醇水平(分别降低2.5倍和4.2倍)、氧自由基水平(分别降低30.4%和44.2%)以及半胱天冬酶-3水平(分别降低3.0倍和5.3倍)。这些特性在金属和金属纳米复合材料中较为常见,证明了纳米材料中的金属在鱼体内的释放。肝脏中DNA链断裂水平、生物转化酶水平和总锌水平的差异取决于暴露类型。

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