首页> 外文期刊>Aquatic Toxicology >Hemocyte responses of the thick shell mussel Mytilus coruscus exposed to nano-TiO2 and seawater acidification
【24h】

Hemocyte responses of the thick shell mussel Mytilus coruscus exposed to nano-TiO2 and seawater acidification

机译:纳米TiO2接触海水酸化的厚壳贻贝贻贝的血细胞响应。

获取原文
获取原文并翻译 | 示例
       

摘要

With increasing production from nanotechnology industries, nanomaterials are inevitably released into the aquatic environment, thereby posing a potential risk to aquatic organisms. Thus, concerns have been raised on the potential ecotoxicological effect of nanoparticle. Furthermore, the ecotoxicological consequences caused by the interaction of nanoparticles with other environmental stresses, such as seawater acidification on marine animals, have not been evaluated. In particular, whether acidification enhances the susceptibility to nanoparticles in bivalves needs to be evaluated. In the present study, we investigated the combined effects of low pH and nanoscale titanium dioxide (nano-TiO2) on some immune parameters of hemocytes in the mussel Mytilus coruscus by flow cytometry under six combinations of two pH values (7.3 and 8.1) and three nano-TiO2 concentrations (0, 2.5, and 10 mg L-1) for 14 d. Afterward, the mussels were shifted to normal conditions without nano-TiO2 at pH 8.1 for 7 d further to test their recovery from the multiple stresses. Total hemocyte count (THC), phagocytosis (Pha), esterase (Est), and lysosomal content (Lyso) decreased under low pH and high nano-TiO2 concentration conditions, whereas hemocyte mortality (HM) and reactive oxygen species (ROS) increased with nano-TiO2 concentrations under low pH conditions. The interactive effects between pH and nano-TiO2 were observed at the latter part of the exposure experiment (7 and 14 d) in most hemocyte parameters. Nano-TiO2 influenced the immune functions of mussel more severely than low pH. Slight recovery from the combined stresses was observed for HM, THC, Pha, and Lyso, but significant carry-over effects of nano-TiO2 and low pH were still observed. This study demonstrated that both low pH and high concentration of nano-TiO2 had negative effects on mussels, and these effects still acted for some time even though the mussels were already out of such stressors. (C) 2016 Elsevier B.V. All rights reserved.
机译:随着纳米技术产业生产的增加,纳米材料不可避免地释放到水生环境中,从而对水生生物构成潜在的风险。因此,人们对纳米颗粒的潜在生态毒理作用提出了关注。此外,尚未评估由纳米颗粒与其他环境压力(例如海洋动物的海水酸化)相互作用引起的生态毒理后果。特别地,需要评估酸化是否增强了双壳类动物对纳米颗粒的敏感性。在本研究中,我们通过流式细胞术在两种pH值(7.3和8.1)和三种pH值的六种组合下,研究了低pH和纳米级二氧化钛(nano-TiO2)对贻贝贻贝血球某些免疫参数的联合作用。纳米TiO2浓度(0、2.5和10 mg L-1)持续14 d。然后,将贻贝移至pH值为8.1的无纳米TiO2的正常条件下,持续7 d,以测试其在多种应力下的恢复。在低pH和高纳米TiO2浓度条件下,总血细胞计数(THC),吞噬作用(Pha),酯酶(Est)和溶酶体含量(Lyso)降低,而血细胞死亡率(HM)和活性氧(ROS)随着低pH条件下的纳米TiO2浓度。在大多数血细胞参数中,在暴露实验的后期(7和14 d)观察到pH与纳米TiO2之间的相互作用。纳米二氧化钛比低pH值对贻贝的免疫功能影响更大。对于HM,THC,Pha和Lyso,从联合应力中观察到了轻微的恢复,但仍观察到了纳米TiO2和低pH的显着残留效应。这项研究表明,低pH和高浓度的纳米TiO2都对贻贝有负面影响,尽管贻贝已经摆脱了这种压力源,但这些影响仍然持续了一段时间。 (C)2016 Elsevier B.V.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号