National Engineering Research Center of Marine Facilities Aquaculture, Zhejiang Ocean University, Zhoushan 316022, PR China.
National Engineering Research Center of Marine Facilities Aquaculture, Zhejiang Ocean University, Zhoushan 316022, PR China.
Chemosphere. 2019 Jan;214:85-93. doi: 10.1016/j.chemosphere.2018.09.050. Epub 2018 Sep 10.
Responses to zinc (Zn) during exposure have well studied but the effects after the exposure are commonly neglected. In the study, non-specific immune response to zinc in blood and spleen of zebrafish was evaluated after exposure. At first, fish were subjected to 0 (control) and 200 μg/L zinc (Zn) for 6 weeks. Specific growth rate, survival rate, blood albumin level, and the activities of Cu/Zn-SOD and iNOS were not significantly changed by Zn exposure. Conversely, Zn increased the levels of globulin and hemoglobin, CAT activity, and mRNA levels of nrf2, sod1, cat, hsf1, hsp70, p65, il-6, il-1β, tnf-α and inos. In the second experiment, zebrafish were transferred to a recovery period for 4 and 8 days. The increased activities of Cu/Zn-SOD and CAT and the up-regulated mRNA levels of nrf2, cat, p65, tnf-α, and inos still were observed. In the third experiment, zebrafish from 4 d post-exposure were re-exposed to the high levels of Zn and cadmium (Cd) (600, 1200 μg/L Zn; 100, 200 μg/L Cd) for 4 days. 100 μg/L Cd caused a higher survival rate in the Zn-exposed fish than the control, suggesting Zn pre-exposure might develop the tolerance to Zn and Cd. Although transcriptional levels of sod1, hsf1, hsf2, hsp70, il-6 and il-1β and activity levels of iNOS recovered to the control levels at 4 and 8 d post-exposure, differences in magnitude of responsiveness were observed between normal fish and Zn-exposed fish. Overall, Zn acclimation persisted when fish recovered, which provides a new perspective about Zn toxicology.
在暴露期间,人们对锌(Zn)的反应进行了深入研究,但通常忽略了暴露后的影响。在这项研究中,评估了暴露后斑马鱼血液和脾脏中对锌的非特异性免疫反应。首先,将鱼暴露于 0(对照)和 200μg/L Zn 中 6 周。Zn 暴露并未显著改变特定生长率、存活率、血液白蛋白水平以及 Cu/Zn-SOD 和 iNOS 的活性。相反,Zn 增加了球蛋白和血红蛋白的水平、CAT 活性以及 nrf2、sod1、cat、hsf1、hsp70、p65、il-6、il-1β、tnf-α和 inos 的 mRNA 水平。在第二个实验中,将斑马鱼转移到恢复期 4 和 8 天。仍观察到 Cu/Zn-SOD 和 CAT 活性的增加以及 nrf2、cat、p65、tnf-α和 inos 的 mRNA 水平上调。在第三个实验中,从暴露后 4 天的斑马鱼再次暴露于高浓度 Zn 和 Cd(600、1200μg/L Zn;100、200μg/L Cd)4 天。100μg/L Cd 在 Zn 暴露的鱼中导致存活率高于对照,表明 Zn 预先暴露可能发展出对 Zn 和 Cd 的耐受性。尽管 sod1、hsf1、hsf2、hsp70、il-6 和 il-1β 的转录水平和 iNOS 的活性水平在暴露后 4 和 8 天恢复到对照水平,但正常鱼和 Zn 暴露鱼之间的反应幅度存在差异。总的来说,当鱼恢复时,Zn 适应仍然存在,这为 Zn 毒理学提供了一个新的视角。