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灌流改变了啮齿动物大脑中的游离锌水平。

Perfusion alters free zinc levels in the rodent brain.

机构信息

Now at Angelo State University, Dept. Psychology & Sociology, ASU Station #10907, 2601 W Ave N, San Angelo, TX, 76909, United States.

Dept. Psychology, Cognitive/Behavioral Neuroscience, George Mason University, Fairfax, VA, 22030, United States.

出版信息

J Neurosci Methods. 2019 Mar 1;315:14-16. doi: 10.1016/j.jneumeth.2018.12.018. Epub 2018 Dec 30.

Abstract

BACKGROUND

Fixation of brain tissue is a common practice which allows preservation of tissue and aids in preventing structural and chemical abnormalities. However, fixation procedures may disrupt the levels of biometals such as zinc when compared to tissue that is fresh-frozen. Thus, we sought to determine if any differences in free-zinc levels exist between perfused and fresh-frozen tissue. Zinc is an essential biometal critical for cellular communication and memory and exists in both bound and free forms; the latter playing critical roles in synaptic communication. New method: C57BL/6 J mice were divided into two water types: those given lab water and those given water supplemented with 10 ppm zinc carbonate. Perfusion was carried out with 4% paraformaldehyde on half of the animals in each water group to assess the impact on levels of free Zn as measured through Zinpyr-1 fluorescence.

RESULTS

There were significant differences in Zn fluorescence values between Zn-supplemented and lab water groups as well as between perfused and fresh-frozen tissues in the dentate gyrus and CA3 regions of the hippocampus, regions critical in learning & memory. Comparison with existing methods: These results show that when determining a method for euthanasia, any future histological techniques involving assessment of metal content should first be considered.

CONCLUSIONS

Researchers must be cautious with the way in which tissue is collected and treated since this can lead to misleading conclusions when linking changes in behavior and relative levels of trace metals.

摘要

背景

脑组织固定是一种常见的做法,它可以保存组织并有助于防止结构和化学异常。然而,与新鲜冷冻的组织相比,固定程序可能会破坏锌等生物金属的水平。因此,我们试图确定在灌注和新鲜冷冻组织之间是否存在游离锌水平的差异。锌是一种对细胞通讯和记忆至关重要的必需生物金属,存在于结合态和游离态两种形式;后者在突触通讯中起着关键作用。新方法:将 C57BL/6J 小鼠分为两种水类型:给予实验室用水的组和给予补充 10ppm 碳酸锌的水的组。对每组动物的一半进行 4%多聚甲醛灌注,以评估其对通过 Zinpyr-1 荧光测量的游离 Zn 水平的影响。

结果

在齿状回和海马 CA3 区(学习和记忆的关键区域)中,补充锌和实验室用水组以及灌注和新鲜冷冻组织之间的 Zn 荧光值存在显著差异。与现有方法的比较:这些结果表明,在确定安乐死方法时,任何涉及评估金属含量的未来组织学技术都应首先考虑。

结论

研究人员必须谨慎对待组织的收集和处理方式,因为当将行为变化与痕量金属的相对水平联系起来时,这可能会导致误导性结论。

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