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自动金相术在重金属毒理学中的应用。

Applications of autometallography to heavy metal toxicology.

作者信息

Danscher G

机构信息

Department of Neurobiology, University of Aarhus, Denmark.

出版信息

Pharmacol Toxicol. 1991 Jun;68(6):414-23. doi: 10.1111/j.1600-0773.1991.tb01264.x.

DOI:10.1111/j.1600-0773.1991.tb01264.x
PMID:1891437
Abstract

Application of autometallography (AMG) to histological material from humans and animals exposed to gold, silver and mercury has made it possible to localize these heavy metals at light and electron microscopic levels. Because of high sensitivity of the technique, traces of the three metals have been demonstrated in tissues and cells that had previously not been suspected of containing metals. A chelatable pool of zinc in the synaptic vesicles of the zinc-positive neurones can be demonstrated by AMG in the brain. The well defined staining pattern can be used to estimate volumes of cortical subdivisions. Volumetric studies based on autometallographic differentiation of cortical regions have provided valuable information about the effects of different toxicants. AMG can be combined with new quantitative methods, such as electron energy loss spectroscopy (EELS), electron probe X-ray microanalysis (EPMA) and laser microprobe mass analysis (LAMMA), to enhance detection of AMG metal catalysts with these techniques.

摘要

将自动金相显微镜技术(AMG)应用于暴露于金、银和汞的人类及动物组织材料,使得在光学显微镜和电子显微镜水平上定位这些重金属成为可能。由于该技术具有高灵敏度,在以前未被怀疑含有金属的组织和细胞中已证实存在这三种金属的痕量。通过AMG可在大脑中证实锌阳性神经元突触小泡中有可螯合的锌池。这种明确的染色模式可用于估计皮质亚区的体积。基于皮质区域自动金相显微镜鉴别进行的体积研究,为不同毒物的影响提供了有价值的信息。AMG可与新的定量方法相结合,如电子能量损失谱(EELS)、电子探针X射线微分析(EPMA)和激光微探针质量分析(LAMMA),以增强利用这些技术对AMG金属催化剂的检测。

相似文献

1
Applications of autometallography to heavy metal toxicology.自动金相术在重金属毒理学中的应用。
Pharmacol Toxicol. 1991 Jun;68(6):414-23. doi: 10.1111/j.1600-0773.1991.tb01264.x.
2
How to detect gold, silver and mercury in human brain and other tissues by autometallographic silver amplification.如何通过自动金相银放大技术检测人脑中的金、银和汞以及其他组织中的这些元素。
Neuropathol Appl Neurobiol. 1994 Oct;20(5):454-67. doi: 10.1111/j.1365-2990.1994.tb00996.x.
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Autometallography: tissue metals demonstrated by a silver enhancement kit.自动金相显微镜法:用银增强试剂盒显示组织中的金属。
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Silver enhancement of quantum dots resulting from (1) metabolism of toxic metals in animals and humans, (2) in vivo, in vitro and immersion created zinc-sulphur/zinc-selenium nanocrystals, (3) metal ions liberated from metal implants and particles.量子点的银增强作用源于:(1) 动物和人体内有毒金属的代谢;(2) 体内、体外及浸泡产生的锌硫/锌硒纳米晶体;(3) 从金属植入物和颗粒中释放的金属离子。
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Autometallography. A new technique for light and electron microscopic visualization of metals in biological tissues (gold, silver, metal sulphides and metal selenides).自动金相显微镜技术。一种用于在光学和电子显微镜下观察生物组织中金属(金、银、金属硫化物和金属硒化物)的新技术。
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6
Autometallographic silver enhancement of zinc sulfide crystals created in cryostat sections from human brain biopsies: a new technique that makes it feasible to demonstrate zinc ions in tissue sections from biopsies and early autopsy material.对人脑活检标本恒冷箱切片中生成的硫化锌晶体进行自动金相银增强:一种使在活检和早期尸检材料的组织切片中显示锌离子成为可能的新技术。
J Histochem Cytochem. 1997 Nov;45(11):1503-10. doi: 10.1177/002215549704501107.
7
Ultrastructural autometallography: a method for silver amplification of catalytic metals.超微结构自动金属显影法:一种用于催化金属银放大的方法。
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Differentiation of silver-enhanced mercury and gold in tissue sections of rat dorsal root ganglia.大鼠背根神经节组织切片中银增强汞和金的鉴别
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Efficiency of autometallographic detection of mercury in the rat kidney.
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Electron Microscopical Autometallography: Immunogold-Silver Staining (IGSS) and Heavy-Metal Histochemistry.电子显微镜自动金属显影法:免疫金银染色(IGSS)及重金属组织化学
Methods. 1996 Oct;10(2):257-69. doi: 10.1006/meth.1996.0100.

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