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电感耦合等离子体质谱法检测斑马鱼体内铂基和钌基化合物暴露的剂量及其更广泛的应用。

Dose Uptake of Platinum- and Ruthenium-based Compound Exposure in Zebrafish by Inductively Coupled Plasma Mass Spectrometry with Broader Applications.

机构信息

Environmental and Occupational Health Sciences Institute, Rutgers University; Department of Biochemistry and Microbiology, Rutgers University;

Environmental and Occupational Health Sciences Institute, Rutgers University.

出版信息

J Vis Exp. 2022 Apr 21(182). doi: 10.3791/63587.

DOI:10.3791/63587
PMID:35532272
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9281581/
Abstract

Metals and metal-based compounds comprise multifarious pharmaco-active and toxicological xenobiotics. From heavy metal toxicity to chemotherapeutics, the toxicokinetics of these compounds have both historical and modern-day relevance. Zebrafish have become an attractive model organism in elucidating pharmaco- and toxicokinetics in environmental exposure and clinical translation studies. Although zebrafish studies have the benefit of being higher-throughput than rodent models, there are several significant constraints to the model. One such limitation is inherent in the waterborne dosing regimen. Water concentrations from these studies cannot be extrapolated to provide reliable internal dosages. Direct measurements of the metal-based compounds allow for a better correlation with compound-related molecular and biological responses. To overcome this limitation for metals and metal-based compounds, a technique was developed to digest zebrafish larval tissue after exposure and quantify metal concentrations within tissue samples by inductively coupled plasma mass spectrometry (ICPMS). ICPMS methods were used to determine the metal concentrations of platinum (Pt) from cisplatin and ruthenium (Ru) from several novel Ru-based chemotherapeutics in zebrafish tissue. Additionally, this protocol distinguished concentrations of Pt that were sequestered in the chorion of the larval compared with the zebrafish tissue. These results indicate that this method can be applied to quantitate the metal dose present in larval tissues. Further, this method may be adjusted to identify specific metals or metal-based compounds in a broad range of exposure and dosing studies.

摘要

金属和金属基化合物包含多种具有药理活性和毒理学的异源生物。从重金属毒性到化疗药物,这些化合物的毒代动力学既有历史意义,也有现代意义。斑马鱼已成为阐明环境暴露和临床转化研究中药物代谢和毒代动力学的一种有吸引力的模式生物。虽然斑马鱼研究比啮齿动物模型具有更高的通量,但该模型存在几个显著的限制。其中一个限制是水基给药方案固有的。这些研究中的水浓度不能外推以提供可靠的内部剂量。直接测量金属基化合物可以更好地与化合物相关的分子和生物学反应相关联。为了克服金属和金属基化合物的这一局限性,开发了一种技术,即在暴露后消化斑马鱼幼虫组织,并通过电感耦合等离子体质谱法(ICPMS)定量组织样品中的金属浓度。ICPMS 方法用于测定斑马鱼组织中顺铂中的铂(Pt)和几种新型 Ru 基化疗药物中的钌(Ru)的金属浓度。此外,该方案还区分了幼虫卵壳中与斑马鱼组织中隔离的 Pt 浓度。这些结果表明,该方法可用于定量幼虫组织中存在的金属剂量。此外,该方法可以调整以在广泛的暴露和给药研究中识别特定的金属或金属基化合物。

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