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Quantitative Bioimaging to Investigate the Uptake of Mercury Species in Drosophila melanogaster

机译:定量生物成像研究果蝇中汞物种的吸收

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The uptake of mercury species in the model organism Drosophila melanogaster was investigated by elemental bioimaging using laser ablation-inductively coupled plasma mass spectrometry (LA-ICPMS). The mercury distribution in Drosophila melanogaster was analyzed for the three species mercury(II) chloride, methylmercury chloride, and thimerosal after intoxication. A respective analytical method was developed and applied to the analysis of the entire Drosophila melanogaster first, before a particular focus was directed to the cerebral areas of larvae and adult flies. For quantification of mercury, matrix-matched standards based on gelatin were prepared. Challenges of spatially dissolved mercury determination, namely, strong evaporation issues of the analytes and an inhomogeneous distribution of mercury in the standards due to interactions with cysteine containing proteins of the gelatin were successfully addressed by complexation with meso-2,3-dimercaptosuccinic acid (DMSA). No mercury was detected in the cerebral region for mercury(II) chloride, whereas both organic species showed the ability to cross the blood brain barrier. Quantitatively, the mercury level in the brain exceeded the fed concentration indicating mercury enrichment, which was approximately 3 times higher for methylmercury chloride than for thimerosal.
机译:使用激光烧蚀-电感耦合等离子体质谱法(LA-ICPMS),通过元素生物成像研究了模型果蝇果蝇中汞的吸收情况。分析了中毒后果蝇中果蝇中汞的分布情况,分析了三种物质氯化汞(II),氯化甲基汞和硫柳汞。开发了一种相应的分析方法,并首先将其应用于整个果蝇的分析,然后再将重点放在幼虫和成年果蝇的大脑区域上。为了定量分析汞,制备了基于明胶的基质匹配标准品。通过与meso-2,3-二巯基琥珀酸(DMSA)络合成功地解决了空间溶解汞测定的挑战,即分析物的强烈蒸发问题和与明胶中含有半胱氨酸的蛋白质相互作用而导致标准物中汞不均匀分布的问题。 )。在大脑区域未检测到氯化汞(II)的汞,而这两种有机物质均具有穿越血脑屏障的能力。从数量上讲,大脑中的汞水平超过了进食浓度,表明汞富集,氯化甲基汞比硫柳汞高约3倍。

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