Case Study for Selected Heavy Elements in Blood and Plasma from Six Female Patients with Systemic Sclerosis (Scleroderma, SSc). The Concentrations of Mercury, Lead, Antimony, Cobalt, Copper, and Zinc

G. Tamasi, M. Bellini, S. Lorenzini, D. Chindamo, R. Marcolongo, F. Baroni, F. Riccobono, R. Netti, R. Cini
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引用次数: 2

Abstract

Samples of total blood (1T-6T) were collected from six patients (1-6) with Systemic Sclerosis (SSc) and ana- lyzed for their content of mercury, lead, antimony, cobalt, copper, and zinc through AASGF (atomic absorption spectros- copy - graphite furnace), HR-ICP-MS (high resolution inductively-coupled plasma mass spectroscopy) and CVAAT (cold vapor atomic absorption technique). The blood samples (7CT, 8CT) from two "healthy subjects" (7, 8) were also col- lected and analyzed. Furthermore, plasma samples (1P-6P, and 7CP and 8CP) were prepared from fresh blood samples and analyzed for the same elements. The summary for Hg, usually considered highly toxic, is as follows. Interestingly, three of six total blood samples had concentrations of mercury (1T, 11.0(4) μg/L; 2T, 8.2(3); 4T, 7.4(3)) significantly higher than the control from this work (5.6(6) μg/L) and the control from the literature (5.3 μg/L). The concentration of lead for the total blood samples is in the range 82.7(5) - 36.9(5) μg/L and agrees well with average values for women from literature, 70 μg/L. The average concentration for the essential element zinc for the samples 1T-6T is 6658 μg/L, which compares well with the mean value from literature (5561 μg/L for "healthy subjects").
6例女性系统性硬化症(硬皮病,SSc)患者血液和血浆中选定重元素的案例研究。汞、铅、锑、钴、铜和锌的浓度
收集6例(1-6)系统性硬化症(SSc)患者全血(1T-6T),采用AASGF(原子吸收光谱-复制-石墨炉)、高分辨率电感耦合等离子体质谱(hrp - icp - ms)和CVAAT(冷蒸汽原子吸收技术)对汞、铅、锑、钴、铜和锌的含量进行分析。同时采集两名“健康受试者”(7、8)的7CT、8CT血样进行分析。此外,从新鲜血液样品中制备血浆样品(1P-6P, 7CP和8CP)并分析相同的元素。汞通常被认为是剧毒的,其总结如下。有趣的是,6份血样中有3份含有汞浓度(1T, 11.0(4) μg/L;2 t、8.2 (3);4T, 7.4(3))显著高于本研究对照(5.6(6)μg/L)和文献对照(5.3 μg/L)。全血铅浓度在82.7 ~ 36.9 μg/L之间,与文献中女性的平均值70 μg/L吻合较好。样品1T-6T中必需元素锌的平均浓度为6658 μg/L,与文献平均值(“健康受试者”为5561 μg/L)相当。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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