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用于骨中铅定量测量的激光烧蚀电感耦合等离子体质谱法的校准

Calibration of laser ablation inductively coupled plasma mass spectrometry for quantitative measurements of lead in bone.

作者信息

Bellis David J, Hetter Katherine M, Jones Joseph, Amarasiriwardena Dula, Parsons Patrick J

机构信息

Trace Elements Laboratory, Wadsworth Center, New York State Department of Health, P.O. Box 509, Albany, NY 12201-0509, USA.

出版信息

J Anal At Spectrom. 2006;21(9):948-954. doi: 10.1039/B603435G. Epub 2006 Aug 9.

Abstract

Lead accumulates in bone over many years or decades. Accordingly, the study of lead in bone is important in determining the fate of ingested lead, the potential for remobilization, and for the application of bone lead measurements as a biomarker of lead exposure. Laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) was used to measure the spatial distribution of lead in bone on the micrometer scale. In general, LA-ICP-MS studies are somewhat limited by the lack of matrix-matched standards and/or reference materials for calibration and validation purposes. Here we describe the application of pressed pellets prepared from New York State Department of Health candidate Reference Materials for Lead in Bone (levels 1 through 4), to provide a linear calibration for (208)Pb/(43)Ca in the concentration range <1 to 30 μg g(-1). The limit of detection was estimated as 0.2 μg g(-1). The measured lead values for pelletized NIST SRM 1486 Bone Meal and SRM 1400 Bone Ash were in good agreement with certified reference values. Using this approach, we quantitatively measured the spatial distribution of lead in a cross-section of goat metacarpal from a lead-dosed animal. The lead content was spatially variable in the range of 2 to 30 μg g(-1) with a complex distribution. In some sections, lead appeared to be enriched in the center of the bone relative to peripheral areas, indicating preferential accumulation in trabecular (spongy) rather than cortical bone. In addition, there were discrete areas of lead enrichment, or hot spots, of 100 to 200 μm in width.

摘要

铅会在数年或数十年的时间里在骨骼中蓄积。因此,对骨骼中铅的研究对于确定摄入铅的归宿、再动员的可能性以及将骨铅测量作为铅暴露生物标志物的应用而言至关重要。激光烧蚀电感耦合等离子体质谱法(LA-ICP-MS)被用于在微米尺度上测量骨骼中铅的空间分布。一般来说,LA-ICP-MS研究在某种程度上受到缺乏用于校准和验证目的的基体匹配标准品和/或参考物质的限制。在此,我们描述了由纽约州卫生部骨中铅候选参考物质(1至4级)制备的压制颗粒的应用,以在<1至30 μg g⁻¹的浓度范围内为²⁰⁸Pb/⁴³Ca提供线性校准。检测限估计为0.2 μg g⁻¹。颗粒状NIST SRM 1486骨粉和SRM 1400骨灰的测量铅值与认证参考值高度一致。使用这种方法,我们定量测量了来自铅剂量动物的山羊掌骨横截面中铅的空间分布。铅含量在2至30 μg g⁻¹范围内空间可变,分布复杂。在一些切片中,相对于周边区域,铅似乎在骨中心富集,表明在小梁(海绵状)骨而非皮质骨中优先蓄积。此外,存在宽度为100至200 μm的离散铅富集区域,即热点。

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Individual variability in human tibia lead concentration.人类胫骨铅浓度的个体差异。
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The human body burden of lead.人体中的铅负荷。
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Lead in bone. IV. Distribution of lead in the human skeleton.骨骼中的铅。IV. 铅在人体骨骼中的分布。
Arch Environ Health. 1988 Nov-Dec;43(6):381-91. doi: 10.1080/00039896.1988.9935855.

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