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Kinetic analysis of lead metabolism in healthy humans.健康人体铅代谢的动力学分析
J Clin Invest. 1976 Aug;58(2):260-70. doi: 10.1172/JCI108467.
2
Magnitude of lead intake from respiration by normal man.正常人经呼吸摄入铅的量。
J Lab Clin Med. 1977 Aug;90(2):238-48.
3
Evaluation and modification of a physiologically based model of lead kinetics using data from a sequential isotope study in cynomolgus monkeys.利用食蟹猴序贯同位素研究数据对基于生理学的铅动力学模型进行评估与修正。
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4
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KINETICS OF THE DISTRIBUTION AND EXCRETION OF LEAD IN THE RAT.大鼠体内铅的分布与排泄动力学
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The metabolism of lead in man in health and disease. 2(2). The metabolism of lead under abnormal conditions.健康与疾病状态下人体铅的代谢。2(2)。异常情况下铅的代谢。
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Uptake of lead by human erythrocytes in vitro.人红细胞对铅的体外摄取。
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Secretion of pancreatic enzymes. I. Response to secretin and pancreozymin.胰腺酶的分泌。I. 对促胰液素和缩胆囊素的反应。
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Renal excretory mechanisms of heavy metals. I. Transtubular transport of heavy metal ions in the avian kidney.重金属的肾脏排泄机制。I. 鸟类肾脏中重金属离子的跨肾小管转运
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Studies of human lead metabolism by use of stable isotope tracers.利用稳定同位素示踪剂对人体铅代谢的研究。
Environ Health Perspect. 1974 May;7:145-53. doi: 10.1289/ehp.747145.
10
Lead metabolism in the normal human: stable isotope studies.正常人体内的铅代谢:稳定同位素研究
Science. 1973 Nov 16;182(4113):725-7. doi: 10.1126/science.182.4113.725.

健康人体铅代谢的动力学分析

Kinetic analysis of lead metabolism in healthy humans.

作者信息

Rabinowitz M B, Wetherill G W, Kopple J D

出版信息

J Clin Invest. 1976 Aug;58(2):260-70. doi: 10.1172/JCI108467.

DOI:10.1172/JCI108467
PMID:783195
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC333178/
Abstract

The steady state kinetics of lead metabolism were studied in five healthy men with stable isotope tracers. Subjects lived in a metabolic unit and ate constant low lead diets. Their intake was supplemented each day with 79--204 mug of enriched lead-204 as nitrate which was ingested with meals for 1--124 days. The concentration and isotopic composition of lead was determined serially in blood, urine, feces, and diet and less commonly in hair, nails, sweat, bone, and alimentary tract secretions by isotopic dilution, mass spectrometric analysis. The data suggest a three compartmental model for lead metabolism. The first compartment encompasses blood and is 1.5--2.2 times larger than the blood mass. It contains approximately 1.7--2.0 mg of lead and has a mean life of 35 days. This pool is in direct communication with ingested lead, urinary lead, and pools two and three. The second compartment is largely composed of soft tissue, contains about 0.3--0.9 mg of lead, and has a mean life of approximately 40 days. This pool gives rise to lead in hair, nails, sweat, and salivary, gastric, pancreatic, and biliary secretions. Pool three resides primarily in the skeleton, contains the vast quantity of body lead, and has a very slow mean life. Bones appear to differ in their rates of lead turnover. Within the relatively small changes in blood lead observed in the present study, the transfer coefficients between the pools remained constant.

摘要

利用稳定同位素示踪剂对五名健康男性的铅代谢稳态动力学进行了研究。受试者居住在代谢单元中,食用恒定的低铅饮食。每天为他们补充79 - 204微克富集的硝酸铅-204,随餐摄入,持续1 - 124天。通过同位素稀释、质谱分析,连续测定血液、尿液、粪便和饮食中铅的浓度及同位素组成,较少测定头发、指甲、汗液、骨骼和消化道分泌物中的铅浓度及同位素组成。数据表明铅代谢存在三室模型。第一室包括血液,其大小是血容量的1.5 - 2.2倍。它含有约1.7 - 2.0毫克铅,平均寿命为35天。该池与摄入的铅、尿铅以及第二和第三池直接相通。第二室主要由软组织组成,含有约0.3 - 0.9毫克铅,平均寿命约为40天。该池产生头发、指甲、汗液以及唾液、胃液、胰液和胆汁分泌物中的铅。第三池主要位于骨骼中,含有体内大量的铅,平均寿命非常缓慢。不同骨骼的铅周转速率似乎有所不同。在本研究观察到的血铅相对较小的变化范围内,各池之间的转移系数保持恒定。