Transplacental transfer of cobalt: Evidence from a study of mothers and their neonates in the African Copperbelt

四分位间距 脐带 经胎盘 胎儿 脐带血 医学 尿 肌酐 产科 脐动脉 生理学 动物科学 男科 化学 胎盘 怀孕 内科学 生物 免疫学 遗传学
作者
Tony Kayembe‐Kitenge,Célestin Banza Lubaba Nkulu,Sébastien Mbuyi Musanzayi,Toni Lubala Kasole,Léon Kabamba Ngombe,Paul Musa Obadia,Daan Van Brusselen,Daniel Kyanika wa Mukoma,Taty Muta Musambo,Augustin Mutombo Mulangu,Patient Nkulu Banza,Patrick DMC Katoto,Erik Smolders,Benoît Nemery,Tim S. Nawrot
出处
期刊:Journal of Trace Elements in Medicine and Biology [Elsevier]
卷期号:80: 127294-127294 被引量:5
标识
DOI:10.1016/j.jtemb.2023.127294
摘要

Transfer of the trace metal cobalt (Co) from mother to foetus has not been documented in populations with high environmental exposure to Co, as is the case in the African Copperbelt mining region. We analysed data obtained from 246 mother-infant pairs included (at delivery) in a previously published case-control study on birth defects, done in Lubumbashi (Democratic Republic of Congo) between March 1, 2013, and Feb 28, 2015.Co was measured by Inductively Coupled Plasma Mass Spectrometry in maternal blood, maternal urine, umbilical cord blood and placental tissue, as available.The Co concentrations [geometric mean (GM) with interquartile range (IQR)] in maternal blood (GM 1.77 µg/L, IQR 1.07-2.93) and urine (GM 7.42 µg/g creatinine, IQR 4.41-11.0) were highly correlated (Spearman r = 0.71, n = 166; p < 0.001) and considerably higher than reference values determined for general populations elsewhere in the world. The concentrations of Co in umbilical cord blood (GM 2.41 µg/L) were higher (Wilcoxon test, p < 0.001) than in maternal blood (GM 1.37 µg/L), with a correlation between both values (Spearman r = 0.34; n = 127, p < 0.001). Co concentrations in placental tissue (geometric mean 0.02 µg/g wet weight) correlated with concentrations in maternal blood (Spearman r = 0.50, n = 86, p < 0.001) and in neonatal blood (Spearman r = 0.23, n = 83, p = 0.039).This first study of maternal and neonatal Co concentrations in the African Copperbelt provides strong evidence of a high transfer of Co from mother to foetus.
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