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贫铀暴露的海湾战争老兵的监测:更多骨骼效应的证据。

Surveillance of Depleted Uranium-exposed Gulf War Veterans: More Evidence for Bone Effects.

机构信息

Department of Veterans Affairs Medical Center Baltimore, MD.

Biophysical Toxicology, The Joint Pathology Center, Silver Spring, MD.

出版信息

Health Phys. 2021 Jun 1;120(6):671-682. doi: 10.1097/HP.0000000000001395.

Abstract

Gulf War I veterans who were victims of depleted uranium (DU) "friendly-fire" incidents have undergone longitudinal health surveillance since 1994. During the spring of 2019, 36 members of the cohort were evaluated with a monitoring protocol including exposure assessment for total and isotopic uranium concentrations in urine and a comprehensive review of health outcomes, including measures of bone metabolism and bone mineral density (BMD) determination. Elevated urine U concentrations were observed in cohort members with retained depleted uranium (DU) shrapnel fragments. In addition, a measure of bone resorption, N-telopeptide, showed a statistically significant increase in those in the high DU subgroup, a finding consistent with a statistically significant decrease in bone mass also observed in this high DU subgroup compared to the low DU subgroup. After more than 25 y since first exposure to DU, an aging cohort of military veterans continues to show few U-related health effects in known target organs of U toxicity. The new finding of impaired BMD in the high DU subgroup has now been detected in two consecutive surveillance visits. While this is a biologically plausible uranium effect, it is not reflected in other measures of bone metabolism in the full cohort, which have largely been within normal limits. However, ongoing accrual of the U burden from fragment absorption over time and the effect of aging further impairing BMD suggest the need for future surveillance assessments of this cohort.

摘要

自 1994 年以来,海湾战争 I 退伍军人中遭受贫铀(DU)“友军火力”事件的受害者一直接受纵向健康监测。2019 年春季,对队列中的 36 名成员进行了评估,监测方案包括评估尿液中总铀和同位素铀浓度的暴露情况,以及对健康结果进行全面审查,包括骨代谢和骨矿物质密度(BMD)测定的测量。在保留贫铀(DU)弹片碎片的队列成员中观察到尿液 U 浓度升高。此外,骨吸收标志物 N-端肽在高 DU 亚组中显示出统计学上的显著增加,这一发现与在高 DU 亚组中观察到的骨量统计学显著下降一致,与低 DU 亚组相比。自首次接触 DU 以来超过 25 年,一个老龄化的军事退伍军人队列继续在已知的铀毒性靶器官中表现出很少的 U 相关健康影响。在高 DU 亚组中发现的新的 BMD 受损情况现在已经在两次连续的监测访问中被发现。虽然这是一个生物学上合理的铀效应,但它并没有反映在整个队列中其他骨代谢的测量中,这些测量在很大程度上都在正常范围内。然而,随着时间的推移,碎片吸收导致的 U 负荷不断增加以及衰老对 BMD 的进一步损害表明,需要对该队列进行未来的监测评估。

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