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Using natural, stable calcium isotopes of human blood to detect and monitor changes in bone mineral balance

机译:使用人类血液的天然,稳定的钙同位素来检测和监测骨矿物质平衡的变化

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We are exploring variations in the Ca isotope composition of blood and urine as a new tool for early diagnosis and monitoring of changes in bone mineral balance for patients suffering from metabolic bone disease, cancers that originate in or metastasize to bone, and for astronauts who spend time in low gravity environments. Blood samples are often collected instead of, or in addition to, urine in clinical settings, so it is useful to know if variations in the Ca isotope composition of blood carry the same information as variations in urine. We found that the Ca isotope composition of blood shifts in the same direction and to the same magnitude (similar to 2 parts per ten thousand - pptt) as that of urine in response to skeletal unloading during bed rest. However, the Ca isotope composition of blood is lighter than that of urine by 12 +/- 2 pptt This offset between blood and urine may result from Ca isotope fractionation occurring in the kidneys. This is the first study to confirm the suspected offset between the Ca isotope composition of blood and urine in humans, to directly quantify its magnitude, and to establish that either blood or urine can be used to detect and quantify bone loss. (C) 2015 Elsevier Inc. All rights reserved.
机译:我们正在探索血液和尿液中Ca同位素组成的变化,以此作为早期诊断和监测代谢性骨病患者,起源于或转移至骨骼的癌症以及花费时间的宇航员骨骼矿物质平衡变化的新工具在低重力环境中的时间。在临床环境中,通常会代替或补充尿液来收集血液样本,因此了解血液中Ca同位素组成的变化是否携带与尿液变化相同的信息很有用。我们发现,由于卧床休息过程中骨骼的卸载,血液中的钙同位素组成向与尿液相同的方向和相同的量级移动(近似于每千分之二-pptt)。但是,血液中的Ca同位素组成比尿中的Ca同位素组成轻12 +/- 2 pptt。血液和尿液之间的偏移可能是由于肾脏中发生的Ca同位素分级所致。这是第一项证实人血液和尿液的钙同位素组成之间存在可疑偏差,直接量化其量值并确定血液或尿液可用于检测和量化骨质流失的研究。 (C)2015 Elsevier Inc.保留所有权利。

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