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用体内中子活化分析系统测量大鼠体内的钾。

Measurement of potassium in rats using an In vivo neutron activation analysis system.

机构信息

School of Health Sciences, Purdue University, West Lafayette, IN, USA.

School of Health Sciences, Purdue University, West Lafayette, IN, USA.

出版信息

Appl Radiat Isot. 2024 Oct;212:111439. doi: 10.1016/j.apradiso.2024.111439. Epub 2024 Jul 18.

DOI:10.1016/j.apradiso.2024.111439
PMID:39111052
Abstract

Abnormal levels of potassium are linked to several health conditions, including high blood pressure, cardiac dysfunction, kidney damage, and osteoporosis. Given the limited availability of in vivo measurement techniques, there is a need for novel methods to measure potassium to enhance the diagnosis and management of potassium metabolism related diseases. This study aimed to evaluate the feasibility of compact neutron generator based in vivo measurement system for quantification of potassium using rat carcasses. A cohort of thirty-nine rats (n = 20 males and 19 females, average weight 255 ± 15 and 163 ± 7 g) were sacrificed, and their carcasses were placed in polyethylene bottles. The rats were then positioned and irradiated in a carefully designed irradiation cave built alongside the neutron generator with an optimized thermal neutron flux and radiation dose ratio. The irradiation time was 10 min, followed by a 5-min decay and 2-h measurement using a high efficiency high purity germanium detector(HPGe). RESULTS: The average potassium concentration in male and female rats was found to be comparable (male 2874 ± 161 and female 2866 ± 144 μg/g). A marginally positive correlation between potassium concentration and weight was found in female rats only (male(20) = 0.07, P = 0.76 and female r(19) = 0.34, P = 0.15). We assessed the influence of manganese toxicity on potassium levels and observed no significant impact. These results were consistent with our previous study in mice. CONCLUSION: This study suggests that in vivo neutron activation analysis could serve as a promising method to quantify potassium and to investigate the storage and metabolism of potassium in human and in animals.

摘要

钾水平异常与多种健康状况有关,包括高血压、心功能障碍、肾损伤和骨质疏松症。鉴于体内测量技术的可用性有限,需要新的方法来测量钾,以增强对钾代谢相关疾病的诊断和管理。本研究旨在评估基于紧凑型中子发生器的体内测量系统用于定量测量大鼠尸体中钾的可行性。一组 39 只大鼠(n=20 只雄性和 19 只雌性,平均体重为 255±15 和 163±7g)被处死,其尸体被放置在聚乙烯瓶中。然后将大鼠放置在与中子发生器并排建造的精心设计的辐照洞穴中,并优化了热中子通量和辐射剂量比。照射时间为 10 分钟,然后进行 5 分钟的衰减和 2 小时的使用高效高纯锗探测器(HPGe)测量。结果:发现雄性和雌性大鼠的钾浓度相当(雄性 2874±161 和雌性 2866±144μg/g)。仅在雌性大鼠中发现钾浓度与体重呈正相关(雄性(20)=0.07,P=0.76,雌性 r(19)=0.34,P=0.15)。我们评估了锰毒性对钾水平的影响,没有发现显著影响。这些结果与我们之前在小鼠中的研究一致。结论:本研究表明,体内中子活化分析可以作为一种很有前途的方法来定量测量钾,并研究钾在人和动物中的储存和代谢。

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