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芬兰糖尿病前期人群呼出气冷凝液和红细胞碳酸酐酶活性中的氧-18 和碳-13 同位素。

Oxygen-18 and carbon-13 isotopes in eCOand erythrocytes carbonic anhydrase activity of Finnish prediabetic population.

机构信息

University of Eastern Finland, Institute of Public Health and Clinical Nutrition, Kuopio, Finland.

VTT Technical Research Centre of Finland, Espoo, Finland.

出版信息

J Breath Res. 2021 Jan 22;15(2). doi: 10.1088/1752-7163/abd28d.

Abstract

Complex human physiological processes create the stable isotopic composition of exhaled carbon dioxide (eCO), measurable with noninvasive breath tests. Recently, isotope-selective breath tests utilizing natural fluctuation inO/O isotope ratio in eCOhave been proposed for screening prediabetic (PD) individuals. It has been suggested thatO/O fractionation patterns reflect shifts in the activity of carbonic anhydrase (CA), an enzyme involved in the metabolic changes in the PD state. To evaluate the applicability of the breath sampling method in Finnish PD individuals, breath delta values (BDVs, ‰) ofO/O (O) were monitored for 120 min in real-time with a high-precision optical isotope ratio spectrometer, both in the fasting state and during a 2 h oral glucose tolerance test (2 h OGTT) with non-labeled glucose. In addition, the BDV ofC/C (C) was measured, and total erythrocyte CA activity was determined.O and CA did not demonstrate any statistically significant differences between PD and non-diabetic control (NDC) participants. Instead,C was significantly lower in PD patients in comparison to NDCs in the fasting state and at time points 90 and 120 min of the 2 h OGTT, thus indicating slightly better potential in identifying Finnish PD individuals. However, overlapping values were measured in PD participants and NDCs, and therefore,C cannot be applied as a sole measure in screening prediabetes at an individual level. Thus, because the combination of environmental and lifestyle factors and anthropometric parameters has a greater effect on glucose metabolism and CA activity in comparison to the PD state,O/O andC/C fractionations or CA activity did not prove to be reliable biomarkers for impaired glucose tolerance in Finnish subjects.This study was conducted under the clinicaltrials.gov ID NCT03156478.

摘要

复杂的人体生理过程造就了呼出二氧化碳(eCO)稳定的同位素组成,可通过非侵入性呼吸测试进行测量。最近,有人提出利用 eCO 中 O/O 同位素比值的自然波动进行同位素选择性呼吸测试,以筛选糖尿病前期(PD)个体。据推测,O/O 分馏模式反映了碳酸酐酶(CA)活性的变化,CA 是参与 PD 状态代谢变化的一种酶。为了评估呼吸采样方法在芬兰 PD 个体中的适用性,我们使用高精度光学同位素比光谱仪实时监测 O/O(O)的呼吸差值(BDV,‰),共 120 分钟,分别在空腹状态和口服非标记葡萄糖 2 小时糖耐量试验(2 h OGTT)期间。此外,还测量了 C/C(C)的 BDV,并测定了总红细胞 CA 活性。O 和 CA 在 PD 和非糖尿病对照组(NDC)参与者之间没有表现出任何统计学上的显著差异。相反,与 NDC 相比,空腹状态以及 2 h OGTT 的 90 分钟和 120 分钟时,PD 患者的 C 明显更低,这表明其在识别芬兰 PD 个体方面具有稍好的潜力。然而,PD 参与者和 NDC 中均测量到了重叠值,因此,C 不能作为单独的指标用于个体水平的糖尿病前期筛查。因此,由于环境和生活方式因素以及人体测量参数的综合影响大于 PD 状态对葡萄糖代谢和 CA 活性的影响,O/O 和 C/C 分馏或 CA 活性并未被证明是芬兰受试者葡萄糖耐量受损的可靠生物标志物。本研究在 clinicaltrials.gov 注册号 NCT03156478 下进行。

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