Alterations of glycaemia, insulin resistance and body mass index within the C-peptide optimal range in non-diabetic patients.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2020-12-01 Epub Date: 2020-12-08 DOI:10.32725/jab.2020.018
Vladimir Kron, Miroslav Verner, Pavel Smetana, Jana Janoutova, Vladimir Janout, Karel Martinik
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引用次数: 1

Abstract

The study focused on changes or cut-offs of glycaemia, insulin resistance and body mass index within the C-peptide reference range (260-1730 pmol/l). The metabolic profile of individuals in the Czech Republic without diabetes (n = 3186) was classified by whiskers and quartiles of C-peptide into four groups with the following ranges: 290-510 (n = 694), 511-710 (n = 780), 711-950 (n = 720) and 951-1560 pmol/l (n = 673). Fasting levels of glucose, insulin, HOMA IR (Homeostasis Model Assessment for Insulin Resistance) and BMI (body mass index) were compared by a relevant C-peptide range. Participants taking medication to control glycaemia were excluded. The evaluation involved correlations between C-peptides and the above parameters, F-test and t-test. Changes in glucose levels (from 5.3 to 5.6 mmol/l) between the groups were lower in comparison to insulin, which reached relatively greater changes (from 4.0 to 14.2 mIU/l). HOMA IR increased considerably with growing C-peptide concentrations (0.9, 1.5, 2.2 and 3.5) and BMI values showed a similar trend (28.3, 31.0, 33.6 and 37.4). Considerable changes were observed for insulin (5.2 mIU/l, 57.8%) and HOMA IR (1.3, 61.3%) between groups with C-peptide ranges of 711-950 and 951-1560 pmol/l. Although correlations involving C-peptide, insulin, glucose and BMI seemed to be non-significant (up to rxy = 0.25), the mean values of insulin, HOMA IR and BMI showed statistically significant changes between all groups with various C-peptide concentrations (p ≤ 0.001). Generally, most important differences appeared in glucose metabolism and body mass index between C-peptide ranges of 711-950 and 951-1560 pmol/l. Absolute and relative changes of C-peptide concentrations are possible to use for the assessment of glucose regulatory mechanism. The spectrum of investigated parameters could be a useful tool to prevent the risks linked with the alterations of glycaemia.

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非糖尿病患者血糖、胰岛素抵抗和体重指数在c肽最佳范围内的变化
研究的重点是在c肽参考范围(260-1730 pmol/l)内血糖、胰岛素抵抗和体重指数的变化或临界值。根据c肽的晶须和四分位数将捷克非糖尿病个体(n = 3186)的代谢谱分为4组:290-510 (n = 694)、511-710 (n = 780)、711-950 (n = 720)和951-1560 pmol/l (n = 673)。空腹血糖、胰岛素、HOMA IR(胰岛素抵抗稳态模型评估)和BMI(身体质量指数)水平通过相关的c肽范围进行比较。排除服用药物控制血糖的参与者。评价c肽与上述参数的相关性,进行f检验和t检验。与胰岛素组相比,两组之间葡萄糖水平的变化(从5.3到5.6 mmol/l)较低,胰岛素组的变化相对较大(从4.0到14.2 mIU/l)。随着c肽浓度的增加,HOMA IR显著升高(分别为0.9、1.5、2.2和3.5),BMI值也有相似的变化趋势(分别为28.3、31.0、33.6和37.4)。在c肽范围为711-950和951-1560 pmol/l组之间,胰岛素(5.2 mIU/l, 57.8%)和HOMA IR(1.3, 61.3%)发生了显著变化。虽然c肽、胰岛素、葡萄糖和BMI之间的相关性似乎不显著(rxy = 0.25),但不同c肽浓度组间胰岛素、HOMA IR和BMI的平均值变化具有统计学意义(p≤0.001)。一般来说,在c肽711-950和951-1560 pmol/l范围内,葡萄糖代谢和体重指数出现了最重要的差异。c肽浓度的绝对和相对变化可用于葡萄糖调节机制的评估。所研究的参数谱可能是预防与血糖改变相关的风险的有用工具。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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