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心肺适能不一致的单卵双胞胎的葡萄糖代谢

Glucose metabolism in discordant monozygotic twins for cardiorespiratory fitness.

作者信息

Queiroga Marcos Roberto, Barbieri Ricardo Augusto, Ferreira Sandra Aires, Luchessi André Ducati, Silbiger Vivian Nogueira, Hirata Rosario Dominguez C, Hirata Mario Hiroyuki, Kokubun Eduardo

机构信息

Departamento de Análises Clínicas e Toxicológicas, USP, São Paulo, SP, Brasil.

出版信息

Rev Paul Pediatr. 2013 Jan-Mar;31(1):77-82. doi: 10.1590/s0103-05822013000100013.

Abstract

OBJECTIVE

To determine if glucose and insulin concentrations are regulated by cardiorespiratory fitness (VO2max) regardless of their genetic effects.

METHODS

This cross-sectional study enrolled 38 pairs of young monozygotic twins (11 to 18 years-old). All subjects underwent a progressive maximal exercise test on a treadmill to determine the VO2max with gas exchange analysis (MedGraphics VO2000® - Medical Graphics Corp., St. Paul, MN). Blood samples were drawn after fasting to determine glucose and insulin levels. Monozygosity was confirmed by genotyping 15 informative genetic markers. Nine pairs had at least 10mL.kg-1.min-1 difference in VO2max and were divided into the more and less active group, according to their VO2max. Mean differences between more and less active groups were evaluated by Wilcoxon's test for paired data.

RESULTS

On average, twins from the more active group presented a 17% (13.5±3.7mL.kg-1.min-1) higher VO2max compared to their less active siblings. No significant differences were observed between the groups for fasting insulin (36.5±34.6 versus 25.3±13.7mg/dL; p<0.813). However, the more active twins had lower fasting glucose than the less active ones (82.9±7.3 versus 86.7±7.6mg/dL; p<0.010).

CONCLUSIONS

In this case-control study (discordant monozygotic twins), the less active co-twins were characterized by higher fasting plasma glucose levels. This implies that poor cardiorespiratory fitness can be associated with defective glucose metabolism regardless of genetic factors.

摘要

目的

确定无论遗传效应如何,葡萄糖和胰岛素浓度是否受心肺适能(最大摄氧量)调节。

方法

这项横断面研究纳入了38对年轻的同卵双胞胎(11至18岁)。所有受试者在跑步机上进行递增式最大运动试验,通过气体交换分析(MedGraphics VO2000® - Medical Graphics Corp., 圣保罗,明尼苏达州)来测定最大摄氧量。空腹采血以测定葡萄糖和胰岛素水平。通过对15个信息性遗传标记进行基因分型来确认同卵性。9对双胞胎的最大摄氧量差异至少为10mL·kg-1·min-1,并根据其最大摄氧量分为运动较多组和运动较少组。通过配对数据的Wilcoxon检验评估运动较多组和运动较少组之间的平均差异。

结果

平均而言,与运动较少的双胞胎相比,运动较多组的双胞胎最大摄氧量高出17%(13.5±3.7mL·kg-1·min-1)。两组之间的空腹胰岛素水平无显著差异(36.5±34.6对25.3±13.7mg/dL;p<0.813)。然而,运动较多的双胞胎空腹血糖低于运动较少的双胞胎(82.9±7.3对86.7±7.6mg/dL;p<0.010)。

结论

在这项病例对照研究(不一致的同卵双胞胎)中,运动较少的双胞胎空腹血浆葡萄糖水平较高。这意味着,无论遗传因素如何,心肺适能差可能与葡萄糖代谢缺陷有关。

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