Department of Cellular and Molecular Medicine, Laboratory of Ion Channel Research, TRP Research Platform Leuven, KU Leuven, Leuven, Belgium.
VIB Center for Brain & Disease Research, Leuven, Belgium.
Sci Rep. 2021 Feb 24;11(1):4450. doi: 10.1038/s41598-021-83901-x.
During pregnancy, metabolic adaptations occur to maintain the balance between maternal and foetal growth, including increased insulin secretion and decreased insulin sensitivity. When the body fails to adjust, gestational diabetes mellitus develops. To gain insight in the pregnancy-induced adaptations, we applied continuous glucose monitoring via telemetric transmitters. We show that continuous glucose monitoring in conscious, non-stressed, freely moving mice throughout the full pregnancy is feasible, accurate and safe. We show that healthy mice during a full pregnancy develop adaptations in glucose homeostasis reminiscent of those in pregnant women. Furthermore, continuous glucose monitoring allows the complete analysis of all aspects of glucose excursions associated with spontaneous feeding episodes, and the thorough analysis of glycaemic variability. In conclusion, continuous glucose monitoring allows a detailed description of the glycaemic status during pregnancy, which will help to unravel specific mechanisms for gestational diabetes mellitus.
在妊娠期间,会发生代谢适应以维持母体和胎儿生长之间的平衡,包括增加胰岛素分泌和降低胰岛素敏感性。当身体无法调整时,就会发展为妊娠糖尿病。为了深入了解妊娠引起的适应性变化,我们通过遥测发射器应用连续血糖监测。我们表明,在整个妊娠期间,通过遥测发射器对清醒、无应激、自由活动的小鼠进行连续血糖监测是可行的、准确的和安全的。我们表明,健康的小鼠在整个妊娠期内会发展出类似于孕妇的葡萄糖稳态适应性。此外,连续血糖监测允许对与自发进食事件相关的所有葡萄糖波动方面进行全面分析,并对血糖变异性进行彻底分析。总之,连续血糖监测可以详细描述妊娠期间的血糖状态,这将有助于揭示妊娠糖尿病的特定机制。