Maastricht Centre for Systems Biology (MaCSBio), Maastricht University, Maastricht, The Netherlands.
Department of Data Science and Knowledge Discovery, Simula Metropolitan Center for Digital Engineering, Oslo, Norway.
Sci Rep. 2024 Apr 5;14(1):8037. doi: 10.1038/s41598-024-58703-6.
Continuous glucose monitoring (CGM) is a promising, minimally invasive alternative to plasma glucose measurements for calibrating physiology-based mathematical models of insulin-regulated glucose metabolism, reducing the reliance on in-clinic measurements. However, the use of CGM glucose, particularly in combination with insulin measurements, to develop personalized models of glucose regulation remains unexplored. Here, we simultaneously measured interstitial glucose concentrations using CGM as well as plasma glucose and insulin concentrations during an oral glucose tolerance test (OGTT) in individuals with overweight or obesity to calibrate personalized models of glucose-insulin dynamics. We compared the use of interstitial glucose with plasma glucose in model calibration, and evaluated the effects on model fit, identifiability, and model parameters' association with clinically relevant metabolic indicators. Models calibrated on both plasma and interstitial glucose resulted in good model fit, and the parameter estimates associated with metabolic indicators such as insulin sensitivity measures in both cases. Moreover, practical identifiability of model parameters was improved in models estimated on CGM glucose compared to plasma glucose. Together these results suggest that CGM glucose may be considered as a minimally invasive alternative to plasma glucose measurements in model calibration to quantify the dynamics of glucose regulation.
连续血糖监测(CGM)是一种有前途的、微创的替代方法,可以替代血浆葡萄糖测量值,用于校准基于生理学的胰岛素调节葡萄糖代谢数学模型,减少对临床测量的依赖。然而,利用 CGM 葡萄糖(特别是与胰岛素测量值结合使用)来开发葡萄糖调节的个性化模型仍有待探索。在这里,我们在超重或肥胖个体中同时使用 CGM 测量间质葡萄糖浓度以及血浆葡萄糖和胰岛素浓度,以校准葡萄糖-胰岛素动力学的个性化模型。我们比较了在模型校准中使用间质葡萄糖和血浆葡萄糖的效果,并评估了对模型拟合、可识别性以及模型参数与临床相关代谢指标关联的影响。基于血浆和间质葡萄糖校准的模型都具有良好的模型拟合度,并且在两种情况下,与胰岛素敏感性等代谢指标相关的参数估计值都得到了验证。此外,与基于血浆葡萄糖的模型相比,基于 CGM 葡萄糖的模型估计值提高了模型参数的实际可识别性。这些结果表明,CGM 葡萄糖可以作为替代血浆葡萄糖测量值的微创方法,用于模型校准以量化葡萄糖调节的动力学。