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Mathematical modeling and simulations of the pathophysiology of Type-2 Diabetes Mellitus

机译:2型糖尿病的病理生理学数学建模和模拟

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The pathophysiology of Type 2 Diabetes Mellitus (T2DM) is modelled using a coupled system of non-linear deterministic differential equations. An attempt is made to construct to a clinically plausible mathematical model that incorporates the homeostasis associated with endocrinological regulation of glucose and glycogen levels in the human body, by the hormones, insulin and glucagon. The model variables include the concentrations of glucose in the venous blood plasma, the concentration of glycogen in the liver/tissues, the concentration of the hormone glucagon, and the concentration of insulin in the venous blood plasma. The physiological interactions between the model parameters are depicted by clinically measurable rate constants and biophysically quantifiable stoichiometric coefficients. The processes of gluconeogenesis, glycogenolysis, and pulsatile insulin secretion during type 2 diabetes are modelled using plausible auxiliary functions. Investigative computer simulations are performed to elucidate various hypothetical scenarios of glycemia, patho-physiology of T2DM and insulinoma associated hypoglycemia which results from excessive insulin production probably due to a tumor. This study has demonstrated the necessity of simultaneous monitoring of plasma glucose, glucagon, insulin, and glycogen levels in the proper assessment of the pathophysiology of type 2 diabetes and during determination of the therapeutic efficacy of anti-diabetic drugs.
机译:使用非线性确定性微分方程的耦合系统对2型糖尿病(T2DM)的病理生理学进行建模。试图构建一种临床上可行的数学模型,该模型结合了与体内通过激素,胰岛素和胰高血糖素对葡萄糖和糖原水平的内分泌调节相关的体内稳态。模型变量包括静脉血浆中葡萄糖的浓度,肝脏/组织中糖原的浓度,激素胰高血糖素的浓度以及静脉血浆中的胰岛素浓度。模型参数之间的生理相互作用通过临床上可测量的速率常数和生物物理上可计量的化学计量系数来描述。使用合理的辅助功能对2型糖尿病患者糖原异生,糖原分解和搏动性胰岛素分泌的过程进行了建模。进行调查性计算机模拟以阐明各种假想的血糖状况,T2DM的病理生理以及与胰岛素瘤相关的低血糖的各种可能情况,这可能是由于肿瘤引起的胰岛素过量产生所致。这项研究表明,在正确评估2型糖尿病的病理生理过程以及确定抗糖尿病药物的治疗效果期间,必须同时监测血浆葡萄糖,胰高血糖素,胰岛素和糖原水平。

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