Wang Zhongjian, Wang Guopeng, Ren Jiawei
Pharnexcloud Digital Technology Co., Ltd., Chengdu, Sichuan610093, China.
Zhongcai Health (Beijing) Biological Technology Development Co., Ltd., Beijing101500, China.
ACS Omega. 2022 Dec 15;7(51):48427-48437. doi: 10.1021/acsomega.2c06483. eCollection 2022 Dec 27.
(1) Purpose: To develop a mathematical model combining physiologically based pharmacokinetic and urinary glucose excretion (PBPK-UGE) to simultaneously predict pharmacokinetic (PK) and UGE changes of luseogliflozin (LUS) as well as to explore the role of sodium-glucose cotransporters (SGLT1 and SGLT2) in renal glucose reabsorption (RGR) in humans. (2) Methods: The PBPK-UGE model was built using physicochemical and biochemical properties, binding kinetics data, affinity to SGLTs for glucose, and physiological parameters of renal tubules. (3) Results: The simulations using this model clarified that SGLT1/2 contributed 15 and 85%, respectively, to RGR in the absence of LUS. However, in the presence of LUS, the contribution proportion of SGLT1 rose to 52-76% in healthy individuals and 55-83% in T2DM patients, and that of SGLT2 reduced to 24-48 and 17-45%, respectively. Furthermore, this model supported the underlying mechanism that only 23-40% inhibition of the total RGR with 5 mg of LUS is resulted from SGLT1's compensatory effect and the reabsorption activity of unbound SGLT2. (4) Conclusion: This PBPK-UGE model can predict PK and UGE in healthy individuals and T2DM patients and can also analyze the contribution of SGLT1/2 to RGR with and without LUS.
(1) 目的:建立一个结合生理药代动力学和尿糖排泄(PBPK - UGE)的数学模型,以同时预测鲁格列净(LUS)的药代动力学(PK)和尿糖排泄变化,并探讨钠 - 葡萄糖共转运蛋白(SGLT1和SGLT2)在人体肾葡萄糖重吸收(RGR)中的作用。(2) 方法:利用物理化学和生化性质、结合动力学数据、葡萄糖对SGLTs的亲和力以及肾小管的生理参数建立PBPK - UGE模型。(3) 结果:使用该模型进行的模拟表明,在不存在LUS的情况下,SGLT1/2对RGR的贡献分别为15%和85%。然而,在存在LUS的情况下,SGLT1的贡献比例在健康个体中升至52 - 76%,在2型糖尿病患者中升至55 - 83%,而SGLT2的贡献比例分别降至24 - 48%和17 - 45%。此外,该模型支持这样一种潜在机制,即5 mg LUS对总RGR仅23 - 40%的抑制是由SGLT1的代偿作用和未结合的SGLT2的重吸收活性导致的。(4) 结论:该PBPK - UGE模型可以预测健康个体和2型糖尿病患者的PK和UGE,还可以分析SGLT1/2在有和没有LUS情况下对RGR的贡献。