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人工智能指导的慢性肾脏病-矿物质骨代谢紊乱的精准治疗。

Artificial intelligence-guided precision treatment of chronic kidney disease-mineral bone disorder.

机构信息

Division of Nephrology, Department of Medicine, University of Louisville School of Medicine, Louisville, Kentucky, USA.

Medical Services, VA North Texas Health Sciences Center, Dallas, Texas, USA.

出版信息

CPT Pharmacometrics Syst Pharmacol. 2022 Oct;11(10):1305-1315. doi: 10.1002/psp4.12843. Epub 2022 Aug 3.

Abstract

Chronic kidney disease (CKD)-mineral bone disorder (MBD) is a complex clinical syndrome that begins early during CKD and evolves into one of the deadliest complications of CKD through its effects on the cardiovascular and skeletal systems. Achievement of treatment goals to decrease the risk of accelerated cardiovascular events and fractures has been challenging. We hypothesized that application of quantitative systems pharmacology (QSP) modeling combined with artificial intelligence techniques could improve the management of CKD-MBD with the goal of improving outcomes for patients with CKD. We present the implementation of a reinforcement learning (RL) approach to achieve the prescribed goals for serum calcium, phosphorus, and parathyroid hormone through concurrent dosing of phosphate binders, vitamin D analogs, and calcimimetics by simulation in 80 subjects in Matlab. In silico simulation results demonstrate that the application of a QSP model coupled with RL more effectively and quickly achieves treatment goals even in the setting of inferior simulated subject compliance with medical therapy and identifies key decision variables for therapeutic recommendations.

摘要

慢性肾脏病(CKD)-矿物质和骨异常(MBD)是一种复杂的临床综合征,在 CKD 早期就开始出现,并通过其对心血管和骨骼系统的影响,发展成为 CKD 最致命的并发症之一。实现降低加速心血管事件和骨折风险的治疗目标一直具有挑战性。我们假设,应用定量系统药理学(QSP)建模结合人工智能技术可以改善 CKD-MBD 的管理,从而改善 CKD 患者的预后。我们提出了一种强化学习(RL)方法的实施,通过在 Matlab 中对 80 名受试者进行模拟,同时给予磷酸盐结合剂、维生素 D 类似物和钙敏感受体激动剂,以实现血清钙、磷和甲状旁腺激素的规定目标。计算机模拟结果表明,即使在模拟患者对药物治疗的依从性较差的情况下,应用结合 RL 的 QSP 模型也能更有效地、更快地实现治疗目标,并确定治疗建议的关键决策变量。

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