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监督式机器学习表明,老年人和肥胖者的氨苯砜浓度较低。

Supervised Machine-Learning Reveals That Old and Obese People Achieve Low Dapsone Concentrations.

作者信息

Hall R G, Pasipanodya J G, Swancutt M A, Meek C, Leff R, Gumbo T

机构信息

Dose Optimization and Outcomes Research (DOOR) Program, School of Pharmacy, Texas Tech University Health Sciences Center, Dallas, Texas, USA.

Center for Infectious Diseases Research and Experimental Therapeutics, Baylor Research Institute, Baylor University Medical Center, Dallas, Texas, USA.

出版信息

CPT Pharmacometrics Syst Pharmacol. 2017 Aug;6(8):552-559. doi: 10.1002/psp4.12208. Epub 2017 Jul 13.

Abstract

The human species is becoming increasingly obese. Dapsone, which is extensively used across the globe for dermatological disorders, arachnid bites, and for treatment of several bacterial, fungal, and parasitic diseases, could be affected by obesity. We performed a clinical experiment, using optimal design, in volunteers weighing 44-150 kg, to identify the effect of obesity on dapsone pharmacokinetic parameters based on maximum-likelihood solution via the expectation-maximization algorithm. Artificial intelligence-based multivariate adaptive regression splines were used for covariate selection, and identified weight and/or age as predictors of absorption, systemic clearance, and volume of distribution. These relationships occurred only between certain patient weight and age ranges, delimited by multiple hinges and regions of discontinuity, not identified by standard pharmacometric approaches. Older and obese people have lower drug concentrations after standard dosing, but with complex patterns. Given that efficacy is concentration-dependent, optimal dapsone doses need to be personalized for obese patients.

摘要

人类正变得越来越肥胖。氨苯砜在全球广泛用于治疗皮肤病、蛛形纲动物叮咬以及多种细菌、真菌和寄生虫疾病,其药效可能会受到肥胖的影响。我们采用优化设计,对体重在44至150千克的志愿者进行了一项临床实验,以通过期望最大化算法的最大似然解来确定肥胖对氨苯砜药代动力学参数的影响。基于人工智能的多元自适应回归样条用于协变量选择,并确定体重和/或年龄为吸收、全身清除率和分布容积的预测因子。这些关系仅出现在由多个转折点和不连续区域界定的特定患者体重和年龄范围内,而标准的药理计量学方法并未识别出这些范围。年龄较大和肥胖的人在标准给药后药物浓度较低,但呈现出复杂的模式。鉴于疗效取决于药物浓度,肥胖患者的氨苯砜最佳剂量需要个体化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9f9/5572360/b6de281eb39d/PSP4-6-552-g001.jpg

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