An Algorithm to Define the Optimum Biological Dose of Metronomic Chemotherapy

A. Bhattacharjee, V. Patil, V. Noronha, A. Joshi, K. Prabhash
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引用次数: 1

Abstract

Summary The best effective dose of a chemotherapy is defined using the maximum tolerated dose (MTD) of toxicity. It is possible that the toxicity of a dose may increase when the dose-response curve is not monotonic. In the case of metronomic chemotherapy (MC) a 1/10th level of MC dose is considered as a targeted dose of therapy and is safer in terms of toxicity levels. The objective of this study is to develop an algorithm based on the dose response model of MC to evaluate the best effective dose based on the molecular target agent. The molecular target agent is defined as the optimal biological dose achieved by the best effective dose, as the lowest dose with the highest rate of safety and efficacy. The first proposed design is parametric and assumes a logistic dose-efficacy curve for dose determination, and the second design uses quadratic regression to identify the optimal biological dose. We conducted extensive simulation studies to investigate the operating characteristics of the proposed designs. Simulation studies provide a possible way to decide on the best effective dose of MC to be considered in further phases through the finding of the optimal biological dose. The proposed design is assumed, with the threshold value of optimum biological dose (OBD), to detect the best dose of MC. This consistent design with specific dose response models can be recommended for practice.
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一种确定节拍化疗最佳生物剂量的算法
化疗的最佳有效剂量是用毒性的最大耐受剂量(MTD)来定义的。当剂量-反应曲线不是单调的时,剂量的毒性可能会增加。在节拍化疗(MC)的情况下,1/10的MC剂量被认为是治疗的目标剂量,在毒性水平方面更安全。本研究的目的是基于MC的剂量响应模型,开发一种基于分子靶剂的最佳有效剂量评估算法。分子靶剂定义为最佳有效剂量所达到的最佳生物剂量,即安全效益率最高的最低剂量。第一个设计是参数化的,采用逻辑剂量-功效曲线来确定剂量,第二个设计使用二次回归来确定最佳生物剂量。我们进行了广泛的模拟研究,以调查建议设计的工作特性。模拟研究提供了一种可能的方法,通过寻找最佳生物剂量来确定MC的最佳有效剂量,以便在后续阶段考虑。该设计以最佳生物剂量(OBD)为阈值,用于检测MC的最佳剂量。该设计与特定剂量响应模型一致,可推荐用于实践。
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