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pH 作为一种提高替莫唑胺抗肿瘤疗效的潜在治疗靶点:一项机制建模研究。

pH as a potential therapeutic target to improve temozolomide antitumor efficacy : A mechanistic modeling study.

机构信息

Université Grenoble Alpes CNRS TIMC-IMAG/DyCTIM2 Grenoble France.

INSERM and Paris Sud university UMRS 935 Team "Cancer Chronotherapy and Postoperative Liver Functions" Villejuif France.

出版信息

Pharmacol Res Perspect. 2019 Jan 28;7(1):e00454. doi: 10.1002/prp2.454. eCollection 2019 Feb.

Abstract

Despite intensive treatments including temozolomide (TMZ) administration, glioblastoma patient prognosis remains dismal and innovative therapeutic strategies are urgently needed. A systems pharmacology approach was undertaken to investigate TMZ pharmacokinetics-pharmacodynamics (PK-PD) incorporating the effect of local pH, tumor spatial configuration and micro-environment. A hybrid mathematical framework was designed coupling ordinary differential equations describing the intracellular reactions, with a spatial cellular automaton to individualize the cells. A differential drug impact on tumor and healthy cells at constant extracellular pH was computationally demonstrated as TMZ-induced DNA damage was larger in tumor cells as compared to normal cells due to less acidic intracellular pH in cancer cells. Optimality of TMZ efficacy defined as maximum difference between damage in tumor and healthy cells was reached for extracellular pH between 6.8 and 7.5. Next, TMZ PK-PD in a solid tumor was demonstrated to highly depend on its spatial configuration as spread cancer cells or fragmented tumors presented higher TMZ-induced damage as compared to compact tumor spheroid. Simulations highlighted that smaller tumors were less acidic than bigger ones allowing for faster TMZ activation and their closer distance to blood capillaries allowed for better drug penetration. For model parameters corresponding to U87 glioma cells, inter-cell variability in TMZ uptake play no role regarding the mean drug-induced damage in the whole cell population whereas this quantity was increased by inter-cell variability in TMZ efflux which was thus a disadvantage in terms of drug resistance. Overall, this study revealed pH as a new potential target to significantly improve TMZ antitumor efficacy.

摘要

尽管包括替莫唑胺(TMZ)给药在内的强化治疗,胶质母细胞瘤患者的预后仍然不佳,因此迫切需要创新的治疗策略。采用系统药理学方法研究 TMZ 的药代动力学-药效学(PK-PD),包括局部 pH、肿瘤空间构型和微环境的影响。设计了一种混合数学框架,将描述细胞内反应的常微分方程与个体化细胞的空间细胞自动机耦合。计算表明,在恒定的细胞外 pH 下,肿瘤和正常细胞对药物的影响存在差异,由于癌细胞内 pH 较低,TMZ 诱导的 DNA 损伤在肿瘤细胞中比正常细胞更大。TMZ 疗效的最优性定义为肿瘤和正常细胞之间损伤的最大差异,在细胞外 pH 为 6.8 到 7.5 之间达到。接下来,证明 TMZ 在实体瘤中的 PK-PD 高度依赖于其空间构型,因为扩散的癌细胞或碎片化的肿瘤比紧凑的肿瘤球体表现出更高的 TMZ 诱导损伤。模拟结果表明,较小的肿瘤比较大的肿瘤酸度更低,从而允许更快地激活 TMZ,并且它们离血管更近,允许更好的药物渗透。对于 U87 神经胶质瘤细胞的模型参数,TMZ 摄取的细胞间变异性对于整个细胞群体中平均药物诱导的损伤没有影响,而 TMZ 外排的细胞间变异性增加了这种损伤,因此在耐药性方面是不利的。总的来说,这项研究揭示了 pH 是一个新的潜在靶点,可以显著提高 TMZ 的抗肿瘤疗效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab6f/6349072/bd2389f62b9c/PRP2-7-e00454-g001.jpg

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