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建模联合辐射和放射增敏剂后长期肿瘤生长和杀伤。

Modeling long-term tumor growth and kill after combinations of radiation and radiosensitizing agents.

机构信息

Fraunhofer-Chalmers Centre, Chalmers Science Park, Gothenburg, Sweden.

Department of Mathematical Sciences, Chalmers University of Technology and University of Gothenburg, Gothenburg, Sweden.

出版信息

Cancer Chemother Pharmacol. 2019 Jun;83(6):1159-1173. doi: 10.1007/s00280-019-03829-y. Epub 2019 Apr 11.

Abstract

PURPOSE

Radiation therapy, whether given alone or in combination with chemical agents, is one of the cornerstones of oncology. We develop a quantitative model that describes tumor growth during and after treatment with radiation and radiosensitizing agents. The model also describes long-term treatment effects including tumor regrowth and eradication.

METHODS

We challenge the model with data from a xenograft study using a clinically relevant administration schedule and use a mixed-effects approach for model-fitting. We use the calibrated model to predict exposure combinations that result in tumor eradication using Tumor Static Exposure (TSE).

RESULTS

The model is able to adequately describe data from all treatment groups, with the parameter estimates taking biologically reasonable values. Using TSE, we predict the total radiation dose necessary for tumor eradication to be 110 Gy, which is reduced to 80 or 30 Gy with co-administration of 25 or 100 mg kg of a radiosensitizer. TSE is also explored via a heat map of different growth and shrinkage rates. Finally, we discuss the translational potential of the model and TSE concept to humans.

CONCLUSIONS

The new model is capable of describing different tumor dynamics including tumor eradication and tumor regrowth with different rates, and can be calibrated using data from standard xenograft experiments. TSE and related concepts can be used to predict tumor shrinkage and eradication, and have the potential to guide new experiments and support translations from animals to humans.

摘要

目的

放射治疗,无论是单独使用还是与化学药物联合使用,都是肿瘤学的基石之一。我们开发了一个定量模型,用于描述在接受放射和放射增敏剂治疗期间和之后肿瘤的生长情况。该模型还描述了长期治疗效果,包括肿瘤复发和消除。

方法

我们使用临床相关给药方案的异种移植研究数据对模型进行了挑战,并使用混合效应方法进行模型拟合。我们使用校准后的模型来预测使用肿瘤静态暴露(TSE)导致肿瘤消除的暴露组合。

结果

该模型能够充分描述所有治疗组的数据,参数估计值具有合理的生物学意义。使用 TSE,我们预测肿瘤消除所需的总辐射剂量为 110Gy,如果与 25 或 100mg/kg 的放射增敏剂联合给药,则可减少至 80 或 30Gy。TSE 还通过不同生长和收缩率的热图进行了探索。最后,我们讨论了模型和 TSE 概念对人类的转化潜力。

结论

新模型能够描述不同的肿瘤动力学,包括具有不同速率的肿瘤消除和肿瘤复发,并可以使用标准异种移植实验的数据进行校准。TSE 和相关概念可用于预测肿瘤收缩和消除,并有可能指导新的实验并支持从动物到人类的转化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f20/6499765/6b8acb044efa/280_2019_3829_Fig1_HTML.jpg

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