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Updated: May 15, 2026

A Computational Modeling Approach to Investigate the Influence of Hyperthermia on the Tumor Microenvironment
Published on: December 1, 2023
Mathematical analysis and simulations involving chemotherapy and surgery on large human tumours under a suitable
Diego Samuel Rodrigues1, Paulo Fernando de Arruda Mancera
1Universidade de Sao Paulo, Depto de Matematica Aplicada e Estatistica, ICMC, USP, 13560-970, Sao Carlos, Brazil. diegosarodrigues@gmail.com
Abstract:
Dosage and frequency of treatment schedules are important for successful chemotherapy. However, in this work we argue that cell-kill response and tumoral growth should not be seen as separate and therefore are essential in a mathematical cancer model. This paper presents a mathematical model for sequencing of cancer chemotherapy and surgery. Our purpose is to investigate treatments for large human tumours considering a suitable cell-kill dynamics. We use some biological and pharmacological data in a numerical approach, where drug administration occurs in cycles (periodic infusion) and surgery is performed instantaneously. Moreover, we also present an analysis of stability for a chemotherapeutic model with continuous drug administration. According to Norton and Simon [22], our results indicate that chemotherapy is less efficient in treating tumours that have reached a plateau level of growing and that a combination with surgical treatment can provide better outcomes.
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