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Journal Articles

Prediction of tumor control probability in prostate cancer radiotherapy using a biophysical model incorporating cancer stem cell and hypoxia

Saga, Ryo*; Iwamori, Kenta*; Matsuya, Yusuke; Hosokawa, Yoichiro*

Computers in Biology and Medicine, 211, p.111743_1 - 111743_10, 2026/07

This study developed a biophysical model that integrates the characteristics of cancer stem cells (CSCs), including the side population (SP), and the oxygen enhancement effect (OER) to more accurately predict radiotherapy outcomes in prostate cancer. SP and main population (MP) cells were isolated from the DU145 prostate cancer cell line, and DNA double-strand breaks and survival were evaluated under both normoxic and hypoxic conditions ($$<$$0.1% O$$_{2}$$). The obtained data were analyzed using the IMK model incorporating MP, SP, and oxygen concentration, and the predictions were compared with clinical tumor control probability (TCP) under various fractionation regimens (2, 3, and 7 Gy/Fx). As a result, the in vitro and clinical data were well reproduced by considering the MP/SP fraction, a population-independent OER, and the intratumoral hypoxic volume. Furthermore, the initial yield of DSBs was identified as a key determinant of radiosensitivity depending on cell characteristics and oxygen levels. The developed model is expected to contribute to the optimization of prostate cancer radiotherapy, including dose escalation to hypoxic tumor regions.

Oral presentation

Investigation of the oxygen effects on the side population cells derived from prostate cancer cells using a cell-killing model considering heterogeneous radiosensitivity

Saga, Ryo*; Iwamori, Kenta*; Matsuya, Yusuke

no journal, , 

A cell-killing model that considers radioresistant cancer stem cells (CSCs) allows for a more accurate estimation of biological effects, including survival and tumor control probability. However, the impacts of oxygen conditions on the radiosensitivity of CSCs remain unclear. In this study, we conducted in vitro experiments and analyzed the relationship between the CSC fraction and oxygen enhancement ratio (OER) using a cell-killing model, specifically the integrated microdosimetric-kinetic (IMK) model. We utilized a cell sorter (BD FACS Aria) to sort side population (SP) cells, representing CSCs from the prostate cancer cell population, based on their Hoechst33342 efflux capacity and DNA content. We measured DNA double-strand breaks (DSBs) and cell survival of SP cells under both oxic and hypoxic conditions. The experimental results indicated reduced DSBs and increased survival in SP cells compared to the other main population cells. The model estimate showed that the OER values for MP and SP cells were 1.42 and 1.30, respectively. These results suggest that SP cells, which are rich in CSCs, display reduced oxygen effects due to their intrinsic radioresistance.

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