质子治疗诱发的复发和第二次癌症风险模型。

IF 0.8 4区 数学 Q4 BIOLOGY
V S K Manem, A Dhawan
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引用次数: 7

摘要

在过去的几年里,质子治疗已经成为治疗各种肿瘤类型的中心阶段。本研究的主要贡献是研究质子束放射治疗引起的肿瘤控制概率(TCP)、复发时间和相应的继发癌症风险。我们将肿瘤复发动力学纳入TCP框架,并计算相关的第二癌症风险。为了计算质子治疗诱导的继发性癌症诱导,我们使用了众所周知的生物学动机数学模型,启动-激活-增殖形式。我们使用可用的体外数据来研究细胞杀伤和突变诱导参数的线性能量转移(LET)依赖性。我们评估了LET临床范围内质子的TCP和辐射诱导的第二次癌症风险,即肿瘤体积约为8$\mathrm{keV/μm}$,危险器官约为1-3$\mathrm{keV/μm}$。这项研究可以作为该领域进一步工作的框架,并阐明质子诱导的TCP和相关的继发癌症风险,这些风险以前在文献中没有报道。尽管对更多细胞系的研究将减少模型参数内的不确定性,但我们认为,其中提出的理论框架是评估各种治疗计划中质子辐射TCP、复发和致癌影响的充分理由。我们发现,与光子疗法相比,质子疗法显著降低了继发性恶性肿瘤的风险,并且对于同等给药方案,可以更好地控制肿瘤,并降低原发性复发的结果,尤其是在低分级方案中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Modelling recurrence and second cancer risks induced by proton therapy.

Modelling recurrence and second cancer risks induced by proton therapy.

Modelling recurrence and second cancer risks induced by proton therapy.

Modelling recurrence and second cancer risks induced by proton therapy.

In the past few years, proton therapy has taken the centre stage in treating various tumour types. The primary contribution of this study is to investigate the tumour control probability (TCP), relapse time and the corresponding secondary cancer risks induced by proton beam radiation therapy. We incorporate tumour relapse kinetics into the TCP framework and calculate the associated second cancer risks. To calculate proton therapy-induced secondary cancer induction, we used the well-known biologically motivated mathematical model, initiation-inactivation-proliferation formalism. We used the available in vitro data for the linear energy transfer (LET) dependence of cell killing and mutation induction parameters. We evaluated the TCP and radiation-induced second cancer risks for protons in the clinical range of LETs, i.e. approximately 8 $\mathrm{keV/\mu m}$ for the tumour volume and 1-3 $\mathrm{keV/\mu m}$ for the organs at risk. This study may serve as a framework for further work in this field and elucidates proton-induced TCP and the associated secondary cancer risks, not previously reported in the literature. Although studies with a greater number of cell lines would reduce uncertainties within the model parameters, we argue that the theoretical framework presented within is a sufficient rationale to assess proton radiation TCP, relapse and carcinogenic effects in various treatment plans. We show that compared with photon therapy, proton therapy markedly reduces the risk of secondary malignancies and for equivalent dosing regimens achieves better tumour control as well as a reduced primary recurrence outcome, especially within a hypo-fractionated regimen.

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来源期刊
CiteScore
2.20
自引率
0.00%
发文量
15
审稿时长
>12 weeks
期刊介绍: Formerly the IMA Journal of Mathematics Applied in Medicine and Biology. Mathematical Medicine and Biology publishes original articles with a significant mathematical content addressing topics in medicine and biology. Papers exploiting modern developments in applied mathematics are particularly welcome. The biomedical relevance of mathematical models should be demonstrated clearly and validation by comparison against experiment is strongly encouraged. The journal welcomes contributions relevant to any area of the life sciences including: -biomechanics- biophysics- cell biology- developmental biology- ecology and the environment- epidemiology- immunology- infectious diseases- neuroscience- pharmacology- physiology- population biology
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