Literature DB >> 22761472

A tumor growth inhibition model for low-grade glioma treated with chemotherapy or radiotherapy.

Benjamin Ribba1, Gentian Kaloshi, Mathieu Peyre, Damien Ricard, Vincent Calvez, Michel Tod, Branka Cajavec-Bernard, Ahmed Idbaih, Dimitri Psimaras, Linda Dainese, Johan Pallud, Stéphanie Cartalat-Carel, Jean-Yves Delattre, Jérôme Honnorat, Emmanuel Grenier, François Ducray.   

Abstract

PURPOSE: To develop a tumor growth inhibition model for adult diffuse low-grade gliomas (LGG) able to describe tumor size evolution in patients treated with chemotherapy or radiotherapy. EXPERIMENTAL
DESIGN: Using longitudinal mean tumor diameter (MTD) data from 21 patients treated with first-line procarbazine, 1-(2-chloroethyl)-3-cyclohexyl-l-nitrosourea, and vincristine (PCV) chemotherapy, we formulated a model consisting of a system of differential equations, incorporating tumor-specific and treatment-related parameters that reflect the response of proliferative and quiescent tumor tissue to treatment. The model was then applied to the analysis of longitudinal tumor size data in 24 patients treated with first-line temozolomide (TMZ) chemotherapy and in 25 patients treated with first-line radiotherapy.
RESULTS: The model successfully described the MTD dynamics of LGG before, during, and after PCV chemotherapy. Using the same model structure, we were also able to successfully describe the MTD dynamics in LGG patients treated with TMZ chemotherapy or radiotherapy. Tumor-specific parameters were found to be consistent across the three treatment modalities. The model is robust to sensitivity analysis, and preliminary results suggest that it can predict treatment response on the basis of pretreatment tumor size data.
CONCLUSIONS: Using MTD data, we propose a tumor growth inhibition model able to describe LGG tumor size evolution in patients treated with chemotherapy or radiotherapy. In the future, this model might be used to predict treatment efficacy in LGG patients and could constitute a rational tool to conceive more effective chemotherapy schedules. ©2012 AACR.

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Year:  2012        PMID: 22761472     DOI: 10.1158/1078-0432.CCR-12-0084

Source DB:  PubMed          Journal:  Clin Cancer Res        ISSN: 1078-0432            Impact factor:   12.531


  35 in total

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Authors:  Raymond Y Huang; Robert J Young; Benjamin M Ellingson; Harini Veeraraghavan; Wei Wang; Florent Tixier; Hyemin Um; Rasheed Nawaz; Tracy Luks; John Kim; Elizabeth R Gerstner; David Schiff; Katherine B Peters; Ingo K Mellinghoff; Susan M Chang; Timothy F Cloughesy; Patrick Y Wen
Journal:  Neuro Oncol       Date:  2020-12-18       Impact factor: 12.300

2.  A mathematical model of tumor growth and its response to single irradiation.

Authors:  Yoichi Watanabe; Erik L Dahlman; Kevin Z Leder; Susanta K Hui
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3.  Ongoing and prolonged response in adult low-grade gliomas treated with radiotherapy.

Authors:  F Ducray; G Kaloshi; C Houillier; A Idbaih; B Ribba; D Psimaras; Y Marie; B Boisselier; A Alentorn; L Dainese; S Navarro; K Mokhtari; M Sanson; K Hoang-Xuan; Jean-Yves Delattre
Journal:  J Neurooncol       Date:  2013-08-17       Impact factor: 4.130

4.  A mathematical model of pre-diagnostic glioma growth.

Authors:  Marc Sturrock; Wenrui Hao; Judith Schwartzbaum; Grzegorz A Rempala
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Authors:  A Amelot; E Stretton; H Delingette; N Ayache; S Froelich; E Mandonnet
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6.  Oedema-based model for diffuse low-grade gliomas: application to clinical cases under radiotherapy.

Authors:  M Badoual; C Gerin; C Deroulers; B Grammaticos; J-F Llitjos; C Oppenheim; P Varlet; J Pallud
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Review 7.  The role of radiotherapy in the management of patients with diffuse low grade glioma: A systematic review and evidence-based clinical practice guideline.

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Authors:  Belén P Solans; María Jesús Garrido; Iñaki F Trocóniz
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10.  Characterization and quantification of necrotic tissues and morphology in multicellular ovarian cancer tumor spheroids using optical coherence tomography.

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