An image guided small animal radiation therapy platform (SmART) to monitor glioblastoma progression and therapy response

被引:20
|
作者
Yahyanejad, Sanaz [1 ]
van Hoof, Stefan J. [1 ]
Theys, Jan [1 ]
Barbeau, Lydie M. O. [1 ]
Granton, Patrick V. [2 ]
Paesmans, Kim [1 ]
Verhaegen, Frank [1 ]
Vooijs, Marc [1 ]
机构
[1] Maastricht Univ, GROW Sch Dev Biol & Oncol, Dept Radiotherapy MaastRO, NL-6229 ER Maastricht, Netherlands
[2] London Hlth Sci Ctr, Dept Oncol, London, ON, Canada
基金
欧洲研究理事会;
关键词
Glioblastoma; Small animal radiation; 3D model; Image guided; Temozolomide; Micro-CT; TEMOZOLOMIDE; RESISTANCE; GROWTH; 3D;
D O I
10.1016/j.radonc.2015.06.020
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Background and purpose: Glioblastoma multiforme is the most common malignant brain tumor. Standard treatment including surgery, radiotherapy and chemotherapy with temozolomide is not curative. There is a great need for in vitro and in vivo models closely mimicking clinical practice to ensure better translation of novel preclinical findings. Methods and materials: A 3D spheroid model was established using the U87MG cell line. The efficacy of temozolomide, RT and combinations was assessed using growth delay assays. Orthotopic glioblastoma tumors were established, different radiation doses delivered based on micro-CT based treatment planning (SmART-plan) and dose volume histograms (DVH) were determined. Tumor growth was monitored using bioluminescent imaging. Results: 3D spheroid cultures showed a dose-dependent growth delay upon single and combination treatments. Precise uniform radiation was achieved in all in vivo treatment groups at all doses tested, and DVHs showed accurate dose coverage in the planning target volume which resulted in tumor growth delay. Conclusion: We demonstrate that 3D spheroid technology can be reliably used for treatment efficacy evaluation and that mimicking a clinical setting is also possible in small animals. Both these in vitro and in vivo techniques can be combined for clinically relevant testing of novel drugs combined with radiation. (C) 2015 Elsevier Ireland Ltd. All rights reserved.
引用
收藏
页码:467 / 472
页数:6
相关论文
共 50 条
  • [1] Xenograft-based, platform-independent gene signatures to predict response to alkylating chemotherapy, radiation, and combination therapy for glioblastoma
    Zhao, Shuang G.
    Yu, Menggang
    Spratt, Daniel E.
    Chang, S. Laura
    Feng, Felix Y.
    Kim, Michelle M.
    Speers, Corey W.
    Carlson, Brett L.
    Mladek, Ann C.
    Lawrence, Theodore S.
    Sarkaria, Jann N.
    Wahl, Daniel R.
    NEURO-ONCOLOGY, 2019, 21 (09) : 1141 - 1149
  • [2] In silico analysis suggests differential response to bevacizumab and radiation combination therapy in newly diagnosed glioblastoma
    Hawkins-Daarud, Andrea
    Rockne, Russell
    Corwin, David
    Anderson, Alexander R. A.
    Kinahan, Paul
    Swanson, Kristin R.
    JOURNAL OF THE ROYAL SOCIETY INTERFACE, 2015, 12 (109)
  • [3] Towards Image-Guided Photodynamic Therapy of Glioblastoma
    Mallidi, Srivalleesha
    Huang, Huang-Chiao
    Liu, Joyce
    Mai, Zhiming
    Hasan, Tayyaba
    OPTICAL METHODS FOR TUMOR TREATMENT AND DETECTION: MECHANISMS AND TECHNIQUES IN PHOTODYNAMIC THERAPY XXII, 2013, 8568
  • [4] Combining PARP inhibitors with radiation therapy for the treatment of glioblastoma: Is PTEN predictive of response?
    Lester, A.
    Rapkins, R.
    Nixdorf, S.
    Khasraw, M.
    McDonald, K.
    CLINICAL & TRANSLATIONAL ONCOLOGY, 2017, 19 (03) : 273 - 278
  • [5] Rotor-based image-guided therapy of glioblastoma
    Pan, Zhenxing
    Zeng, Yaoxun
    Ye, Zhaoyi
    Li, Yushan
    Wang, Yakun
    Feng, Zhenzhen
    Bao, Ying
    Yuan, Jiongpeng
    Cao, Guining
    Dong, Jiapeng
    Long, Wei
    Lu, Yu-jing
    Zhang, Kun
    He, Yan
    Liu, Xujie
    JOURNAL OF CONTROLLED RELEASE, 2024, 368 : 650 - 662
  • [6] MRI-guided 3D conformal arc micro-irradiation of a F98 glioblastoma rat model using the Small Animal Radiation Research Platform (SARRP)
    Bolcaen, Julie
    Descamps, Benedicte
    Deblaere, Karel
    Boterberg, Tom
    Hallaert, Giorgio
    Van den Broecke, Caroline
    Decrock, Elke
    Vral, Anne
    Leybaert, Luc
    Vanhove, Christian
    Goethals, Ingeborg
    JOURNAL OF NEURO-ONCOLOGY, 2014, 120 (02) : 257 - 266
  • [7] Design and construction of gradient coils for an MRI-guided small animal radiation platform
    Grandinetti, Jace
    Zhong, Yuncheng
    Peng, Yuting
    Jia, Xun
    HELIYON, 2024, 10 (04)
  • [8] Applying a Radiation Therapy Volume Analysis Pipeline to Determine the Utility of Spectroscopic MRI-Guided Adaptive Radiation Therapy for Glioblastoma
    Trivedi, Anuradha G.
    Kim, Su Hyun
    Ramesh, Karthik K.
    Giuffrida, Alexander S.
    Weinberg, Brent D.
    Mellon, Eric A.
    Kleinberg, Lawrence R.
    Barker, Peter B.
    Han, Hui
    Shu, Hui-Kuo G.
    Shim, Hyunsuk
    Schreibmann, Eduard
    TOMOGRAPHY, 2023, 9 (03) : 1052 - 1061
  • [9] Magnetic Resonance-Guided Laser Interstitial Thermal Therapy for Recurrent Glioblastoma and Radiation Necrosis: A Single-Surgeon Case Series
    Jubran, Jubran H.
    Scherschinski, Lea
    Dholaria, Nikhil
    Shaftel, Kelly A.
    Farhadi, Dara S.
    Oladokun, Femi C.
    Hendricks, Benjamin K.
    Smith, Kris A.
    WORLD NEUROSURGERY, 2024, 182 : E453 - E462
  • [10] Helical tomotherapy: Image-guided intensity modulated radiation therapy
    Keum, Ki Chang
    JOURNAL OF THE KOREAN MEDICAL ASSOCIATION, 2008, 51 (07): : 619 - 629