VCAM-1 targeted alpha-particle therapy for early brain metastases
暂无分享,去创建一个
M. Bernaudin | S. Valable | N. Sibson | J. Toutain | D. Divoux | K. Vallis | N. Falzone | O. Tietz | M. S. Soto | A. Corroyer-Dulmont | A. Frelin-Labalme | E. Pérès | Laurent Chazalviel
[1] N. Sibson,et al. VCAM-1–targeted MRI Enables Detection of Brain Micrometastases from Different Primary Tumors , 2018, Clinical Cancer Research.
[2] F. Mourtada,et al. The Impact of Radiation on the Tumor Microenvironment: Effect of Dose and Fractionation Schedules , 2018, Cancer growth and metastasis.
[3] D. Le Bihan,et al. Longitudinal Study of Irradiation-Induced Brain Microstructural Alterations With S-Index, a Diffusion MRI Biomarker, and MR Spectroscopy. , 2018, International journal of radiation oncology, biology, physics.
[4] M. Bernaudin,et al. Dosimetric evaluation of radionuclides for VCAM-1-targeted radionuclide therapy of early brain metastases , 2018, Theranostics.
[5] Martin R. Gill,et al. Targeted radionuclide therapy in combined-modality regimens. , 2017, The Lancet. Oncology.
[6] Youngkyoo Jung,et al. Alpha Particle Enhanced Blood Brain/Tumor Barrier Permeabilization in Glioblastomas Using Integrin Alpha-v Beta-3–Targeted Liposomes , 2017, Molecular Cancer Therapeutics.
[7] M. Gaze,et al. Improved outcome of 131I-mIBG treatment through combination with external beam radiotherapy in the SK-N-SH mouse model of neuroblastoma , 2017, Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology.
[8] Volker W Stieber,et al. Effect of Radiosurgery Alone vs Radiosurgery With Whole Brain Radiation Therapy on Cognitive Function in Patients With 1 to 3 Brain Metastases: A Randomized Clinical Trial. , 2016, JAMA.
[9] P. Gutin,et al. Remodeling the Vascular Microenvironment of Glioblastoma with α-Particles , 2016, The Journal of Nuclear Medicine.
[10] F. Kraeber-Bodéré,et al. Radio-immunothérapie alpha - Principes et intérêts en immunité antitumorale , 2016 .
[11] E. Mackenzie,et al. Multimodal imaging based on MRI and PET reveals [18F]FLT PET as a specific and early indicator of treatment efficacy in a preclinical model of recurrent glioblastoma , 2016, European Journal of Nuclear Medicine and Molecular Imaging.
[12] M. Luster,et al. New radiopharmaceutical agents for the treatment of castration-resistant prostate cancer. , 2015, The quarterly journal of nuclear medicine and molecular imaging : official publication of the Italian Association of Nuclear Medicine (AIMN) [and] the International Association of Radiopharmacology (IAR), [and] Section of the Society of....
[13] A. Robinson,et al. Causes of death and subsequent treatment after initial radical or palliative therapy of stage III non-small-cell lung cancer. , 2015, Current oncology.
[14] G. Bendas,et al. Vascular cell adhesion molecule‐1 (VCAM‐1)—An increasing insight into its role in tumorigenicity and metastasis , 2015, International journal of cancer.
[15] Daniel C. Anthony,et al. Functional role of endothelial adhesion molecules in the early stages of brain metastasis , 2013, Neuro-oncology.
[16] I. Navarro-Teulon,et al. Comparison between Internalizing Anti-HER2 mAbs and Non-Internalizing Anti-CEA mAbs in Alpha-Radioimmunotherapy of Small Volume Peritoneal Carcinomatosis Using 2 1 2Pb , 2013, PloS one.
[17] D. Neri,et al. Radretumab Radioimmunotherapy in Patients with Brain Metastasis: A 124I-L19SIP Dosimetric PET Study , 2013, Cancer Immunology Research.
[18] H. Immervoll,et al. In vivo animal models for studying brain metastasis: value and limitations , 2013, Clinical & Experimental Metastasis.
[19] Nathan Schneider,et al. Significant systemic therapeutic effects of high-LET immunoradiation by 212Pb-trastuzumab against prostatic tumors of androgen-independent human prostate cancer in mice. , 2012, International journal of oncology.
[20] A. Chambers,et al. In Vivo Magnetic Resonance Imaging for Investigating the Development and Distribution of Experimental Brain Metastases due to Breast Cancer. , 2012, Translational oncology.
[21] M. Robson,et al. Molecular MRI enables early and sensitive detection of brain metastases , 2012, Proceedings of the National Academy of Sciences.
[22] David J. Chen,et al. Mechanism of cluster DNA damage repair in response to high-atomic number and energy particles radiation. , 2011, Mutation research.
[23] S. Gerber,et al. Radiation-Induced IFN-γ Production within the Tumor Microenvironment Influences Antitumor Immunity1 , 2008, The Journal of Immunology.
[24] M. Hung,et al. Breast cancer brain metastases , 2007, Cancer and Metastasis Reviews.
[25] A. Alexander,et al. Diffusion tensor imaging of the brain , 2007, Neurotherapeutics.
[26] D. Visvikis,et al. GATE: a simulation toolkit for PET and SPECT , 2004, Physics in medicine and biology.
[27] Maria Werner-Wasik,et al. Whole brain radiation therapy with or without stereotactic radiosurgery boost for patients with one to three brain metastases: phase III results of the RTOG 9508 randomised trial , 2004, The Lancet.
[28] Jill S Barnholtz-Sloan,et al. Brain metastases: epidemiology. , 2018, Handbook of clinical neurology.
[29] F. Kraeber-Bodéré,et al. [Alpha-Radioimmunotherapy: principle and relevance in anti-tumor immunity]. , 2016, Medecine sciences : M/S.
[30] E. Mackenzie,et al. Noninvasive assessment of hypoxia with 3-[18F]-fluoro-1-(2-nitro-1-imidazolyl)-2-propanol ([18F]-FMISO): a PET study in two experimental models of human glioma , 2013, Biological chemistry.