Multicolor in vivo targeted imaging to guide real‐time surgery of HER2‐positive micrometastases in a two‐tumor coincident model of ovarian cancer
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Hisataka Kobayashi | Mikako Ogawa | Nobuyuki Kosaka | Peter L Choyke | N. Kosaka | M. Longmire | Hisataka Kobayashi | M. Ogawa | Michelle Longmire | P. Choyke
[1] Xiaoen Wang,et al. High‐malignancy orthotopic nude mouse model of human prostate cancer LNCaP , 1999, The Prostate.
[2] M. Longmire,et al. Real-Time Fluorescence-Enhanced Imaging as an Aid to Surgery in Ovarian Cancer , 2007, IEEE Journal of Selected Topics in Quantum Electronics.
[3] Robert M. Hoffman,et al. The multiple uses of fluorescent proteins to visualize cancer in vivo , 2005, Nature Reviews Cancer.
[4] Robert M. Hoffman,et al. Orthotopic Metastatic Mouse Models for Anticancer Drug Discovery and Evaluation: a Bridge to the Clinic , 2004, Investigational New Drugs.
[5] U. Mahmood,et al. Near infrared optical applications in molecular imaging , 2004, IEEE Engineering in Medicine and Biology Magazine.
[6] H. Hosick,et al. Establishment and characterization of a human ovarian serous cystadenocarcinoma cell line that produces the tumor markers CA-125 and tissue polypeptide antigen. , 1990, Oncology.
[7] Meng Yang,et al. Facile whole-body imaging of internal fluorescent tumors in mice with an LED flashlight. , 2005, BioTechniques.
[8] Hak Soo Choi,et al. Image-Guided Oncologic Surgery Using Invisible Light: Completed Pre-Clinical Development for Sentinel Lymph Node Mapping , 2006, Annals of Surgical Oncology.
[9] J. Mansfield,et al. Multispectral imaging in biology and medicine: Slices of life , 2006, Cytometry. Part A : the journal of the International Society for Analytical Cytology.
[10] Marcelino Bernardo,et al. A target cell-specific activatable fluorescence probe for in vivo molecular imaging of cancer based on a self-quenched avidin-rhodamine conjugate. , 2007, Cancer research.
[11] P. Choyke,et al. Spectral Fluorescence Molecular Imaging of Lung Metastases Targeting HER2/neu , 2007, Clinical Cancer Research.
[12] W. Carney,et al. Serum epidermal growth factor receptor/HER‐2 predicts poor survival in patients with metastatic breast cancer , 2006, Cancer.
[13] Tristan Barrett,et al. In vivo Diagnosis of Epidermal Growth Factor Receptor Expression using Molecular Imaging with a Cocktail of Optically Labeled Monoclonal Antibodies , 2007, Clinical Cancer Research.
[14] U. Mahmood. Near infrared optical applications in molecular imaging. Earlier, more accurate assessment of disease presence, disease course, and efficacy of disease treatment. , 2004, IEEE engineering in medicine and biology magazine : the quarterly magazine of the Engineering in Medicine & Biology Society.
[15] Robert A. Beckman,et al. Antibody-Based Therapy for Solid Tumors , 2008, Cancer journal.
[16] Ira Pastan,et al. Mesothelin: a new target for immunotherapy. , 2004, Clinical cancer research : an official journal of the American Association for Cancer Research.
[17] E. Solomon,et al. Current status of the molecular characterization of the ovarian cancer antigen CA125 and implications for its use in clinical screening. , 2003, Gynecologic oncology.
[18] H. P. Fell,et al. Role of epidermal growth factor receptor family members in growth and differentiation of breast carcinoma. , 1998, Biochemical Society symposium.
[19] Vasilis Ntziachristos,et al. Multispectral imaging using multiple-bandpass filters. , 2008, Optics letters.
[20] Tristan Barrett,et al. In vivo molecular imaging to diagnose and subtype tumors through receptor-targeted optically labeled monoclonal antibodies. , 2007, Neoplasia.
[21] Xiaoen Wang,et al. Development of a high metastatic orthotopic model of human renal cell carcinoma in nude mice: benefits of fragment implantation compared to cell-suspension injection , 1999, Clinical & Experimental Metastasis.
[22] M. Hung,et al. Aberrant expression of the c-erbB-2/neu protooncogene in ovarian cancer. , 1992, Cancer letters.