27
views
0
recommends
+1 Recommend
0 collections
    0
    shares
      • Record: found
      • Abstract: found
      • Article: found
      Is Open Access

      Targeting MT1-MMP as an ImmunoPET-Based Strategy for Imaging Gliomas

      research-article

      Read this article at

      Bookmark
          There is no author summary for this article yet. Authors can add summaries to their articles on ScienceOpen to make them more accessible to a non-specialist audience.

          Abstract

          Background

          A critical challenge in the management of Glioblastoma Multiforme (GBM) tumors is the accurate diagnosis and assessment of tumor progression in a noninvasive manner. We have identified Membrane-type 1 matrix metalloproteinase (MT1-MMP) as an attractive biomarker for GBM imaging since this protein is actively involved in tumor growth and progression, correlates with tumor grade and is closely associated with poor prognosis in GBM patients. Here, we report the development of an immunoPET tracer for effective detection of MT1-MMP in GBM models.

          Methods

          An anti-human MT1-MMP monoclonal antibody (mAb), LEM2/15, was conjugated to p-isothiocyanatobenzyl-desferrioxamine (DFO-NCS) for 89Zr labeling. Biodistribution and PET imaging studies were performed in xenograft mice bearing human GBM cells (U251) expressing MT1-MMP and non-expressing breast carcinoma cells (MCF-7) as negative control. Two orthotopic brain GBM models, patient-derived neurospheres (TS543) and U251 cells, with different degrees of blood-brain barrier (BBB) disruption were also used for PET imaging experiments.

          Results

          89Zr labeling of DFO-LEM2/15 was achieved with high yield (>90%) and specific activity (78.5 MBq/mg). Biodistribution experiments indicated that 89Zr-DFO-LEM2/15 showed excellent potential as a radiotracer for detection of MT1-MMP positive GBM tumors. PET imaging also indicated a specific and prominent 89Zr-DFO-LEM2/15 uptake in MT1-MMP+ U251 GBM tumors compared to MT1-MMP- MCF-7 breast tumors. Results obtained in orthotopic brain GBM models revealed a high dependence of a disrupted BBB for tracer penetrance into tumors. 89Zr-DFO-LEM2/15 showed much higher accumulation in TS543 tumors with a highly disrupted BBB than in U251 orthotopic model in which the BBB permeability was only partially increased. Histological analysis confirmed the specificity of the immunoconjugate in all GBM models.

          Conclusion

          A new anti MT1-MMP-mAb tracer, 89Zr-DFO-LEM2/15, was synthesized efficiently. In vivo validation showed high-specific-contrast imaging of MT1-MMP positive GBM tumors and provided strong evidence for utility of MT1-MMP-targeted immunoPET as an alternate to nonspecific imaging of GBM.

          Related collections

          Most cited references52

          • Record: found
          • Abstract: found
          • Article: not found

          Molecular imaging of cancer with positron emission tomography.

          The imaging of specific molecular targets that are associated with cancer should allow earlier diagnosis and better management of oncology patients. Positron emission tomography (PET) is a highly sensitive non-invasive technology that is ideally suited for pre-clinical and clinical imaging of cancer biology, in contrast to anatomical approaches. By using radiolabelled tracers, which are injected in non-pharmacological doses, three-dimensional images can be reconstructed by a computer to show the concentration and location(s) of the tracer of interest. PET should become increasingly important in cancer imaging in the next decade.
            Bookmark
            • Record: found
            • Abstract: found
            • Article: not found

            A matrix metalloproteinase expressed on the surface of invasive tumour cells.

            Gelatinase A (type-IV collagenase; M(r) 72,000) is produced by tumour stroma cells and is believed to be crucial for their invasion and metastasis, acting by degrading extracellular matrix macro-molecules such as type IV collagen. An inactive precursor of gelatinase A (pro-gelatinase A) is secreted and activated in invasive tumour tissue as a result of proteolysis which is mediated by a fraction of tumour cell membrane that is sensitive to metalloproteinase inhibitors. Here we report the cloning of the complementary DNA encoding a new matrix metalloproteinase with a potential transmembrane domain. Expression of the gene product on the cell surface induces specific activation of pro-gelatinase A in vitro and enhances cellular invasion of the reconstituted basement membrane. Tumour cells of invasive lung carcinomas, which contain activated forms of gelatinase A, were found to express the transcript and the gene product. The new metalloproteinase may thus trigger invasion by tumour cells by activating pro-gelatinase A on the tumour cell surface.
              Bookmark
              • Record: found
              • Abstract: found
              • Article: not found

              Rembrandt: helping personalized medicine become a reality through integrative translational research.

              Finding better therapies for the treatment of brain tumors is hampered by the lack of consistently obtained molecular data in a large sample set and the ability to integrate biomedical data from disparate sources enabling translation of therapies from bench to bedside. Hence, a critical factor in the advancement of biomedical research and clinical translation is the ease with which data can be integrated, redistributed, and analyzed both within and across functional domains. Novel biomedical informatics infrastructure and tools are essential for developing individualized patient treatment based on the specific genomic signatures in each patient's tumor. Here, we present Repository of Molecular Brain Neoplasia Data (Rembrandt), a cancer clinical genomics database and a Web-based data mining and analysis platform aimed at facilitating discovery by connecting the dots between clinical information and genomic characterization data. To date, Rembrandt contains data generated through the Glioma Molecular Diagnostic Initiative from 874 glioma specimens comprising approximately 566 gene expression arrays, 834 copy number arrays, and 13,472 clinical phenotype data points. Data can be queried and visualized for a selected gene across all data platforms or for multiple genes in a selected platform. Additionally, gene sets can be limited to clinically important annotations including secreted, kinase, membrane, and known gene-anomaly pairs to facilitate the discovery of novel biomarkers and therapeutic targets. We believe that Rembrandt represents a prototype of how high-throughput genomic and clinical data can be integrated in a way that will allow expeditious and efficient translation of laboratory discoveries to the clinic.
                Bookmark

                Author and article information

                Contributors
                Role: Editor
                Journal
                PLoS One
                PLoS ONE
                plos
                plosone
                PLoS ONE
                Public Library of Science (San Francisco, CA USA )
                1932-6203
                27 July 2016
                2016
                : 11
                : 7
                : e0158634
                Affiliations
                [1 ]Biomedical Application of Radioisotopes Unit, Centro de Investigaciones Energéticas, Medioambientales y Tecnológicas (CIEMAT), Madrid, Spain
                [2 ]Seve Ballesteros Foundation Brain Tumour Group, Spanish National Cancer Research Centre (CNIO), Madrid, Spain
                [3 ]Histopathology Unit, Spanish National Cancer Research Centre (CNIO), Madrid, Spain
                [4 ]Matrix Metalloproteases Lab, Spanish National Center for Cardiovascular Research (CNIC), Madrid Spain
                [5 ]Proteomics Unit, Spanish National Cancer Research Centre (CNIO), Madrid, Spain
                [6 ]Molecular Imaging Unit, Spanish National Cancer Research Centre (CNIO), Madrid, Spain
                Swedish Neuroscience Institute, UNITED STATES
                Author notes

                Competing Interests: The authors have declared that no competing interests exist.

                Conceived and designed the experiments: AJS MS MAM JLMT FM. Performed the experiments: AJS AGL MO ER JAC. Analyzed the data: AJS MS AM MAM JLMT FM. Contributed reagents/materials/analysis tools: AGA. Wrote the paper: MS AJS MAM AGA JLMT FM.

                Article
                PONE-D-15-48101
                10.1371/journal.pone.0158634
                4962974
                27462980
                73036a74-f91f-486a-ad78-5a0bf59c8090
                © 2016 de Lucas et al

                This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.

                History
                : 3 November 2015
                : 20 June 2016
                Page count
                Figures: 4, Tables: 0, Pages: 19
                Funding
                Funded by: funder-id http://dx.doi.org/10.13039/100007225, Ministry of Science and Technology;
                Award ID: CENIT. 2008-06715-C02-1, RD07/0014/2009
                Award Recipient : Francisca Mulero
                Funded by: Fundacion Española para Ciencia y Tecnología
                Award ID: Precipita Crowdfunding
                Award Recipient : Francisca Mulero
                Funded by: Comunidad de Madrid
                Award ID: Angiobodies. S2010/BMD-2312
                Award Recipient : Jorge L Martinez-Torrecuadrada
                Funded by: Comunidad de Madrid
                Award ID: Angiobodies. S2010/BMD-2312
                Award Recipient : Alicia G Arroyo
                Funded by: funder-id http://dx.doi.org/10.13039/100007406, Fundación BBVA;
                Award ID: Grant for Research, Innovation and Cultural Creation
                Award Recipient : Alberto J Schuhmacher
                Funded by: M+Vision Advanced fellowship
                Award Recipient : Alberto J Schuhmacher
                Funded by: Marie Curie CIG grant
                Award ID: PCIG13-GA-2013-618751
                Award Recipient : Massimo Squatrito
                Funded by: Seve Ballesteros Foundation
                Award Recipient : Massimo Squatrito
                MAM JLMT AJS FMA: Crowdfunding platform "Precipita" FECYT (Spanish Foundation for Science and Technology) [ http://www.precipita.es/precipitado/deteccion-y-seguimiento-del-cancer-cerebral-mas-comun-y-danino.html]. AGA JLMT: Regional Government of Madrid Angiobodies Programme S2010/BMD-2312 [ http://www.madrid.org/cs/Satellite?buscador=true&c=CM_ConvocaPrestac_FA&cid=1142619643182&language=es&pagename=ComunidadMadrid%2FEstructura]. AJS: BBVA Foundation grant for Research, Innovation and Cultural Creation and M+Vision Advanced fellowship. MS: Marie Curie CIG grant & Seve Ballesteros Foundation grant.
                Categories
                Research Article
                Research and Analysis Methods
                Imaging Techniques
                Neuroimaging
                Positron Emission Tomography
                Biology and Life Sciences
                Neuroscience
                Neuroimaging
                Positron Emission Tomography
                Medicine and Health Sciences
                Diagnostic Medicine
                Diagnostic Radiology
                Tomography
                Positron Emission Tomography
                Research and Analysis Methods
                Imaging Techniques
                Diagnostic Radiology
                Tomography
                Positron Emission Tomography
                Medicine and Health Sciences
                Radiology and Imaging
                Diagnostic Radiology
                Tomography
                Positron Emission Tomography
                Research and Analysis Methods
                Histochemistry and Cytochemistry Techniques
                Immunohistochemistry Techniques
                Research and Analysis Methods
                Immunologic Techniques
                Immunohistochemistry Techniques
                Medicine and Health Sciences
                Oncology
                Cancers and Neoplasms
                Neurological Tumors
                Glioma
                Medicine and Health Sciences
                Neurology
                Neurological Tumors
                Glioma
                Medicine and Health Sciences
                Oncology
                Cancers and Neoplasms
                Blastomas
                Glioblastoma Multiforme
                Medicine and Health Sciences
                Oncology
                Cancers and Neoplasms
                Neurological Tumors
                Glioblastoma Multiforme
                Medicine and Health Sciences
                Neurology
                Neurological Tumors
                Glioblastoma Multiforme
                Research and Analysis Methods
                Imaging Techniques
                Neuroimaging
                Biology and Life Sciences
                Neuroscience
                Neuroimaging
                Medicine and Health Sciences
                Oncology
                Cancers and Neoplasms
                Breast Tumors
                Medicine and Health Sciences
                Diagnostic Medicine
                Cancer Detection and Diagnosis
                Medicine and Health Sciences
                Oncology
                Cancer Detection and Diagnosis
                Research and Analysis Methods
                Biological Cultures
                Cell Cultures
                Neurospheres
                Custom metadata
                All relevant data are within the paper and its Supporting Information files.

                Uncategorized
                Uncategorized

                Comments

                Comment on this article