MALDI mass spectrometric imaging based identification of clinically relevant signals in prostate cancer using large‐scale tissue microarrays
暂无分享,去创建一个
Malte Buchholz | Michael Becker | Dennis Trede | Hartwig Huland | Thorsten Schlomm | Matthias Witt | Maryam Omidi | Marcus Wurlitzer | Ronald Simon | Guido Sauter | Hartmut Schlüter | Marcel Kwiatkowski | D. Trede | M. Becker | M. Kwiatkowski | H. Schlüter | G. Sauter | T. Schlomm | S. Steurer | R. Simon | S. Minner | H. Huland | M. Buchholz | M. Witt | C. Koop | M. Wurlitzer | C. Borkowski | S. Odinga | M. Omidi | Olga Kraus | A. Bahar | A. Seddiqi | J. M. Singer | M. Trusch | Stefan Steurer | Carina Borkowski | Sinje Odinga | Christina Koop | Olga Kraus | Ahmad S Bahar | A Shoaib Seddiqi | Julius M Singer | Maria Trusch | Sarah Minner | A. Shoaib Seddiqi
[1] P. Carroll,et al. Initial treatment patterns and outcome of contemporary prostate cancer patients with bone metastases at initial presentation , 2007, Cancer.
[2] Peter Hoffmann,et al. Citric acid antigen retrieval (CAAR) for tryptic peptide imaging directly on archived formalin-fixed paraffin-embedded tissue. , 2010, Journal of proteome research.
[3] Jie Zhang,et al. Nuclear Receptor-Induced Chromosomal Proximity and DNA Breaks Underlie Specific Translocations in Cancer , 2009, Cell.
[4] Pier Paolo Pandolfi,et al. Aberrant ERG expression cooperates with loss of PTEN to promote cancer progression in the prostate , 2009, Nature Genetics.
[5] K. Schwamborn,et al. Proteomic tissue profiling for the improvement of grading of noninvasive papillary urothelial neoplasia. , 2012, Clinical biochemistry.
[6] R. Caprioli,et al. High-throughput profiling of formalin-fixed paraffin-embedded tissue using parallel electrophoresis and matrix-assisted laser desorption ionization mass spectrometry. , 2009, Analytical chemistry.
[7] T. Noda,et al. MALDI-based imaging mass spectrometry revealed abnormal distribution of phospholipids in colon cancer liver metastasis. , 2007, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.
[8] Danielle B. Gutierrez,et al. Spatial analysis of human lens aquaporin-0 post-translational modifications by MALDI mass spectrometry tissue profiling. , 2011, Experimental eye research.
[9] G. Sauter,et al. Chromosome 8p Deletions and 8q Gains are Associated with Tumor Progression and Poor Prognosis in Prostate Cancer , 2009, Clinical Cancer Research.
[10] R. Casadonte,et al. Proteomic analysis of formalin-fixed paraffin-embedded tissue by MALDI imaging mass spectrometry , 2011, Nature Protocols.
[11] Isidro Ferrer,et al. Anatomical Distribution of Lipids in Human Brain Cortex by Imaging Mass Spectrometry , 2011, Journal of the American Society for Mass Spectrometry.
[12] Chun-Chia Cheng,et al. Human Neutrophil Peptides 1–3 as Gastric Cancer Tissue Markers Measured by MALDI-Imaging Mass Spectrometry: Implications for Infiltrated Neutrophils as a Tumor Target , 2012, Disease markers.
[13] R. Shah,et al. Fluorescence in situ hybridization study shows association of PTEN deletion with ERG rearrangement during prostate cancer progression , 2009, Modern Pathology.
[14] Shigeki Kajihara,et al. Anal Bioanal Chem (2011) 400:1895–1904 DOI 10.1007/s00216-011-4895-5 ORIGINAL PAPER , 2022 .
[15] C. Sander,et al. Cooperativity of TMPRSS2-ERG with PI3-kinase pathway activation in prostate oncogenesis , 2009, Nature Genetics.
[16] J. Brooks,et al. Genomic profiling reveals alternative genetic pathways of prostate tumorigenesis. , 2007, Cancer research.
[17] Gerhard Jakse,et al. Identifying prostate carcinoma by MALDI-Imaging. , 2007, International journal of molecular medicine.
[18] A. Haese*,et al. Clinical Significance of Epidermal Growth Factor Receptor Protein Overexpression and Gene Copy Number Gains in Prostate Cancer , 2007, Clinical Cancer Research.
[19] O. Ludkovski,et al. Absence of TMPRSS2:ERG fusions and PTEN losses in prostate cancer is associated with a favorable outcome , 2008, Modern Pathology.
[20] M. Mottolese,et al. Human mena protein, a serex‐defined antigen overexpressed in breast cancer eliciting both humoral and CD8+ T‐cell immune response , 2004, International journal of cancer.
[21] Richard M Caprioli,et al. Imaging Mass Spectrometry—A New and Promising Method to Differentiate Spitz Nevi From Spitzoid Malignant Melanomas , 2012, The American Journal of dermatopathology.
[22] Hideaki Mizuno,et al. Molecular classification of prostate cancer using curated expression signatures , 2011, Proceedings of the National Academy of Sciences.
[23] Lisa H Cazares,et al. Imaging Mass Spectrometry of a Specific Fragment of Mitogen-Activated Protein Kinase/Extracellular Signal-Regulated Kinase Kinase Kinase 2 Discriminates Cancer from Uninvolved Prostate Tissue , 2009, Clinical Cancer Research.
[24] H. Prentice-Dunn,et al. Palladin Contributes to Invasive Motility in Human Breast Cancer Cells , 2008, Oncogene.
[25] H. Schlüter,et al. ERG Status Is Unrelated to PSA Recurrence in Radically Operated Prostate Cancer in the Absence of Antihormonal Therapy , 2011, Clinical Cancer Research.
[26] M. Clench,et al. MALDI-ion mobility separation-mass spectrometry imaging of glucose-regulated protein 78 kDa (Grp78) in human formalin-fixed, paraffin-embedded pancreatic adenocarcinoma tissue sections. , 2009, Journal of proteome research.
[27] R. Caprioli,et al. MALDI Imaging Mass Spectrometry – Painting Molecular Pictures , 2010, Molecular oncology.
[28] Pierre P Massion,et al. High‐throughput proteomic analysis of formalin‐fixed paraffin‐embedded tissue microarrays using MALDI imaging mass spectrometry , 2008, Proteomics.
[29] A. Jemal,et al. Global cancer statistics , 2011, CA: a cancer journal for clinicians.
[30] Maxence Wisztorski,et al. MALDI direct analysis and imaging of frozen versus FFPE tissues: what strategy for which sample? , 2010, Methods in molecular biology.
[31] A. Jemal,et al. Global Cancer Statistics , 2011 .
[32] J. Ferlay,et al. Global Cancer Statistics, 2002 , 2005, CA: a cancer journal for clinicians.
[33] Jean-Michel Camadro,et al. Imaging mass spectrometry provides fingerprints for distinguishing hepatocellular carcinoma from cirrhosis. , 2011, Journal of proteome research.
[34] G. Sauter,et al. Distinct Subcellular Expression Patterns of Neutral Endopeptidase (CD10) in Prostate Cancer Predict Diverging Clinical Courses in Surgically Treated Patients , 2008, Clinical Cancer Research.
[35] Z. Hall. Cancer , 1906, The Hospital.
[36] A. Haese*,et al. Clinical significance of p53 alterations in surgically treated prostate cancers , 2008, Modern Pathology.
[37] M. Setou,et al. Identification of oligosaccharides from histopathological sections by MALDI imaging mass spectrometry , 2012, Analytical and Bioanalytical Chemistry.
[38] Detlev Suckau,et al. Classification of HER2 receptor status in breast cancer tissues by MALDI imaging mass spectrometry. , 2010, Journal of proteome research.
[39] A. Holle,et al. Optimizing UV laser focus profiles for improved MALDI performance. , 2006, Journal of mass spectrometry : JMS.
[40] M. Rubin,et al. Pathway biomarker profiling of localized and metastatic human prostate cancer reveal metastatic and prognostic signatures. , 2009, Journal of proteome research.
[41] A. Haese*,et al. High level PSMA expression is associated with early psa recurrence in surgically treated prostate cancer , 2011, The Prostate.
[42] C. Sander,et al. Integrative genomic profiling of human prostate cancer. , 2010, Cancer cell.
[43] Sandra Rauser,et al. MALDI imaging mass spectrometry for direct tissue analysis: a new frontier for molecular histology , 2008, Histochemistry and Cell Biology.
[44] Andreas Kowarsch,et al. Classification of HER2/neu status in gastric cancer using a breast-cancer derived proteome classifier. , 2010, Journal of proteome research.
[45] K. Schey,et al. Age-related changes in the spatial distribution of human lens alpha-crystallin products by MALDI imaging mass spectrometry. , 2009, Investigative ophthalmology & visual science.
[46] Ariel Y Deutch,et al. Imaging mass spectrometry of proteins and peptides: 3D volume reconstruction , 2008, Nature Methods.
[47] R. Cooks,et al. Distinctive Glycerophospholipid Profiles of Human Seminoma and Adjacent Normal Tissues by Desorption Electrospray Ionization Imaging Mass Spectrometry , 2011, Journal of the American Society for Mass Spectrometry.
[48] Hartwig Huland,et al. Low Level Her2 Overexpression Is Associated with Rapid Tumor Cell Proliferation and Poor Prognosis in Prostate Cancer , 2010, Clinical Cancer Research.
[49] J. Zo,et al. Lipid MALDI profile classifies non-small cell lung cancers according to the histologic type. , 2012, Lung cancer.