Spatially resolved metabolomics to discover tumor-associated metabolic alterations
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Xin Li | Tiegang Li | Jiuming He | Zeper Abliz | Nan Bi | Luhua Wang | Yongmei Song | Ruiping Zhang | Jing Xu | Yongmei Song | Jing Xu | Ruiping Zhang | Yanzeng Hao | Jiuming He | Yanhua Chen | Guanggen Jiao | Z. Abliz | Zhigang Luo | Luojiao Huang | Tie-gang Li | Chenglong Sun | Xiaowei Song | Xin Li | Luhua Wang | Yanhua Chen | N. Bi | Chenglong Sun | Xiaowei Song | Luojiao Huang | Qingce Zang | Guanggen Jiao | Yanzeng Hao | Zhigang Luo | Zhonghua Wang | Jing Xu | Qingce Zang | Zhonghua Wang
[1] P. Ward,et al. Metabolic reprogramming: a cancer hallmark even warburg did not anticipate. , 2012, Cancer cell.
[2] M. V. Vander Heiden,et al. Targeting Metabolism for Cancer Therapy. , 2017, Cell chemical biology.
[3] Wei Liu,et al. Proline biosynthesis augments tumor cell growth and aerobic glycolysis: involvement of pyridine nucleotides , 2015, Scientific Reports.
[4] Mark Kriegsmann,et al. MALDI mass spectrometry imaging: A cutting‐edge tool for fundamental and clinical histopathology , 2016, Proteomics. Clinical applications.
[5] Jiuming He,et al. A Sensitive and Wide Coverage Ambient Mass Spectrometry Imaging Method for Functional Metabolites Based Molecular Histology , 2018, Advanced science.
[6] A. Darzi,et al. Spatially resolved metabolic phenotyping of breast cancer by desorption electrospray ionization mass spectrometry. , 2015, Cancer research.
[7] Xinchun Chen,et al. Uridine homeostatic disorder leads to DNA damage and tumorigenesis. , 2016, Cancer letters.
[8] R. Cooks,et al. Mass Spectrometry Sampling Under Ambient Conditions with Desorption Electrospray Ionization , 2004, Science.
[9] P. Swanson. Immunohistochemistry as a Surrogate for Molecular Testing: A Review , 2015, Applied immunohistochemistry & molecular morphology : AIMM.
[10] Zoltan Takats,et al. Histology by mass spectrometry: label-free tissue characterization obtained from high-accuracy bioanalytical imaging. , 2010, Angewandte Chemie.
[11] Joerg M. Buescher,et al. Tradeoff between enzyme and metabolite efficiency maintains metabolic homeostasis upon perturbations in enzyme capacity , 2010, Molecular systems biology.
[12] Matthew G. Vander Heiden,et al. Understanding the Intersections between Metabolism and Cancer Biology , 2017, Cell.
[13] Bernhard Kuster,et al. Comprehensive Identification of Proteins from MALDI Imaging* , 2013, Molecular & Cellular Proteomics.
[14] Wei Liu,et al. Proline metabolism and cancer: emerging links to glutamine and collagen , 2014, Current opinion in clinical nutrition and metabolic care.
[15] Wanchang Lin,et al. Preprocessing, classification modeling and feature selection using flow injection electrospray mass spectrometry metabolite fingerprint data , 2008, Nature Protocols.
[16] Michael Becker,et al. FDR-controlled metabolite annotation for high-resolution imaging mass spectrometry , 2016, Nature Methods.
[17] Isaiah Norton,et al. Application of desorption electrospray ionization mass spectrometry imaging in breast cancer margin analysis , 2014, Proceedings of the National Academy of Sciences.
[18] Hua Li,et al. Fatty acid metabolism and prospects for targeted therapy of cancer , 2017 .
[19] L. Cantley,et al. Understanding the Warburg Effect: The Metabolic Requirements of Cell Proliferation , 2009, Science.
[20] A. Jarmusch,et al. Lipid and metabolite profiles of human brain tumors by desorption electrospray ionization-MS , 2016, Proceedings of the National Academy of Sciences.
[21] G. Cremaschi,et al. Enhancement of ionizing radiation response by histamine in vitro and in vivo in human breast cancer , 2015, Cancer biology & therapy.
[22] Wei Liu,et al. Reprogramming of proline and glutamine metabolism contributes to the proliferative and metabolic responses regulated by oncogenic transcription factor c-MYC , 2012, Proceedings of the National Academy of Sciences.
[23] Livia S. Eberlin,et al. Mass spectrometry imaging under ambient conditions. , 2013, Mass spectrometry reviews.
[24] Run-tao Tian,et al. MassImager: A software for interactive and in-depth analysis of mass spectrometry imaging data. , 2018, Analytica chimica acta.
[25] A. Darzi,et al. Intraoperative Tissue Identification Using Rapid Evaporative Ionization Mass Spectrometry , 2013, Science Translational Medicine.
[26] Yankai Xia,et al. Metabolomics profiles delineate uridine deficiency contributes to mitochondria-mediated apoptosis induced by celastrol in human acute promyelocytic leukemia cells , 2016, Oncotarget.
[27] Akos Vertes,et al. Laser ablation electrospray ionization for atmospheric pressure, in vivo, and imaging mass spectrometry. , 2007, Analytical chemistry.
[28] C. Thompson,et al. The Emerging Hallmarks of Cancer Metabolism. , 2016, Cell metabolism.
[29] V. Medina,et al. Histamine: a potential cytoprotective agent to improve cancer therapy? , 2015, Cell Death and Disease.
[30] Susumu Goto,et al. Data, information, knowledge and principle: back to metabolism in KEGG , 2013, Nucleic Acids Res..
[31] M. Gillette,et al. Dopamine-modified TiO2 monolith-assisted LDI MS imaging for simultaneous localization of small metabolites and lipids in mouse brain tissue with enhanced detection selectivity and sensitivity , 2017, Chemical Science.
[32] R. Tibshirani,et al. Alteration of the lipid profile in lymphomas induced by MYC overexpression , 2014, Proceedings of the National Academy of Sciences.
[33] R. Tibshirani,et al. Molecular assessment of surgical-resection margins of gastric cancer by mass-spectrometric imaging , 2014, Proceedings of the National Academy of Sciences.
[34] Richard E. Fan,et al. Diagnosis of prostate cancer by desorption electrospray ionization mass spectrometric imaging of small metabolites and lipids , 2017, Proceedings of the National Academy of Sciences.
[35] Chi V. Dang,et al. From Krebs to clinic: glutamine metabolism to cancer therapy , 2016, Nature Reviews Cancer.
[36] P. Woster,et al. Targeting polyamine metabolism for cancer therapy and prevention. , 2016, The Biochemical journal.
[37] R. Tibshirani,et al. Pancreatic Cancer Surgical Resection Margins: Molecular Assessment by Mass Spectrometry Imaging , 2016, PLoS medicine.
[38] H. Land,et al. Addiction to Coupling of the Warburg Effect with Glutamine Catabolism in Cancer Cells , 2016, Cell reports.
[39] R. Caprioli. Imaging mass spectrometry: Molecular microscopy for the new age of biology and medicine , 2016, Proteomics.
[40] L. Coussens,et al. Histamine restricts cancer: nothing to sneeze at , 2011, Nature Network Boston.
[41] Bernhard Spengler,et al. Atmospheric pressure MALDI mass spectrometry imaging of tissues and cells at 1.4-μm lateral resolution , 2016, Nature Methods.
[42] Michael P. Lisanti,et al. Cancer metabolism: a therapeutic perspective , 2017, Nature Reviews Clinical Oncology.