Artículos de revistas sobre el tema "Approcci proteomici"
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Jain, K. K. "Oncoproteomics: State-of-the-Art". Technology in Cancer Research & Treatment 1, n.º 4 (agosto de 2002): 219–20. http://dx.doi.org/10.1177/153303460200100401.
Texto completoSharma, Vipin Kumar y Ravi Kumar. "Current applications of proteomics: a key and novel approach". International Journal of Advances in Medicine 6, n.º 6 (25 de noviembre de 2019): 1953. http://dx.doi.org/10.18203/2349-3933.ijam20195259.
Texto completoKline, Rachel A., Lena Lößlein, Dominic Kurian, Judit Aguilar Martí, Samantha L. Eaton, Felipe A. Court, Thomas H. Gillingwater y Thomas M. Wishart. "An Optimized Comparative Proteomic Approach as a Tool in Neurodegenerative Disease Research". Cells 11, n.º 17 (26 de agosto de 2022): 2653. http://dx.doi.org/10.3390/cells11172653.
Texto completoGajahin Gamage, Nadeeka Thushari, Rina Miyashita, Kazutaka Takahashi, Shuichi Asakawa y Jayan Duminda Mahesh Senevirathna. "Proteomic Applications in Aquatic Environment Studies". Proteomes 10, n.º 3 (1 de septiembre de 2022): 32. http://dx.doi.org/10.3390/proteomes10030032.
Texto completoGlazyrin, Yury E., Dmitry V. Veprintsev, Irina A. Ler, Maria L. Rossovskaya, Svetlana A. Varygina, Sofia L. Glizer, Tatiana N. Zamay et al. "Proteomics-Based Machine Learning Approach as an Alternative to Conventional Biomarkers for Differential Diagnosis of Chronic Kidney Diseases". International Journal of Molecular Sciences 21, n.º 13 (7 de julio de 2020): 4802. http://dx.doi.org/10.3390/ijms21134802.
Texto completoBouamrani, Ali, Jessica Ternier, David Ratel, Alim-Louis Benabid, Jean-Paul Issartel, Elisabeth Brambilla y François Berger. "Direct-Tissue SELDI-TOF Mass Spectrometry Analysis: A New Application for Clinical Proteomics". Clinical Chemistry 52, n.º 11 (1 de noviembre de 2006): 2103–6. http://dx.doi.org/10.1373/clinchem.2006.070979.
Texto completoLaronga, Christine y Richard R. Drake. "Proteomic Approach to Breast Cancer". Cancer Control 14, n.º 4 (octubre de 2007): 360–68. http://dx.doi.org/10.1177/107327480701400406.
Texto completoGiannopoulou, Eugenia G., Spiros D. Garbis, Antonia Vlahou, Sofia Kossida, George Lepouras y Elias S. Manolakos. "Proteomic Feature Maps: A new visualization approach in proteomics analysis". Journal of Biomedical Informatics 42, n.º 4 (agosto de 2009): 644–53. http://dx.doi.org/10.1016/j.jbi.2009.01.007.
Texto completoCanetti, Diana, Francesca Brambilla, Nigel B. Rendell, Paola Nocerino, Janet A. Gilbertson, Dario Di Silvestre, Andrea Bergamaschi et al. "Clinical Amyloid Typing by Proteomics: Performance Evaluation and Data Sharing between Two Centres". Molecules 26, n.º 7 (29 de marzo de 2021): 1913. http://dx.doi.org/10.3390/molecules26071913.
Texto completoChang, Chiz-Tzung, Chao-Yuh Yang, Fuu-Jen Tsai, Shih-Yi Lin y Chao-Jung Chen. "Mass Spectrometry-Based Proteomic Study Makes High-Density Lipoprotein a Biomarker for Atherosclerotic Vascular Disease". BioMed Research International 2015 (2015): 1–13. http://dx.doi.org/10.1155/2015/164846.
Texto completoBlanco-Colio, Luis Miguel, Juan Antonio López, Roxana Martínez-Pinna Albar, Jesús Egido y José Luis Martín-Ventura. "Vascular proteomics, a translational approach: from traditional to novel proteomic techniques". Expert Review of Proteomics 6, n.º 5 (octubre de 2009): 461–64. http://dx.doi.org/10.1586/epr.09.66.
Texto completoJørgensen Cehofski, Lasse, Anders Kruse, Benedict Kjærgaard, Allan Stensballe, Bent Honoré y Henrik Vorum. "Dye-Free Porcine Model of Experimental Branch Retinal Vein Occlusion: A Suitable Approach for Retinal Proteomics". Journal of Ophthalmology 2015 (2015): 1–7. http://dx.doi.org/10.1155/2015/839137.
Texto completoLee, Yong Yook, Sung-Won Kim, Soo-Hyun Youn, Sun Hee Hyun, Jong-Su Kyung, Gyo In, Chae-Kyu Park et al. "Biological Effects of Korean Red Ginseng Polysaccharides in Aged Rat Using Global Proteomic Approach". Molecules 25, n.º 13 (1 de julio de 2020): 3019. http://dx.doi.org/10.3390/molecules25133019.
Texto completoSaleem, Mahwish, Syed K. Raza y Syed G Musharraf. "A comparative protein analysis of lung cancer, along with three controls using a multidimensional proteomic approach". Experimental Biology and Medicine 244, n.º 1 (enero de 2019): 36–41. http://dx.doi.org/10.1177/1535370219826525.
Texto completoVítámvás, P., K. Kosová y I. T. Prášil. "Proteome analysis in plant stress research: a review". Czech Journal of Genetics and Plant Breeding 43, No. 1 (7 de enero de 2008): 1–6. http://dx.doi.org/10.17221/1903-cjgpb.
Texto completoTsuchida, Sachio, Mamoru Satoh, Masaki Takiwaki y Fumio Nomura. "Current Status of Proteomic Technologies for Discovering and Identifying Gingival Crevicular Fluid Biomarkers for Periodontal Disease". International Journal of Molecular Sciences 20, n.º 1 (26 de diciembre de 2018): 86. http://dx.doi.org/10.3390/ijms20010086.
Texto completoTarbeeva, Svetlana, Anna Kozlova, Elizaveta Sarygina, Olga Kiseleva, Elena Ponomarenko y Ekaterina Ilgisonis. "Food for Thought: Proteomics for Meat Safety". Life 13, n.º 2 (17 de enero de 2023): 255. http://dx.doi.org/10.3390/life13020255.
Texto completoPitteri, Sharon y Sam Hanash. "A Systems Approach to the Proteomic Identification of Novel Cancer Biomarkers". Disease Markers 28, n.º 4 (2010): 233–39. http://dx.doi.org/10.1155/2010/270859.
Texto completoWang, Tao y Robin B. Gasser. "Prospects of Using High-Throughput Proteomics to Underpin the Discovery of Animal Host–Nematode Interactions". Pathogens 10, n.º 7 (30 de junio de 2021): 825. http://dx.doi.org/10.3390/pathogens10070825.
Texto completoNavarrete-Perea, José, Steven P. Gygi y Joao A. Paulo. "Temporal proteomic changes induced by nicotine in human cells: A quantitative proteomics approach". Journal of Proteomics 241 (junio de 2021): 104244. http://dx.doi.org/10.1016/j.jprot.2021.104244.
Texto completoKondo, Tadashi, Daisuke Kubota y Akira Kawai. "Application of Proteomics to Soft Tissue Sarcomas". International Journal of Proteomics 2012 (19 de junio de 2012): 1–15. http://dx.doi.org/10.1155/2012/876401.
Texto completoHohn, Andreas, Ivan Iovino, Fabrizio Cirillo, Hendrik Drinhaus, Kathrin Kleinbrahm, Lennert Boehm, Edoardo De Robertis y Jochen Hinkelbein. "Bioinformatical Analysis of Organ-Related (Heart, Brain, Liver, and Kidney) and Serum Proteomic Data to Identify Protein Regulation Patterns and Potential Sepsis Biomarkers". BioMed Research International 2018 (21 de marzo de 2018): 1–11. http://dx.doi.org/10.1155/2018/3576157.
Texto completovan Ginkel, Jetty, Mike Filius, Malwina Szczepaniak, Pawel Tulinski, Anne S. Meyer y Chirlmin Joo. "Single-molecule peptide fingerprinting". Proceedings of the National Academy of Sciences 115, n.º 13 (12 de marzo de 2018): 3338–43. http://dx.doi.org/10.1073/pnas.1707207115.
Texto completoTsai, Chia-Feng, Rui Zhao, Sarah M. Williams, Ronald J. Moore, Kendall Schultz, William B. Chrisler, Ljiljana Pasa-Tolic et al. "An Improved Boosting to Amplify Signal with Isobaric Labeling (iBASIL) Strategy for Precise Quantitative Single-cell Proteomics". Molecular & Cellular Proteomics 19, n.º 5 (3 de marzo de 2020): 828–38. http://dx.doi.org/10.1074/mcp.ra119.001857.
Texto completoAnnunziata, C. M., N. Azad, A. S. Dhamoon, G. Whiteley y E. C. Kohn. "Ovarian cancer in the proteomics era". International Journal of Gynecologic Cancer 18, Suppl 1 (2008): 1–6. http://dx.doi.org/10.1111/j.1525-1438.2007.01096.x.
Texto completoKalaiselvi, B. y M. Thangamani. "Computational Approaches for Understanding High Quality Mass Spectrometry Proteomic Data". Journal of Computational and Theoretical Nanoscience 16, n.º 2 (1 de febrero de 2019): 516–20. http://dx.doi.org/10.1166/jctn.2019.7761.
Texto completoHajjaji, Nawale, Mira Abbouchi, Lan Anh Nguyen, Samuel Charles, Sarah Leclercq, Delphine Bertin, Yves-Marie Robin, Isabelle Fournier y Michel Salzet. "A novel proteomic mass spectrometry-based approach to reveal functionally heterogeneous tumor clones in breast cancer metastases and identify clone-specific drug targets." Journal of Clinical Oncology 38, n.º 15_suppl (20 de mayo de 2020): e13063-e13063. http://dx.doi.org/10.1200/jco.2020.38.15_suppl.e13063.
Texto completoMontaño-Gutierrez, Luis F., Shinya Ohta, Georg Kustatscher, William C. Earnshaw y Juri Rappsilber. "Nano Random Forests to mine protein complexes and their relationships in quantitative proteomics data". Molecular Biology of the Cell 28, n.º 5 (marzo de 2017): 673–80. http://dx.doi.org/10.1091/mbc.e16-06-0370.
Texto completoWang, Jigang, Yew Mun Lee, Caixia Li, Ping Li, Zhen Li, Teck Kwang Lim, Zhiyuan Gong y Qingsong Lin. "Dramatic Improvement of Proteomic Analysis of Zebrafish Liver Tumor by Effective Protein Extraction with Sodium Deoxycholate and Heat Denaturation". International Journal of Analytical Chemistry 2015 (2015): 1–11. http://dx.doi.org/10.1155/2015/763969.
Texto completoCarrasco-Reinado, Rafael, Almudena Escobar-Niño, Carlos Fajardo, Ines M. Morano, Francisco Amil-Ruiz, Gonzalo Martinez-Rodríguez, Carlos Fuentes-Almagro et al. "Development of New Antiproliferative Compound against Human Tumor Cells from the Marine Microalgae Nannochloropsis gaditana by Applied Proteomics". International Journal of Molecular Sciences 22, n.º 1 (24 de diciembre de 2020): 96. http://dx.doi.org/10.3390/ijms22010096.
Texto completoBanerjee, Upamanyu y Ulisses M. Braga-Neto. "Bayesian ABC-MCMC Classification of Liquid Chromatography–Mass Spectrometry Data". Cancer Informatics 14s5 (enero de 2015): CIN.S30798. http://dx.doi.org/10.4137/cin.s30798.
Texto completoAzuaje, Francisco, Sang-Yoon Kim, Daniel Perez Hernandez y Gunnar Dittmar. "Connecting Histopathology Imaging and Proteomics in Kidney Cancer through Machine Learning". Journal of Clinical Medicine 8, n.º 10 (25 de septiembre de 2019): 1535. http://dx.doi.org/10.3390/jcm8101535.
Texto completoMcCague, Cathal y Lucian Beer. "Radioproteomics in patients with ovarian cancer". British Journal of Radiology 94, n.º 1125 (1 de septiembre de 2021): 20201331. http://dx.doi.org/10.1259/bjr.20201331.
Texto completoJohnson, Leigh Ann, Fan Zhang, Stephanie Large, James Hall y Sidney E. O’Bryant. "The impact of comorbid depression–diabetes on proteomic outcomes among community-dwelling Mexican Americans with mild cognitive impairment". International Psychogeriatrics 32, n.º 1 (29 de octubre de 2019): 17–23. http://dx.doi.org/10.1017/s1041610219001625.
Texto completoDytfeld, Dominik, Malathi Kandarpa, John R. Strahler, Dattatreya Mellacheruvu, Suchitra Subramani, Stephanie J. Kraftson, Lambert Ngoka, Alexey Nesvizhskii, Arun Sreekumar y Andrzej J. Jakubowiak. "Proteomic Signature Predicting Achievement of Very Good Partial Response In Patients with Multiple Myeloma Based On Complementary Label-Free and iTRAQ Quantitative Proteome Analysis". Blood 116, n.º 21 (19 de noviembre de 2010): 1902. http://dx.doi.org/10.1182/blood.v116.21.1902.1902.
Texto completoGuruceaga, Elizabeth, Alba Garin-Muga y Victor Segura. "MiTPeptideDB: a proteogenomic resource for the discovery of novel peptides". Bioinformatics 36, n.º 1 (27 de junio de 2019): 205–11. http://dx.doi.org/10.1093/bioinformatics/btz530.
Texto completoLapinel, Nicole, Jessie Guidry, Mary Varkey, Manish Rijal, Arnold Zea y Juzar Ali. "76215 Implementation of Proteomics as a Diagnostic tool for Nontuberculous mycobacteria (NTM) Infection". Journal of Clinical and Translational Science 5, s1 (marzo de 2021): 140–41. http://dx.doi.org/10.1017/cts.2021.759.
Texto completoRamirez, Juanma, Gorka Prieto, Anne Olazabal-Herrero, Eva Borràs, Elvira Fernandez-Vigo, Unai Alduntzin, Nerea Osinalde et al. "A Proteomic Approach for Systematic Mapping of Substrates of Human Deubiquitinating Enzymes". International Journal of Molecular Sciences 22, n.º 9 (3 de mayo de 2021): 4851. http://dx.doi.org/10.3390/ijms22094851.
Texto completoLahiri, Shibojyoti, Wasim Aftab, Lena Walenta, Leena Strauss, Matti Poutanen, Artur Mayerhofer y Axel Imhof. "MALDI-IMS combined with shotgun proteomics identify and localize new factors in male infertility". Life Science Alliance 4, n.º 3 (6 de enero de 2021): e202000672. http://dx.doi.org/10.26508/lsa.202000672.
Texto completoTan, Chee Fan, Hui San Teo, Jung Eun Park, Bamaprasad Dutta, Shun Wilford Tse, Melvin Khee-Shing Leow, Walter Wahli y Siu Kwan Sze. "Exploring Extracellular Vesicles Biogenesis in Hypothalamic Cells through a Heavy Isotope Pulse/Trace Proteomic Approach". Cells 9, n.º 5 (25 de mayo de 2020): 1320. http://dx.doi.org/10.3390/cells9051320.
Texto completoStaunton, Lisa, Kathleen O'Connell y Kay Ohlendieck. "Proteomic Profiling of Mitochondrial Enzymes during Skeletal Muscle Aging". Journal of Aging Research 2011 (2011): 1–9. http://dx.doi.org/10.4061/2011/908035.
Texto completoDaniel-Fischer, Lisa, Isabel J. Sobieszek, Anja Wagner, Juan Manuel Sacnun, Bruno Watschinger, Christoph Aufricht, Klaus Kratochwill y Rebecca Herzog. "In-Depth Analysis of the Extracorporeal Proteome Adsorbed to Dialysis Membranes during Hemodialysis". Membranes 12, n.º 11 (9 de noviembre de 2022): 1120. http://dx.doi.org/10.3390/membranes12111120.
Texto completoVinik, Yaron, Francisco Gabriel Ortega, Gordon B. Mills, Yilling Lu, Menucha Jurkowicz, Sharon Halperin, Mor Aharoni, Mordechai Gutman y Sima Lev. "Proteomic analysis of circulating extracellular vesicles identifies potential markers of breast cancer progression, recurrence, and response". Science Advances 6, n.º 40 (octubre de 2020): eaba5714. http://dx.doi.org/10.1126/sciadv.aba5714.
Texto completoSmith, Helen, Sharon Grant, Paula Meleady, Michael Henry, Donal O’Gorman, Martin Clynes y Richard Murphy. "Yeast Mannan-Rich Fraction Modulates Endogenous Reactive Oxygen Species Generation and Antibiotic Sensitivity in Resistant E. coli". International Journal of Molecular Sciences 24, n.º 1 (22 de diciembre de 2022): 218. http://dx.doi.org/10.3390/ijms24010218.
Texto completoArderiu, Gemma, Guiomar Mendieta, Alex Gallinat, Carmen Lambert, Alberto Díez-Caballero, Carlos Ballesta y Lina Badimon. "Type 2 Diabetes in Obesity: A Systems Biology Study on Serum and Adipose Tissue Proteomic Profiles". International Journal of Molecular Sciences 24, n.º 1 (3 de enero de 2023): 827. http://dx.doi.org/10.3390/ijms24010827.
Texto completoSenavirathna, Lakmini, Cheng Ma, Ru Chen y Sheng Pan. "Spectral Library-Based Single-Cell Proteomics Resolves Cellular Heterogeneity". Cells 11, n.º 15 (7 de agosto de 2022): 2450. http://dx.doi.org/10.3390/cells11152450.
Texto completoHarder, B., E. Casavant, J. McBride, K. T. Park, W. R. Mathews, V. G. Anania y A. Lekkerkerker. "P052 Comprehensive proteomic profiling of stool from UC and CD patients reveals expected and novel mucosal pathobiology, enabling identification of candidate non-invasive biomarkers to monitor mucosal disease activity". Journal of Crohn's and Colitis 15, Supplement_1 (1 de mayo de 2021): S160. http://dx.doi.org/10.1093/ecco-jcc/jjab076.181.
Texto completoCeolin Mariano, Douglas Oscar, Úrsula Castro de Oliveira, André Junqueira Zaharenko, Daniel Carvalho Pimenta, Gandhi Rádis-Baptista y Álvaro Rossan de Brandão Prieto-da-Silva. "Bottom-Up Proteomic Analysis of Polypeptide Venom Components of the Giant Ant Dinoponera Quadriceps". Toxins 11, n.º 8 (29 de julio de 2019): 448. http://dx.doi.org/10.3390/toxins11080448.
Texto completoChen, Yanyu, Wenyun Hou, Miner Zhong y Bin Wu. "Comprehensive Proteomic Analysis of Colon Cancer Tissue Revealed the Reason for the Worse Prognosis of Right-Sided Colon Cancer and Mucinous Colon Cancer at the Protein Level". Current Oncology 28, n.º 5 (15 de septiembre de 2021): 3554–72. http://dx.doi.org/10.3390/curroncol28050305.
Texto completoZhang, Zheyu, Wenbo Wang, Ling Jin, Xin Cao, Gonghui Jian, Ning Wu, Xia Xu, Ye Yao y Dongsheng Wang. "iTRAQ-Based Quantitative Proteomics Analysis of the Protective Effect of Yinchenwuling Powder on Hyperlipidemic Rats". Evidence-Based Complementary and Alternative Medicine 2017 (2017): 1–12. http://dx.doi.org/10.1155/2017/3275096.
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