- Works count
- 1,400
- Citation count
- 68,095
- H-index
- 133
- i10-index
- 527
Research interests
Publications
Physical activity and the risk of SARS-CoV-2 infection, severe COVID-19 illness and COVID-19 related mortality in South Korea: a nationwide cohort study
British Journal of Sports Medicine · 2021 · https://doi.org/10.1136/bjsports-2021-104203
Spatially organized multicellular immune hubs in human colorectal cancer
Cell · 2021 · https://doi.org/10.1016/j.cell.2021.08.003
The urgent need for integrated science to fight COVID-19 pandemic and beyond
Journal of Translational Medicine · 2020 · https://doi.org/10.1186/s12967-020-02364-2
Genome-wide Modeling of Polygenic Risk Score in Colorectal Cancer Risk
The American Journal of Human Genetics · 2020 · https://doi.org/10.1016/j.ajhg.2020.07.006
Adiposity, metabolites, and colorectal cancer risk: Mendelian randomization study
BMC Medicine · 2020 · https://doi.org/10.1186/s12916-020-01855-9
Circulating Levels of Insulin-like Growth Factor 1 and Insulin-like Growth Factor Binding Protein 3 Associate With Risk of Colorectal Cancer Based on Serologic and Mendelian Randomization Analyses
Gastroenterology · 2019 · https://doi.org/10.1053/j.gastro.2019.12.020
Fusobacterium nucleatum in Colorectal Cancer Relates to Immune Response Differentially by Tumor Microsatellite Instability Status
Cancer Immunology Research · 2018 · https://doi.org/10.1158/2326-6066.cir-18-0174
Genetic Mechanisms of Immune Evasion in Colorectal Cancer
Cancer Discovery · 2018 · https://doi.org/10.1158/2159-8290.cd-17-1327
Analysis of Fusobacterium persistence and antibiotic response in colorectal cancer
Science · 2017 · https://doi.org/10.1126/science.aal5240
Association of Dietary Patterns With Risk of Colorectal Cancer Subtypes Classified by Fusobacterium nucleatum in Tumor Tissue
JAMA Oncology · 2017 · https://doi.org/10.1001/jamaoncol.2016.6374
Fusobacterium nucleatum in Colorectal Carcinoma Tissue According to Tumor Location
Clinical and Translational Gastroenterology · 2016 · https://doi.org/10.1038/ctg.2016.53
Genomic Correlates of Immune-Cell Infiltrates in Colorectal Carcinoma
Cell Reports · 2016 · https://doi.org/10.1016/j.celrep.2016.03.075
Fusobacterium nucleatum in colorectal carcinoma tissue and patient prognosis
Gut · 2015 · https://doi.org/10.1136/gutjnl-2015-310101
Fusobacterium nucleatum and T Cells in Colorectal Carcinoma
JAMA Oncology · 2015 · https://doi.org/10.1001/jamaoncol.2015.1377
Elevation of circulating branched-chain amino acids is an early event in human pancreatic adenocarcinoma development
Nature Medicine · 2014 · 10.1038/nm.3686
Towards the introduction of the ‘Immunoscore’ in the classification of malignant tumours
The Journal of Pathology · 2013 · 10.1002/path.4287
Cancer classification using the Immunoscore: a worldwide task force
Journal of Translational Medicine · 2012 · 10.1186/1479-5876-10-205
Tumour micro-environment elicits innate resistance to RAF inhibitors through HGF secretion
Nature · 2012 · https://doi.org/10.1038/nature11183
Prognosis of invasive intraductal papillary mucinous neoplasm depends on histological and precursor epithelial subtypes
Gut · 2011 · https://doi.org/10.1136/gut.2010.232272
Genomic analysis identifies association of Fusobacterium with colorectal carcinoma
Genome Research · 2011 · 10.1101/gr.126573.111
NRAS Mutations Are Rare in Colorectal Cancer
Diagnostic Molecular Pathology · 2010 · https://doi.org/10.1097/pdm.0b013e3181c93fd1
PIK3CA Mutation in Colorectal Cancer: Relationship with Genetic and Epigenetic Alterations
Neoplasia · 2008 · https://doi.org/10.1593/neo.08336
Sensitive Sequencing Method for KRAS Mutation Detection by Pyrosequencing
Journal of Molecular Diagnostics · 2005 · https://doi.org/10.1016/s1525-1578(10)60571-5
Current projects
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