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In silico analysis to identify miR-1271-5p/PLCB4 (phospholipase C Beta 4) axis mediated oxaliplatin resistance in metastatic colorectal cancer
Cheng-Chin Lee
,
Ai-Wei Lee
,
Po-Li Wei
, Yi-Shin Liu
,
Yu-Jia Chang
, Chien-Yu Huang
Department of Anatomy and Cell Biology
International Ph.D. Program in Cell Therapy and Regenerative Medicine
TMU Research Center for Digestive Medicine
TMU Research Center of Cancer Translational Medicine
Taipei Medical University Hospital
Ph.D. Program for Cancer Molecular Biology and Drug Discovery
Master Program in Clinical Genomics and Proteomics
Graduate Institute of Clinical Medicine
Division of Colorectal surgery
International Master/Ph.D. Program in Medicine
TMU Research Center of Cell Therapy and Regeneration Medicine
Research output
:
Contribution to journal
›
Article
›
peer-review
7
Citations (Scopus)
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Dive into the research topics of 'In silico analysis to identify miR-1271-5p/PLCB4 (phospholipase C Beta 4) axis mediated oxaliplatin resistance in metastatic colorectal cancer'. Together they form a unique fingerprint.
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Medicine and Dentistry
Metastatic Colorectal Cancer
100%
In Silico
100%
Oxaliplatin
100%
Phospholipase C Beta4
100%
Survival Analysis
42%
Malignant Neoplasm
28%
Signal Transduction
28%
Gene Expression
14%
microRNA
14%
Overall Survival
14%
MAPK Signaling
14%
Regulator Gene
14%
Gene Set Enrichment
14%
Steroidogenesis
14%
Interaction Network
14%
Gene Expression Omnibus
14%
First-Line Chemotherapy
14%
Cytoscape
14%
VEGF Signaling
14%
Drug Resistance
14%
Biochemistry, Genetics and Molecular Biology
Computer Model
100%
Phospholipase C
100%
Hub Genes
71%
Gene Expression
28%
Signal Transduction
28%
Gene Ontology
28%
AKT3
28%
MicroRNA
14%
Overall Survival
14%
Candidate Gene
14%
MAPK Signaling
14%
Steroid Biosynthesis
14%
Bioinformatics Software
14%
VEGF Signaling
14%
Drug Resistance
14%
Regulatory Gene
14%
Gene Set Enrichment Analysis
14%