Chemicals interact with genes in the process of disease development and treatment. Although much biomedical research has been performed to understand relationships among genes, chemicals, and diseases, which have been reported in biomedical articles in Medline, there are few studies that extract disease–gene–chemical relationships from biomedical literature at a PubMed scale. In this study, we propose a deep learning model based on bidirectional long short-term memory to identify the evidence sentences of relationships among genes, chemicals, and diseases from Medline abstracts. Then, we develop the search engine DigChem to enable disease–gene–chemical relationship searches for 35,124 genes, 56,382 chemicals, and 5,675 diseases. We show tha...
The overwhelming amount of available scholarly literature in the life sciences poses significant cha...
Background: Understanding the relationships between genes, drugs, and disease states is at the core...
textabstractWe describe our approach to the chemical-disease relation (CDR) task in the BioCreative ...
Paper:Jeongkyun Kim, Jung-jae Kim, Hyunju Lee* (2019) DigChem: Identification of disease-gene-chemic...
Drug discovery is a strenuous manual effort. Relationships between chemicals and diseases (chemical-...
Biological events such as gene expression, regula-tion, phosphorylation, localization and protein ca...
The literature knowledge panels developed and implemented in PubChem are described. These help to un...
AbstractSince the genome project in 1990s, a number of studies associated with genes have been condu...
The article describes a knowledge-poor approach to the task of extracting Chemical-Disease Relations...
The biomedical literature constitutes a rich source of evidence tosupport the discovery of biomarker...
The increasing amount of scientific information available to researchers in the form of biomedical l...
Recent scientific advances have accumulated a tremendous amount of biomedical knowledge providing no...
Abstract Background Molecular biomarkers that can predict drug efficacy in cancer patients are cruci...
Analyzing the relationships among various drugs is an essential issue in the field of computational ...
[[abstract]]OBJECTIVES High-throughput techniques such as cDNA microarray, oligonucleotide arrays, a...
The overwhelming amount of available scholarly literature in the life sciences poses significant cha...
Background: Understanding the relationships between genes, drugs, and disease states is at the core...
textabstractWe describe our approach to the chemical-disease relation (CDR) task in the BioCreative ...
Paper:Jeongkyun Kim, Jung-jae Kim, Hyunju Lee* (2019) DigChem: Identification of disease-gene-chemic...
Drug discovery is a strenuous manual effort. Relationships between chemicals and diseases (chemical-...
Biological events such as gene expression, regula-tion, phosphorylation, localization and protein ca...
The literature knowledge panels developed and implemented in PubChem are described. These help to un...
AbstractSince the genome project in 1990s, a number of studies associated with genes have been condu...
The article describes a knowledge-poor approach to the task of extracting Chemical-Disease Relations...
The biomedical literature constitutes a rich source of evidence tosupport the discovery of biomarker...
The increasing amount of scientific information available to researchers in the form of biomedical l...
Recent scientific advances have accumulated a tremendous amount of biomedical knowledge providing no...
Abstract Background Molecular biomarkers that can predict drug efficacy in cancer patients are cruci...
Analyzing the relationships among various drugs is an essential issue in the field of computational ...
[[abstract]]OBJECTIVES High-throughput techniques such as cDNA microarray, oligonucleotide arrays, a...
The overwhelming amount of available scholarly literature in the life sciences poses significant cha...
Background: Understanding the relationships between genes, drugs, and disease states is at the core...
textabstractWe describe our approach to the chemical-disease relation (CDR) task in the BioCreative ...