A Computational Framework to Infer Human Disease-Associated Long Noncoding RNAs
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Summary
A computational framework to accomplish this by combining human lncRNA expression profiles, gene expression profiles and human disease-associated gene data has reliable accuracy and will be helpful for identifying novel lncRNAs for human diseases.
- Type
- article
- Published
- 2014-01-02
- Cited by
- 125
- References
- 53
- Access
- Open access
- OpenAlex
- https://openalex.org/W1983335031
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:12053927
Keywords
Human disease, Computational biology, Biology, Long non-coding RNA, Disease
References
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- Fewer Genes, More Noncoding RNA
Cited by
- Constructing lncRNA functional similarity network based on lncRNA-disease associations and disease semantic similarity
- Predicting lncRNA-disease associations and constructing lncRNA functional similarity network based on the information of miRNA
- Transcriptome Complexity in Cardiac Development and Diseases
- Similarity computation strategies in the microRNA-disease network: a survey.
- The role of MALAT1/miR-1/slug axis on radioresistance in nasopharyngeal carcinoma
- A bioinformatics method for predicting long noncoding RNAs associated with vascular disease
- Prioritizing candidate disease-related long non-coding RNAs by walking on the heterogeneous lncRNA and disease network.
- A miRNA-Driven Inference Model to Construct Potential Drug-Disease Associations for Drug Repositioning
- Heterogeneous Network Model to Infer Human Disease-Long Intergenic Non-Coding RNA Associations
- Integrating Omics Technologies to Study Pulmonary Physiology and Pathology at the Systems Level
- Expression and prognostic significance of lncRNA MALAT1 in pancreatic cancer tissues.
- Prognostic value of long noncoding RNA MALAT1 in various carcinomas: evidence from nine studies
- A holistic approach for integration of biological systems and usage in drug discovery
- LncDisease: a sequence based bioinformatics tool for predicting lncRNA-disease associations
- Oligonucleotide analogues as modulators of the expression and function of noncoding RNAs (ncRNAs): emerging therapeutics applications.
- ILNCSIM: improved lncRNA functional similarity calculation model
- KATZLDA: KATZ measure for the lncRNA-disease association prediction
- FMLNCSIM: fuzzy measure-based lncRNA functional similarity calculation model
- Long non-coding RNAs and complex diseases: from experimental results to computational models
- HGIMDA: Heterogeneous graph inference for miRNA-disease association prediction
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