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19 results on '"Tran, Van Du T."'

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1. Immune digital twins for complex human pathologies: applications, limitations, and challenges.

2. Profiling of insulin-resistant kidney models and human biopsies reveals common and cell-type-specific mechanisms underpinning Diabetic Kidney Disease.

3. Multi-omics subgroups associated with glycaemic deterioration in type 2 diabetes: an IMI-RHAPSODY Study.

4. A Federated Database for Obesity Research: An IMI-SOPHIA Study.

5. An in vitro approach to understand contribution of kidney cells to human urinary extracellular vesicles.

6. Using in vivo transcriptomics and RNA enrichment to identify genes involved in virulence of Candida glabrata .

7. Candida albicans commensalism in the oral mucosa is favoured by limited virulence and metabolic adaptation.

8. Function Analysis of MBF1 , a Factor Involved in the Response to Amino Acid Starvation and Virulence in Candida albicans .

9. MetaNetX/MNXref: unified namespace for metabolites and biochemical reactions in the context of metabolic models.

10. Anti-adipogenic signals at the onset of obesity-related inflammation in white adipose tissue.

11. Condition-specific series of metabolic sub-networks and its application for gene set enrichment analysis.

12. Persistence of Candida albicans in the Oral Mucosa Induces a Curbed Inflammatory Host Response That Is Independent of Immunosuppression.

13. Comparative Genomics of Two Sequential Candida glabrata Clinical Isolates.

14. RNA Sequencing-Based Genome Reannotation of the Dermatophyte Arthroderma benhamiae and Characterization of Its Secretome and Whole Gene Expression Profile during Infection.

15. Detection of generic differential RNA processing events from RNA-seq data.

16. RNA Enrichment Method for Quantitative Transcriptional Analysis of Pathogens In Vivo Applied to the Fungus Candida albicans.

17. miRBoost: boosting support vector machines for microRNA precursor classification.

18. Supersecondary structure prediction of transmembrane beta-barrel proteins.

19. A graph-theoretic approach for classification and structure prediction of transmembrane β-barrel proteins.

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