171 results on '"Ilieva, Mirolyuba"'
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2. List of contributors
3. The emerging roles of epitranscriptomic marks in cancer
4. Recommendations, guidelines, and best practice for the use of human induced pluripotent stem cells for neuropharmacological studies of neuropsychiatric disorders
5. Perspectives of LncRNAs for therapy
6. Superoxide dismutase isozymes in cerebral organoids from autism spectrum disorder patients
7. Knockdown of the long noncoding RNA PURPL induces apoptosis and sensitizes liver cancer cells to doxorubicin
8. Recommendations for Bioinformatic Tools in lncRNA Research
9. Ilieva, Mirolyuba Simeonova
10. Systematic analysis and characterization of long non-coding RNA genes in inflammatory bowel disease.
11. Non-Coding RNAs in Neurological and Neuropsychiatric Disorders: Unraveling the Hidden Players in Disease Pathogenesis.
12. Systematic analysis and characterization of long non-coding RNA genes in inflammatory bowel disease
13. In vitro models for ASD-patient-derived iPSCs and cerebral organoids
14. FGF2 and dual agonist of NCAM and FGF receptor 1, Enreptin, rescue neurite outgrowth loss in hippocampal neurons expressing mutated huntingtin proteins
15. Systematic Analysis of Long Non-Coding RNAs in Inflammasome Activation in Monocytes/Macrophages
16. Methods and Tools in RNA Biology
17. DoxoDB: A Database for the Expression Analysis of Doxorubicin-Induced lncRNA Genes
18. DoxoDB: A Database for the Expression Analysis of Doxorubicin-Induced lncRNA Genes
19. CrohnDB: A Web Database for Expression Profiling of Protein-Coding and Long Non-Coding RNA Genes in Crohn Disease
20. T2DB: A Web Database for Long Non-Coding RNA Genes in Type II Diabetes
21. The Non-Coding RNA Journal Club: Highlights on Recent Papers—12
22. Systematic Analysis of Long Non-Coding RNAs in Inflammasome Activation in Monocytes/Macrophages
23. DoxoDB:A Database for the Expression Analysis of Doxorubicin-Induced lncRNA Genes
24. T2DB:A Web Database for Long Non-Coding RNA Genes in Type II Diabetes
25. Potential usages of A-to-I RNA editing patterns as diagnostic biomarkers
26. Potential Usages of A-to-I RNA Editing Patterns as Diagnostic Biomarkers
27. Potential Involvement of LncRNAs in Cardiometabolic Diseases
28. Generation and characterization of induced pluripotent stem (iPS) cell line (SDUCTi001-A) using fibroblasts derived from male-healthy donor
29. MicroRNAs in Cancer and Cardiovascular Disease
30. Epigenetics and cerebral organoids: promising directions in autism spectrum disorders
31. Systematic Analysis of Long Non-Coding RNA Genes in Nonalcoholic Fatty Liver Disease
32. The current status of gene expression profilings in COVID‐19 patients
33. Long Non-Coding RNAs in Cardiac and Pulmonary Fibroblasts and Fibrosis
34. Functional roles of epitranscriptomic marks in the cardiovascular system and disease: a narrative review
35. Epitranscriptomics in fibroblasts and fibrosis
36. Extracellular RNAs as communicators in cardiovascular disease: a narrative review
37. The current status of gene expression profilings in COVID-19 patients
38. The Non-Coding RNA Journal Club: Highlights on Recent Papers—11
39. Long noncoding RNAs in induced pluripotent stem cells and their differentiation
40. Current Status of Epitranscriptomic Marks Affecting lncRNA Structures and Functions
41. FibroDB: Expression Analysis of Protein-Coding and Long Non-Coding RNA Genes in Fibrosis
42. Establishment of an induced pluripotent stem (iPS) cell line (SDUKIi006-A) from a 21-year old male patient diagnosed with atypical autism disorder
43. Generation of autism spectrum disorder patient-derived iPSC line SDUKIi004-A
44. Derivation of induced pluripotent stem cells (SDUKIi003-A) from a 20-year-old male patient diagnosed with Asperger syndrome
45. Generation of human induced pluripotent stem cells (SDUKIi002-A) from a 22-year-old male diagnosed with autism spectrum disorder
46. Artemin and an Artemin-Derived Peptide, Artefin, Induce Neuronal Survival, and Differentiation Through Ret and NCAM
47. Artemin and an Artemin-Derived Peptide, Artefin, Induce Neuronal Survival, and Differentiation Through Ret and NCAM
48. Autism in a 'Dish':Cerebral organoids modeling neurodevelopmental pathology
49. Neurodevelopment in a Dish:Elucidates the Miechanisms of Autism SDpectrum Disorders
50. "Neurodevelopment in a Dish" Elucidates the Mechanisms of Autism Spectrum Disorder
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