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Your search keyword '"Bianchi, Nicoletta"' showing total 21 results

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21 results on '"Bianchi, Nicoletta"'

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1. UC.183, UC.110, and UC.84 Ultra-Conserved RNAs Are Mutually Exclusive with miR-221 and Are Engaged in the Cell Cycle Circuitry in Breast Cancer Cell Lines.

2. Altered erythroid-related miRNA levels as a possible novel biomarker for detection of autologous blood transfusion misuse in sport.

3. BCL11A mRNA Targeting by miR-210: A Possible Network Regulating γ-Globin Gene Expression.

4. MicroRNAs Modulate the Purinergic Signaling Network.

5. MicroRNA miR-93-5p regulates expression of IL-8 and VEGF in neuroblastoma SK-N-AS cells.

6. High levels of apoptosis are induced in human glioma cell lines by co-administration of peptide nucleic acids targeting miR-221 and miR-222.

7. Regulation of IL-8 gene expression in gliomas by microRNA miR-93.

8. Increase of microRNA-210, decrease of raptor gene expression and alteration of mammalian target of rapamycin regulated proteins following mithramycin treatment of human erythroid cells.

9. Expression of microRNA-93 and Interleukin-8 during Pseudomonas aeruginosa-mediated induction of proinflammatory responses.

10. Uptake by human glioma cell lines and biological effects of a peptide-nucleic acids targeting miR-221.

11. Inhibition of miRNA maturation by peptide nucleic acids.

12. Molecular methods for validation of the biological activity of peptide nucleic acids targeting microRNAs.

13. Peptide nucleic acids targeting miR-221 modulate p27Kip1 expression in breast cancer MDA-MB-231 cells.

14. Cellular uptakes, biostabilities and anti-miR-210 activities of chiral arginine-PNAs in leukaemic K562 cells.

15. Targeting pre-miRNA by peptide nucleic acids: a new strategy to interfere in the miRNA maturation.

16. Involvement of miRNA in erythroid differentiation.

17. Modulation of the biological activity of microRNA-210 with peptide nucleic acids (PNAs).

18. miRNA therapeutics: delivery and biological activity of peptide nucleic acids targeting miRNAs.

19. Targeting microRNAs involved in human diseases: a novel approach for modification of gene expression and drug development.

20. Expression of miR-210 during erythroid differentiation and induction of gamma-globin gene expression.

21. Circulating microRNAs Suggest Networks Associated with Biological Functions in Aggressive Refractory Type 2 Celiac Disease.

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