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3. Profiling Activity of Cellular Kinases in Migrating T-Cells

4. Nasal disease with polyps: need for clarity

10. LC-MS Characterization and Biological Activities of Cuban Cultivars of Plectranthus neochilus Schltr

11. Contributors

14. Mangiferin induced fatty acid b-oxidation and ketogenic metabolism promote antiproliferative, antiangiogenic and antimetastatic therapeutic effects in a preclinical colorectal cancer mouse model

17. Phosphocatalytic kinome activity profiling of apoptotic and ferroptotic agents in multiple myeloma cells

20. Covalent Cysteine Targeting of Bruton’s Tyrosine Kinase (BTK) Family by Withaferin-A Reduces Survival of Glucocorticoid-Resistant Multiple Myeloma MM1 Cells

26. Nasal Polyposis: More than a Chronic Inflammatory Disorder—A Disease of Mechanical Dysfunction—The São Paulo Position

27. Enhanced release of IgE-dependent early phase mediators from nasal polyp tissue

31. T cell inflammatory response, Foxp3 and TNFRS18-L regulation of peripheral blood mononuclear cells from patients with nasal polyps-asthma after staphylococcal superantigen stimulation

32. Identification of the nasal mucosa as a new target for leptin action

33. Staphylococcus aureus enterotoxin B regulates prostaglandin E-2 synthesis, growth, and migration in nasal tissue fibroblasts

34. Nasal Polyp-Derived Mesenchymal Stromal Cells Exhibit Lack of Immune-Associated Molecules and High Levels of Stem/Progenitor Cells Markers.

36. Quantitative real time polymerase chain reaction for measurement of human interleukin-5 receptor alpha spliced isoforms mRNA

37. The need for transparency and good practices in the qPCR literature

39. The Pathogenesis of CRS: An Update

42. Epithelium and stroma from nasal polyp mucosa exhibits inverse expression of TGF-β1 as compared with healthy nasal mucosa.

43. Prevalence of chronic rhinosinusitis in São Paulo.

44. Transforming Growth Factor β1 in Nasal Remodeling: Differences between Chronic Rhinosinusitis and Nasal Polyposis

45. The steroidal lactone withaferin A impedes T-cell motility by inhibiting the kinase ZAP70 and subsequent kinome signaling.

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