50 results on '"Pazdrak, Konrad"'
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2. Discovery of Novel Oleamide Analogues as Brain-Penetrant Positive Allosteric Serotonin 5-HT2C Receptor and Dual 5-HT2C/5-HT2A Receptor Modulators
3. Functional Proteomics for the Characterization of Impaired Cellular Responses to Glucocorticoids in Asthma
4. Systems biology approaches to understanding Epithelial Mesenchymal Transition (EMT) in mucosal remodeling and signaling in asthma
5. Eosinophil resistance to glucocorticoid-induced apoptosis is mediated by the transcription factor NFIL3
6. Discovery of Novel Oleamide Analogues as Brain-Penetrant Positive Allosteric Serotonin 5‑HT2C Receptor and Dual 5‑HT2C/5-HT2A Receptor Modulators.
7. Molecular biological effects of selective neuronal nitric oxide synthase inhibition in ovine lung injury
8. Identification of Plasma Biomarkers Involved in Regulation of Inflammatory Pain
9. Oleamide Analogues as Positive Allosteric Modulators of the Serotonin (5‐HT) 5‑HT 2C and 5‑HT 2A Receptors
10. Functional Proteomics for the Characterization of Impaired Cellular Responses to Glucocorticoids in Asthma
11. MAPK activation is involved in posttranscriptional regulation of RSV-induced RANTES gene expression
12. Discovery of 4-Phenylpiperidine-2-Carboxamide Analogues as Serotonin 5-HT2C Receptor-Positive Allosteric Modulators with Enhanced Drug-like Properties
13. Negative Transcriptional Regulation of Human Colonic Smooth Muscle Cav1.2 Channels by p50 and p65 Subunits of Nuclear Factor-κB
14. Changes in nasal lavage fluid due to formaldehyde inhalation
15. TNFα suppresses human colonic circular smooth muscle cell contractility by SP1- and NF-κB-mediated induction of ICAM-1
16. Design, Synthesis, In Vitro , and In Silico Evaluation of a Novel Series of Serotonin 5‐HT 2C Receptor (5‐HT 2C R) Positive Allosteric Modulators (PAMs)
17. Lyn, Jak2, and Raf-1 Kinases Are Critical for the Antiapoptotic Effect of Interleukin 5, whereas only Raf-1 Kinase Is Essential for Eosinophil Activation and Degranulation
18. A role for Raf-1 downstream molecules, MEK1 kinase and NFκB nuclear factor in IL-5-induced prolongation of survival and upregulation of CD11b on eosinophils
19. Src Homology 2 Protein Tyrosine Phosphatase (SHPTP2)/Src Homology 2 Phosphatase 2 (SHP2) Tyrosine Phosphatase Is a Positive Regulator of the Interleukin 5 Receptor Signal Transduction Pathways Leading to the Prolongation of Eosinophil Survival
20. Serendipitous Discovery of Novel 5-HT2AR Positive Allosteric Modulators (PAMs) Derived From 5-HT2CR PAM Scaffolds
21. Discovery of 4‑Phenylpiperidine-2-Carboxamide Analogues as Serotonin 5‑HT2C Receptor-Positive Allosteric Modulators with Enhanced Drug-like Properties.
22. Activation of Human Peripheral Blood Eosinophils by Cytokines in a Comparative Time-Course Proteomic/Phosphoproteomic Study
23. Mechanisms of Glucocorticoid Resistance in Hypereosinophlic Syndromes
24. Discovery of 4-Phenylpiperidine-2-Carboxamide Analogues as Serotonin 5-HT2CReceptor-Positive Allosteric Modulators with Enhanced Drug-like Properties
25. Cytokine-Induced Glucocorticoid Resistance from Eosinophil Activation: Protein Phosphatase 5 Modulation of Glucocorticoid Receptor Phosphorylation and Signaling
26. 205 Differential Proteomic Analysis of Esophageal Tissue Reveals Galectin-3 As Prominent Biomarker Candidate for Esophageal Eosinophilia
27. Priming for Degranulation in Eosinophils Stimulated with Interleukin-5 (IL-5) Is Reversible
28. Differential Proteomic Analysis Of Eosinophils From Patients With Glucocorticoid Responsive Or Resistant Hypereosinophilic Syndrome
29. Eosinophils Through the CXCR4 Chemokine Receptor
30. Proteomic Analysis in Esophageal Eosinophilia Reveals Differential Galectin-3 Expression and S-Nitrosylation.
31. Altered Eosinophil Proteome in a Patient with Hypereosinophilia from Acute Fascioliasis
32. Proteomics of Airway Inflammatory Cells in Asthma Research
33. Priming of Eosinophils by GM-CSF Is Mediated by Protein Kinase CβII-Phosphorylated L-Plastin
34. A Pilot Study To Investigate The Proteomics Profile Of Asthmatic Patients With Varying Types Of Bronchitis
35. Toward the proteome of the human peripheral blood eosinophil
36. Lipoxin A4 Counterregulates GM-CSF Signaling in Eosinophilic Granulocytes
37. Cross-Talk between ICAM-1 and GM-CSF Receptor Signaling Modulates Eosinophil Survival and Activation
38. Protein kinase C ζ (PKCζ) regulates TNFα-induced expression of intercellular adhesion molecule 1 (ICAM-1) via transcription factors Sp1 and NF-ϰB p65 in human colonic circular smooth muscle cells (HCCSMC)
39. The Mapping of the Lyn Kinase Binding Site of the Common β Subunit of IL-3/Granulocyte-Macrophage Colony- Stimulating Factor/IL-5 Receptor
40. Respiratory Syncytial Virus-Infected Pulmonary Epithelial Cells Induce Eosinophil Degranulation by a CD18-Mediated Mechanism
41. Discovery of Novel Oleamide Analogues as Brain-Penetrant Positive Allosteric Serotonin 5-HT2CReceptor and Dual 5-HT2C/5-HT2AReceptor Modulators
42. The lnterleukin-5/Receptor Interaction Activates Lyn and Jak2 Tyrosine Kinases and Propagates Signals via the Ras-Raf-1-MAP Kinase and the Jak-STAT Pathways in Eosinophils
43. Negative Transcriptional Regulation of Human Colonic Smooth Muscle Cav1.2 Channels by p50 and p65 Subunits of Nuclear Factor-κB.
44. Airway response to formaldehyde inhalation in asthmatic subjects with suspected respiratory formaldehyde sensitization.
45. Oleamide Analogues as Positive Allosteric Modulators of the Serotonin (5‐HT) 5‑HT2C and 5‑HT2A Receptors.
46. 518 Activation of the transcription factor nuclear factor (NF)-κB in human eosinophils: Role in respiratory syncytial virus-mediated RANTES production
47. Discovery of Novel Oleamide Analogues as Brain-Penetrant Positive Allosteric Serotonin 5-HT 2C Receptor and Dual 5-HT 2C /5-HT 2A Receptor Modulators.
48. Discovery of 4-Phenylpiperidine-2-Carboxamide Analogues as Serotonin 5-HT 2C Receptor-Positive Allosteric Modulators with Enhanced Drug-like Properties.
49. Toward the Proteome of the Human Peripheral Blood Eosinophil.
50. Cross-talk between ICAM-1 and granulocyte-macrophage colony-stimulating factor receptor signaling modulates eosinophil survival and activation.
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