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Your search keyword '"Pazdrak, Konrad"' showing total 50 results

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1. Serendipitous Discovery of Novel 5-HT2AR Positive Allosteric Modulators (PAMs) Derived From 5-HT2CR PAM Scaffolds

2. 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

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

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)

24. Discovery of 4-Phenylpiperidine-2-Carboxamide Analogues as Serotonin 5-HT2CReceptor-Positive Allosteric Modulators with Enhanced Drug-like Properties

26. 205 Differential Proteomic Analysis of Esophageal Tissue Reveals Galectin-3 As Prominent Biomarker Candidate for Esophageal Eosinophilia

30. Proteomic Analysis in Esophageal Eosinophilia Reveals Differential Galectin-3 Expression and S-Nitrosylation.

35. Toward the proteome of the human peripheral blood eosinophil

41. Discovery of Novel Oleamide Analogues as Brain-Penetrant Positive Allosteric Serotonin 5-HT2CReceptor and Dual 5-HT2C/5-HT2AReceptor Modulators

43. Negative Transcriptional Regulation of Human Colonic Smooth Muscle Cav1.2 Channels by p50 and p65 Subunits of Nuclear Factor-κB.

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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