133 results on '"Sterk, Geert Jan"'
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2. The Role of Water Networks in Phosphodiesterase Inhibitor Dissociation and Kinetic Selectivity.
3. Adhesion of Crithidia fasciculata promotes a rapid change in developmental fate driven by cAMP signaling.
4. Lead Optimization of the 5-Phenylpyrazolopyrimidinone NPD-2975 toward Compounds with Improved Antitrypanosomal Efficacy
5. Alkynamide phthalazinones as a new class of TbrPDEB1 inhibitors (Part 2)
6. Discovery of 5-Phenylpyrazolopyrimidinone Analogs as Potent Antitrypanosomal Agents with In Vivo Efficacy
7. Structural Optimization of BIPPO Analogs as Potent Antimalarials
8. Synthesis and evaluation of analogs of the phenylpyridazinone NPD-001 as potent trypanosomal TbrPDEB1 phosphodiesterase inhibitors and in vitro trypanocidals
9. Discovery and Hit-to-Lead Optimization of Benzothiazole Scaffold- Based DNA Gyrase Inhibitors with Potent Activity against Acinetobacter baumannii and Pseudomonas aeruginosa
10. To Target or Not to Target Schistosoma mansoni Cyclic Nucleotide Phosphodiesterase 4A?
11. To Target or Not to Target Schistosoma mansoni Cyclic Nucleotide Phosphodiesterase 4A?
12. To Target or Not to Target Schistosoma mansoni Cyclic Nucleotide Phosphodiesterase 4A?
13. New Dual Inhibitors of Bacterial Topoisomerases with Broad-Spectrum Antibacterial Activity and In Vivo Efficacy against Vancomycin-Intermediate Staphylococcus aureus
14. Fragment-Based Screening in Tandem with Phenotypic Screening Provides Novel Antiparasitic Hits
15. Discovery and Hit-to-Lead Optimization of Benzothiazole Scaffold-Based DNA Gyrase Inhibitors with Potent Activity against Acinetobacter baumannii and Pseudomonas aeruginosa
16. Adhesion of Crithidia fasciculata promotes a rapid change in developmental fate driven by cAMP signaling
17. Pharmacological Validation of Trypanosoma brucei Phosphodiesterases as Novel Drug Targets
18. Structure-Activity Relationship of Phenylpyrazolones against Trypanosoma cruzi
19. Discovery of Diaryl Ether Substituted Tetrahydrophthalazinones as TbrPDEB1 Inhibitors Following Structure-Based Virtual Screening
20. Tetrahydrophthalazinone inhibitor of phosphodiesterase with in vitro activity against intracellular trypanosomatids
21. Structure Activity Relationship of N-Substituted Phenyldihydropyrazolones Against Trypanosoma cruzi Amastigotes
22. Tetrahydrophthalazinone Inhibitor of Phosphodiesterase with In Vitro Activity against Intracellular Trypanosomatids
23. Discovery of Diaryl Ether Substituted Tetrahydrophthalazinones as TbrPDEB1 Inhibitors Following Structure-Based Virtual Screening
24. Phosphodiesterase inhibitors as a new generation of antiprotozoan drugs: exploiting the benefit of enzymes that are highly conserved between host and parasite
25. Efficacy of Novel Pyrazolone Phosphodiesterase Inhibitors in Experimental Mouse Models of Trypanosoma cruzi
26. Cloning and functional complementation of ten Schistosoma mansoni phosphodiesterases expressed in the mammalian host stages
27. Lead Optimization of Phthalazinone Phosphodiesterase Inhibitors as Novel Antitrypanosomal Compounds
28. Efficacy of Novel Pyrazolone Phosphodiesterase Inhibitors in Experimental Mouse Models of Trypanosoma cruzi
29. Evaluation of phthalazinone phosphodiesterase inhibitors with improved activity and selectivity against Trypanosoma cruzi
30. Identification of Phenylphthalazinones as a New Class of Leishmania infantum Inhibitors
31. Lead Optimization of Phthalazinone Phosphodiesterase Inhibitors as Novel Antitrypanosomal Compounds
32. Alkynamide phthalazinones as a new class of TbrPDEB1 inhibitors (part 1)
33. Evaluation of phthalazinone phosphodiesterase inhibitors with improved activity and selectivity against Trypanosoma cruzi
34. Identification of Phenylphthalazinones as a New Class of Leishmania infantum Inhibitors
35. Identification of Phenylpyrazolone Dimers as a New Class of Anti‐ Trypanosoma cruzi Agents
36. Inhibition of autotransporter biogenesis by small molecules
37. Evaluation of phthalazinone phosphodiesterase inhibitors with improved activity and selectivity against Trypanosoma cruzi.
38. Targeting a Subpocket in Trypanosoma brucei Phosphodiesterase B1 (TbrPDEB1) Enables the Structure-Based Discovery of Selective Inhibitors with Trypanocidal Activity
39. Targeting a Subpocket in Trypanosoma brucei Phosphodiesterase B1 (TbrPDEB1) Enables the Structure-Based Discovery of Selective Inhibitors with Trypanocidal Activity
40. Conformationally restricted κ-opioid receptor agonists: Synthesis and pharmacological evaluation of diastereoisomeric and enantiomeric decahydroquinoxalines
41. The single cyclic nucleotide-specific phosphodiesterase of the intestinal parasite Giardia lamblia represents a potential drug target
42. Design and Synthesis of Enantiomerically Pure Decahydroquinoxalines as Potent and Selective κ-Opioid Receptor Agonists with Anti-Inflammatory Activityin Vivo
43. Tetrahydrophthalazinone Inhibitor of Phosphodiesterase with In VitroActivity against Intracellular Trypanosomatids
44. Pharmacological Validation of Trypanosoma brucei Phosphodiesterases as Novel Drug Targets
45. Lead Optimization of Phthalazinone Phosphodiesterase Inhibitors as Novel Antitrypanosomal Compounds
46. Design and Synthesis of Enantiomerically Pure Decahydroquinoxalines as Potent and Selective κ-Opioid Receptor Agonists with Anti-Inflammatory Activity in Vivo.
47. Catechol Pyrazolinones as Trypanocidals: Fragment-Based Design, Synthesis, and Pharmacological Evaluation of Nanomolar Inhibitors of Trypanosomal Phosphodiesterase B1
48. Discovery and Hit-to-Lead Optimization of Benzothiazole Scaffold-Based DNA Gyrase Inhibitors with Potent Activity against Acinetobacter baumanniiand Pseudomonas aeruginosa
49. Histamine H2-receptor agonists. Synthesis, in vitro pharmacology, and qualitative structure-activity relationships of substituted 4- and 5-(2-aminoethyl)thiazoles
50. Studies on Histaminergic Compounds, IV Non-isosterism between the Imidazole, Guanidino and Isothiourea Moieties at the H2-Receptor.
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