74 results on '"Menozzi, Giulia"'
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2. Quinolinedione nucleus as a novel scaffold for A1 and A2A adenosine receptor antagonists
3. Exploring the binding features of rimonabant analogues and acyclic CB1 antagonists: docking studies and QSAR analysis
4. In silico rationalization of the structural and physicochemical requirements for photobiological activity in angelicine derivatives and their heteroanalogues
5. Exploring the molecular basis of selectivity in A1 adenosine receptors agonists: a case study
6. Synthesis, antimicrobial activity and molecular modeling studies of halogenated 4-[1 H-imidazol-1-yl(phenyl)methyl]-1,5-diphenyl-1 H-pyrazoles
7. Antiproliferative activity of new 1-aryl-4-amino-1 H-pyrazolo[3,4- d]pyrimidine derivatives toward the human epidermoid carcinoma A431 cell line
8. Synthesis of 1-(2-chloro-2-phenylethyl)-6-methylthio-1 H-pyrazolo[3,4- d]pyrimidines 4-amino substituted and their biological evaluation
9. Synthesis and pharmacological characterization of functionalized 2-pyridones structurally related to the cardiotonic agent milrinone
10. 4-Substituted 1,5-diarylpyrazole, analogues of celecoxib: synthesis and preliminary evaluation of biological properties
11. Synthesis of N-substituted- N-acylthioureas of 4-substituted piperazines endowed with local anaesthetic, antihyperlipidemic, antiproliferative activities and antiarrythmic, analgesic, antiaggregating actions
12. Novel angular furo and thieno-quinolinones: synthesis and preliminary photobiological studies
13. Synthesis and biological evaluation of azole derivatives, analogues of bifonazole, with a phenylisoxazolyl or phenylpyrimidinyl moiety
14. 4-Dialkylamino-1-(5-substituted or unsubstituted 1-phenyl-1 H-pyrazol-4-yl)butan-1-ols: synthesis and evaluation of analgesic, anti-inflammatory and platelet anti-aggregating activities
15. 3-Acetyl-5-acylpyridin-2(1 H)-ones and 3-acetyl-7,8-dihydro-2,5(1 H,6 H)-quinolinediones: synthesis, cardiotonic activity and computational studies
16. Synthesis and biological evaluation of [α-(1,5-disubstituted 1 H-pyrazol-4-yl)benzyl]azoles, analogues of bifonazole
17. Ligand-based homology modelling of the human CB2 receptor SR144528 antagonist binding site: a computational approach to explore the 1,5-diaryl pyrazole scaffold.
18. Exploring the QSAR of Pyrazolo[3,4- b]Pyridine, Pyrazolo[3,4- b]Pyridone and Pyrazolo[3,4- b]Pyrimidine Derivatives as Antagonists for A1 Adenosine Receptor.
19. Quinolinedione nucleus as a novel scaffold for A1 and A2A adenosine receptor antagonists.
20. Unprecedented One-Pot Stereoselective Synthesis of Knoevenagel-Type Derivatives via in situ Condensation of N-Methyleniminium Salts of Ethylenethiourea and Ethyleneurea with Active Methylene Reagents.
21. Exploring the molecular basis of selectivity in A1 adenosine receptors agonists: a case study.
22. Structural basis for selective PDE 3 inhibition: a docking study.
23. An Updated Topographical Model for Phosphodiesterase 4 (PDE4) Catalytic Site.
24. ω-Dialkylaminoalkyl ethers of phenyl-(5-substituted 1-phenyl-1 H-pyrazol-4-yl)methanols with analgesic and anti-inflammatory activity.
25. Synthesis of 5-substituted 1-aryl-1 H-pyrazole-4-acetonitriles, 4-methyl-1-phenyl-1 H-pyrazole-3-carbonitriles and pharmacologically active 1-aryl-1 H-pyrazole-4-acetic acids.
26. Reaction of 2-dimethylaminomethylene-1,3-diones with dinucleophiles. X. synthesis of 5-substituted ethyl or methyl 4-isoxazolecarboxylates and methyl 4-(2,2-dimethyl-1-oxopropyl)-5-isoxazolecarboxylate.
27. Reaction of ketenes with N,N-disubstituted α-aminomethyleneketones. XIX. Synthesis of N,N-disubstituted 4-amino-3-phenyl-2 H-furo[2,3- h]-1-benzopyran-2-ones (4-amino-3-phenylangelicins). Crystal and molecular structure of 3-Phenylangelicin.
28. Reaction of 2-dimethylaminomethylene-1,3-diones with dinucleophiles. VI. Synthesis of ethyl or methyl 1,5-disubstituted 1 H-pyrazole-4-carboxylates.
29. Reaction of ketenes with N,N-disubstituted α-aminomethyleneketones. XX. Synthesis of 2H-pyrano[2,3-f]quinazoline derivatives.
30. Reaction of ketenes with N, N-disubstituted α-aminomethyleneketones. XVII. Synthesis of 2 H-[1]benzothiepino[5,4- b]pyran derivatives.
31. Reaction of sulfenes with heterocyclic N,N-disubstituted α-aminomethyleneketones. XII. Synthesis of [1]benzothiepino[4,5- e][1,2]oxathiin derivatives.
32. Reaction of sulfene and dichloroketene with N,N-disubstituted α-aminomethyleneketones. Synthesis of 5 H-pyrano[3,4- e]-1,2-oxathiin and 2 H,5 H-Pyrano[4,3- b]pyran derivatives.
33. Reaction of 2-dimethylaminomethylene-1,3-diones with Dinucleophiles. IV. Synthesis of 5,7-dihydrothiopyrano[3,4- c]pyrazol-4(1 H)-ones, 5 H-Thiopyrano[4,3- d]isoxazol-4(7 H)-one and 6 H-Thiopyrano[3,4- d]pyrimidin-5(8 H)-ones.
34. Reaction of dichloroketene and sulfene with N,N-disubstituted α-aminomethyleneketones. Synthesis of pyrano[2,3- e]indazole and 1,2-oxathiino[6,5- e]indazole derivatives.
35. Reaction of ketenes with N,N-disubstituted α-aminomethyleneketones. XIII. Synthesis of 2 H-pyrano[3,2- d]-1-benzoxepin derivatives.
36. Reaction of 2-dimethylaminomethylene-1,3-diones with dinucleophiles. III. Synthesis of 5-acylpyrimidines and 7,8-dihydroquinazolin-5(6 H)-ones.
37. Reaction of 2-dimethylaminomethylene-1,3-diones with dinucleophiles. II. Synthesis of 5-(alkyl)(phenyl)-4-acylisoxazoles and 6,7-dihydro-1,2-benzisoxazol-4(5 H)-ones.
38. Reaction of 2-dimethylaminomethylene-1,3-diones with dinucleophiles. I. Synthesis of 1,5-disubstituted 4-acylpyrazoles.
39. Reaction of sulfene with heterocyclic N,N-disubstituted α-aminomethyleneketones. IX. Synthesis of 1,2-oxathiino[6,5- e]indole derivatives.
40. Reaction of ketenes with N,N-disubstituted α-aminomethyleneketones. XI. Synthesis of 2 H-pyrano[3,2- g]benzothiazole derivatives.
41. Reaction of ketenes with N,N-disubstituted à-aminomethyleneketones. IX. Synthesis of 2 H,5 H-pyrano[3,2- c][1]benzopyran derivatives.
42. Reaction of sulfene with heterocyclic N,N-disubstituted α-aminomethvlene ketones V. Synthesis of 1,2-oxatliiino[5.6- c] pyridine and 1,2-oxathiino[5,6- c] quinoline derivatives.
43. Reaction of ketenes with N,N-disubstituted α-aminomethyleneketones VII. Synthesis of 2 H,5 H-[1]benzothiopyrano[4,3- b]pyran and 2 H,5 H-thiopyrano[4,3- b]pyran derivatives.
44. Reaction of dichloroketene and sulfene with N,N-disubstituted 6-amino-methylene- b,7,8,9 -tetrahydro-5 H-benzocyclohepten-5-ones. Synthesis of 6-(2,2-Dichloroethylidene)- b,7,8,9-tetrahydro-5 H-benzocyclohepten-5-one and of 5 H-benzo[3,4]cyclohepta[2,l- b]pyran and 5 H-Benzo[3,4]cyclo-hepta[1,2- e]-1,2-oxathiin derivatives
45. Reaction of sulfenes with heterocyclic N,N-disubstituted α-aminomethyleneketones. XIII. Synthesis of 1,2-oxathiino[6,5- f]quinazoline derivatives.
46. Reaction of sulfene with heterocyclic N,N-disubstituted α-aminomethyleneketones. X. Synthesis of thieno[2,3- h]-1,2-benzoxathiin derivatives.
47. Reaction of sulfene with heterocyclic N,N-disubstituted α-aminomethyleneketones. VIII. Synthesis of furo[2,3- h]-1,2-benzoxathiin derivatives.
48. Reaction of sulfene with heterocyclic N,N-disubstituted α-aminomethyleneketones. XI. Synthesis of 1,2-oxathiino[5,6- d]-1-benzoxepin derivatives.
49. Reaction of sulfene with heterocyclic N,N-disubstituted α-aminomethyleneketones. VII. Synthesis of 1,2-oxathiino-[5,6- g]benzothiazole derivatives.
50. Reaction of sulfene and dichloroketene with N,N-disubstituted 5-aminomethylene-1,5,6,7-tetrahydro-2-methyl-1-phenylindol-4-ones. Synthesis of 1,2-oxathiino[6,5- E] indole and of pyrano[2,3- e] indole derivatives.
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