36 results on '"Klotz, Karl"'
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2. Bronchospasmolytic activity and adenosine receptor binding of some newer 1,3‐dipropyl‐8‐phenyl substituted xanthine derivatives
3. 7‐Amino‐2‐aryl/hetero‐aryl‐5‐oxo‐5,8‐dihydro[1,2,4]triazolo[1,5‐a]pyridine‐6‐carbonitriles: Synthesis and adenosine receptor binding studies
4. Neuroprotective potential of adenosine A 1 receptor partial agonists in experimental models of cerebral ischemia
5. Synthesis, adenosine receptor binding and molecular modelling studies of novel thieno[2,3-d ]pyrimidine derivatives
6. Coumarins and adenosine receptors: New perceptions in structure-affinity relationships
7. Synthesis and Evaluation of a New Series of 8-(2-Nitroaryl)Xanthines as Adenosine Receptor Ligands
8. The Length and Flexibility of the 2-Substituent of 9-Ethyladenine Derivatives Modulate Affinity and Selectivity for the Human A2AAdenosine Receptor
9. Back Cover: Insight into the Interactions between Novel Coumarin Derivatives and Human A3Adenosine Receptors (ChemMedChem 10/2014)
10. Insight into the Interactions between Novel Coumarin Derivatives and Human A3 Adenosine Receptors
11. Organoruthenium Antagonists of Human A3Adenosine Receptors
12. ChemInform Abstract: New 9-Methyl-8-(4-hydroxyphenyl)adenine Derivatives as A1Adenosine Receptor Antagonists.
13. ChemInform Abstract: Exploring Potency and Selectivity Receptor Antagonist Profiles Using a Multilabel Classification Approach: The Human Adenosine Receptors as a Key Study.
14. Adenosine A2A Receptor Antagonists: New 8‐Substituted 9‐Ethyladenines as Tools for in vivo Rat Models of Parkinson's Disease
15. Cytoskeletal regulation of chemotactic receptors: Molecular complexation of N-formyl peptide receptors with G proteins and actin
16. ChemInform Abstract: Linear and Nonlinear 3D‐QSAR Approaches in Tandem with Ligand‐Based Homology Modeling as a Computational Strategy to Depict the Pyrazolo‐Triazolo‐Pyrimidine Antagonists Binding Site of the Human Adenosine A2A Receptor.
17. ChemInform Abstract: Synthesis and Biological Activity of Trisubstituted Adenines as A2AAdenosine Receptor Antagonists
18. Improving Potency, Selectivity, and Water Solubility of Adenosine A1 Receptor Antagonists: Xanthines Modified at Position 3 and Related Pyrimido[1,2,3-cd]purinediones
19. Synthesis, Biological Studies and Molecular Modeling Investigation of 1,3-Dimethyl-2,4-dioxo-6-methyl-8-(substituted) 1,2,3,4-Tetrahydro-[1,2,4]-triazolo-[3,4-f]-purines as Potential Adenosine Receptor Antagonists.
20. Human breast cancer cell line MDA-MB-231 expresses endogenous A2B adenosine receptors mediating a Ca2+ signal
21. 2‐(N‐Acyl) and 2‐N‐Acyl‐N6‐substituted Analogues of Adenosine and Their Affinity at the Human Adenosine Receptor.
22. A1 adenosine receptor antagonists, 3-aryl[1,2,4]triazino[4,3-a]benzimidazol-4-(10H)-ones (ATBIs) andN-alkyl andN-acyl-(7-substituted-2-phenylimidazo[1,2-a][1,3,5]triazin-4-yl)amines (ITAs): Different recognition of bovine and human binding sites
23. Adenosine receptors and human melanoma
24. Pyrazolo[4,3-e]1,2,4-triazolo[1,5-c]pyrimidine derivatives as adenosine receptor ligands: A starting point for searching A2B adenosine receptor antagonists
25. Presence of Chlamydia pneumoniae DNA in the cerebral spinal fluid is a common phenomenon in a variety of neurological diseases and not restricted to multiple sclerosis
26. Agonist‐Induced Internalization and Recycling of the Human A3 Adenosine Receptors
27. A2A-selective adenosine receptor antagonists: Development of water-soluble prodrugs and a new tritiated radioligand
28. Characterization of potent ligands at human recombinant adenosine receptors
29. Effects of Blood Donation on the Physical Fitness and Hemorheology of Healthy Elderly Donors
30. Defense
31. Neutrophil chemoattractant receptors and the membrane skeleton
32. Guanine Nucleotide Effects on 8-Cyclopentyl-1,3-[3H]Dipropylxanthine Binding to Membrane-Bound and Solubilized A1Adenosine Receptors of Rat Brain
33. Synergistic effects of calcium-mobilizing agents and adenosine on histamine release from rat peritoneal mast cells
34. Characterization of the Solubilized A1 Adenosine Receptor from Rat Brain Membranes
35. Radiation inactivation analysis of the A1 adenosine receptor of rat brain Decrease in radiation inactivation size in the presence of guanine nucleotide
36. Characterization of solubilized insulin receptors from rat liver microsomes. Existence of two receptor species with different binding properties
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