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3. N-adamantyl-anthranil amide derivatives: New selective ligands for the cannabinoid receptor subtype 2 (CB2R)

6. N‑Adamantyl-1-alkyl-4-oxo-1,4-dihydroquinoline-3-carboxamide Derivatives as Fluorescent Probes to Detect Microglia Activation through the Imaging of Cannabinoid Receptor Subtype 2 (CB2R).

8. Synthesis and Biological Evaluation of Enantiomerically Pure (R)- and (S)-[18F]OF-NB1 for Imaging the GluN2B Subunit-Containing NMDA Receptors

10. Enantioselective Synthesis and Biological Evaluation of (R)- and (S)-[18F]OF-NB1 to Visualize GluN2B Subunit-Containing NMDA Receptors

13. Sigma-2 Receptor Ligand Binding Modulates Association between TSPO and TMEM97

14. Development of Fluorescent 4-[4-(3H-Spiro[isobenzofuran-1,4′-piperidin]-1′-yl)butyl]indolyl Derivatives as High-Affinity Probes to Enable the Study of σ Receptors via Fluorescence-Based Techniques

16. Development of N-(1-Adamantyl)benzamides as Novel Anti-Inflammatory Multitarget Agents Acting as Dual Modulators of the Cannabinoid CB2 Receptor and Fatty Acid Amide Hydrolase

19. Development of N‑(1-Adamantyl)benzamides as Novel Anti-Inflammatory Multitarget Agents Acting as Dual Modulators of the Cannabinoid CB2 Receptor and Fatty Acid Amide Hydrolase.

20. Perspectives of Cannabinoid Type 2 Receptor (CB2R) Ligands in Neurodegenerative Disorders: Structure–Affinity Relationship (SAfiR) and Structure–Activity Relationship (SAR) Studies

21. Structure-Activity Relationships and Therapeutic Potential of Purinergic P2X7 Receptor Antagonists.

22. Development of Fluorescent 4-[4-(3 H -Spiro[isobenzofuran-1,4'-piperidin]-1'-yl)butyl]indolyl Derivatives as High-Affinity Probes to Enable the Study of σ Receptors via Fluorescence-Based Techniques.

23. Synthesis and Biological Evaluation of Enantiomerically Pure ( R )- and ( S )-[ 18 F]OF-NB1 for Imaging the GluN2B Subunit-Containing NMDA receptors.

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