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3. Superiority of the Triple-Acting 5-HT6R/5-HT3R Antagonist and MAO-B Reversible Inhibitor PZ-1922 over 5-HT6R Antagonist Intepirdine in Alleviation of Cognitive Deficits in Rats

4. Superiority of the Triple-Acting 5‑HT6R/5-HT3R Antagonist and MAO‑B Reversible Inhibitor PZ-1922 over 5‑HT6R Antagonist Intepirdine in Alleviation of Cognitive Deficits in Rats.

5. Impact of the Substitution Pattern at the Basic Center and Geometry of the Amine Fragment on 5-HT6 and D3R Affinity in the 1H-Pyrrolo[3,2-c]quinoline Series

6. 1-(Arylsulfonyl-isoindol-2-yl)piperazines as 5-HT6R Antagonists: Mechanochemical Synthesis, In Vitro Pharmacological Properties and Glioprotective Activity

7. Superiority of the Triple-Acting 5-HT6R/5-HT3R Antagonist and MAO-B Reversible Inhibitor PZ-1922over 5-HT6R Antagonist Intepirdine in Alleviation of Cognitive Deficits in Rats

9. Impact of the Substitution Pattern at the Basic Center and Geometry of the Amine Fragment on 5-HT 6 and D 3 R Affinity in the 1 H -Pyrrolo[3,2- c ]quinoline Series.

10. 1-(Arylsulfonyl-isoindol-2-yl)piperazines as 5-HT 6 R Antagonists: Mechanochemical Synthesis, In Vitro Pharmacological Properties and Glioprotective Activity.

11. Superiority of the Triple-Acting 5-HT 6 R/5-HT 3 R Antagonist and MAO-B Reversible Inhibitor PZ-1922 over 5-HT 6 R Antagonist Intepirdine in Alleviation of Cognitive Deficits in Rats.

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