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dr Paweł Zajdel

e-mail:
phone: +48-12-6205459
fax: +48-12-6205405
web:
interest(s):

Affiliation:


Jagiellonian University, Medical College, Department of Medicinal Chemistry

address: Medyczna 9, Kraków, 30-688, Poland
phone:
fax:
web:

Participant:


V Multidyscyplinarna Konferencja Nauki o Leku

began: 2006-05-15
ended: 2006-05-17
Presented:

Participant:


VI Multidyscyplinarna Konferencja Nauki o Leku

began: 2008-05-25
ended: 2008-05-29
Presented:

VI Multidyscyplinarna Konferencja Nauki o Leku

Solid-phase synthesis and preliminary biological investigation of arylpiperazine library as 5-HT1A and 5-HT2A receptor ligands

Participant:


VII Multidyscyplinarna Konferencja Nauki o Leku

began: 2010-05-09
ended: 2010-05-13
Presented:

VII Multidyscyplinarna Konferencja Nauki o Leku

A novel handle for chemistry on solid support: the Pipecolic linker

VII Multidyscyplinarna Konferencja Nauki o Leku

Quinolinesulfonamides as potential 5-HT7 and 5-HT1A receptor ligands

Participant:


VIII Multidyscyplinarna Konferencja Nauki o Leku

began: 2012-05-29
ended: 2012-06-02
Presented:

VIII Multidyscyplinarna Konferencja Nauki o Leku

The multiobjective based design, synthesis and evaluation of the arylsulfonamide/amide derivatives of arylxyethyl- and arylthioethyl- piperidines and pyrrolidines as a novel class of potent 5-HT7 receptor antagonists

VIII Multidyscyplinarna Konferencja Nauki o Leku

The highly versatile handle for synthesis of secondary amine derivatives with potential CNS activity: The Pipecolic Linker

Publications:


  1. A novel handle for chemistry on solid support: the Pipecolic linker
  2. Design, synthesis and anticonvulsant activity of new N-Mannich bases derived from 3-phenylpyrrolidine-  2,5-diones
  3. Electronic structure and magnetic properties of nano and single crystals SrLaAlO4: Mn
  4. Influence of hydrogen on hydrogenated cadmium telluride optical spectra
  5. Influence of hydrogen on optical spectra of hydrogenated CdTe
  6. Quinolinesulfonamides as potential 5-HT7 and 5-HT1A receptor ligands
  7. Solid-phase synthesis and preliminary biological investigation of arylpiperazine library as 5-HT1A and 5-HT2A receptor ligands
  8. The highly versatile handle for synthesis of secondary amine derivatives with potential CNS activity: The Pipecolic Linker
  9. The multiobjective based design, synthesis and evaluation of the arylsulfonamide/amide derivatives of arylxyethyl- and arylthioethyl- piperidines and pyrrolidines as a novel class of potent 5-HT7 receptor antagonists



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