16 results on '"Fontenla, Jose Angel"'
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2. Toxicological assessment of the Achyrocline satureioides aqueous extract in the Caenorhabditis elegans alternative model.
3. Novel coumarin-pyridazine hybrids as selective MAO-B inhibitors for the Parkinson’s disease therapy
4. Discovery and optimization of 3-thiophenylcoumarins as novel agents against Parkinson’s disease: Synthesis, in vitro and in vivo studies
5. Butyrophenone analogues in the carbazole series as potential atypical antipsychotics: synthesis and determination of affinities at D 2, 5-HT 2A, 5-HT 2B and 5-HT 2C receptors
6. ChemInform Abstract: Butyrophenone Analogues in the Carbazole Series: Synthesis and Determination of Affinities at D2 and 5-HT2A Receptors.
7. ChemInform Abstract: Butyrophenone Analogues in the Carbazole Series as Potential Atypical Antipsychotics: Synthesis and Determination of Affinities at D2, 5-HT2A, 5-HT2B and 5-HT2C Receptors.
8. Synthesis of Glycosyl Derivatives as Dopamine Prodrugs: Interaction with Glucose Carrier GLUT-1.
9. Pyridazine Derivatives. XI: Antihypertensive Activity of 3-Hydrazinocycloheptyl[1,2-c]pyridazine and Its Hydrazone Derivatives
10. Pyridazine Derivatives, VI. Synthesis and Hypotensive Activity of 3-Hydrazinethieno(2,3-h)Cinnoline and its Derivatives.
11. Butyrophenone analogues in the carbazole series: Synthesis and determination of affinities at D2 and 5-HT2A receptors
12. ChemInform Abstract: Butyrophenone Analogues in the Carbazole Series as Potential Atypical Antipsychotics: Synthesis and Determination of Affinities at D2, 5-HT2A, 5-HT2B and 5-HT2C Receptors.
13. ChemInform Abstract: Butyrophenone Analogues in the Carbazole Series: Synthesis and Determination of Affinities at D2 and 5-HT2A Receptors.
14. ChemInform Abstract: Butyrophenone Analogues in the Carbazole Series as Potential Atypical Antipsychotics: Synthesis and Determination of Affinities at D2, 5‐HT2A, 5‐HT2Band 5‐HT2CReceptors.
15. ChemInform Abstract: Butyrophenone Analogues in the Carbazole Series: Synthesis and Determination of Affinities at D2and 5‐HT2AReceptors.
16. Gamma-Decanolactone Increases Stress Resistance and Improves Toxicity Parameters on the Caenorhabditis elegans Alternative Model.
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