Search Results - "Tenti, Giammarco"
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Ruthenium(II)-Catalyzed Oxidative CH Alkenylations of Sulfonic Acids, Sulfonyl Chlorides and Sulfonamides
Published in Chemistry : a European journal (10-11-2014)“…Twofold CH functionalization of aromatic sulfonic acids was achieved with an in situ generated ruthenium(II) catalyst. The optimized cross‐dehydrogenative…”
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Antioxidant, Anti-inflammatory and Neuroprotective Profiles of Novel 1,4-Dihydropyridine Derivatives for the Treatment of Alzheimer’s Disease
Published in Antioxidants (01-08-2020)“…Alzheimer’s disease is a chronic and irreversible pathological process that has become the most prevalent neurodegenerative disease. Currently, it is…”
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(E)-3-((2-Fluorophenyl)(hydroxy)methylene)imidazo[1,2-a]pyridin-2(3H)-one
Published in MolBank (01-06-2021)“…Treatment of a N-2-pyridyl-β-ketoamide precursor with bromine afforded the first example of the 3-aryl(α-hydroxy)methylenelimidazo[1,2-a]pyridin-2(3H)-one…”
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Discovery of the first dual GSK3β inhibitor/Nrf2 inducer. A new multitarget therapeutic strategy for Alzheimer’s disease
Published in Scientific reports (31-03-2017)“…The formation of neurofibrillary tangles (NFTs), oxidative stress and neuroinflammation have emerged as key targets for the treatment of Alzheimer’s disease…”
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Synthesis of 1,4-Diazepanes and Benzo[b][1,4]diazepines by a Domino Process Involving the In Situ Generation of an Aza-Nazarov Reagent
Published in Journal of organic chemistry (18-09-2020)“…A step- and atom-economical protocol allowing the synthesis of 1,4-diazepanes and also tetrahydro- and decahydro-1,5-benzodiazepines is described. The method…”
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Ruthenium(II)-Catalyzed Oxidative CH Alkenylations of Sulfonic Acids, Sulfonyl Chlorides and Sulfonamides
Published in Chemistry : a European journal (10-11-2014)“…Twofold CH functionalization of aromatic sulfonic acids was achieved with an insitu generated ruthenium(II) catalyst. The optimized cross-dehydrogenative…”
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New 5‑Unsubstituted Dihydropyridines with Improved CaV1.3 Selectivity as Potential Neuroprotective Agents against Ischemic Injury
Published in Journal of medicinal chemistry (22-05-2014)“…C5-unsubstituted-C6-aryl-1,4-dihydropyridines were prepared by a CAN-catalyzed multicomponent reaction from chalcones, β-dicarbonyl compounds, and ammonium…”
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Aza‐CGP37157‐lipoic hybrids designed as novel Nrf2‐inducers and antioxidants exert neuroprotection against oxidative stress and show neuroinflammation inhibitory properties
Published in Drug development research (01-05-2020)“…Two multitarget hybrids, derived from an aza‐analogue of CGP37157, a mitochondrial Na+/Ca2+ exchanger antagonist, and lipoic acid were designed in order to…”
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A heavy metal- and oxidant-free, one-pot synthesis of pyridines and fused pyridines based on a Lewis acid-catalyzed multicomponent reaction
Published in Chemical communications (Cambridge, England) (21-10-2014)“…The InCl3-catalyzed sequential multicomponent reaction between 2-furfurylamine, β-dicarbonyl compounds and α,β-unsaturated aldehydes in ethanol, followed by…”
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One-Pot Access to a Library of Structurally Diverse Nicotinamide Derivatives via a Three-Component Formal Aza [3 + 3] Cycloaddition
Published in ACS combinatorial science (08-10-2012)“…The three-component formal [3 + 3] aza-annulation between chalcones, β-ketoamides, and ammonium acetate in the presence of CAN as a Lewis acid affords good to…”
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ITH14001, a CGP37157-Nimodipine Hybrid Designed to Regulate Calcium Homeostasis and Oxidative Stress, Exerts Neuroprotection in Cerebral Ischemia
Published in ACS chemical neuroscience (18-01-2017)“…During brain ischemia, oxygen and glucose deprivation induces calcium overload, extensive oxidative stress, neuroinflammation, and, finally, massive neuronal…”
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New 5-Unsubstituted Dihydropyridines with Improved Ca V 1.3 Selectivity as Potential Neuroprotective Agents against Ischemic Injury
Published in Journal of medicinal chemistry (22-05-2014)Get full text
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Discovery of the first dual GSK3[beta] inhibitor/Nrf2 inducer. A new multitarget therapeutic strategy for Alzheimer's disease
Published in Scientific reports (01-03-2017)“…The formation of neurofibrillary tangles (NFTs), oxidative stress and neuroinflammation have emerged as key targets for the treatment of Alzheimer's disease…”
Get full text
Journal Article