Title : New thiourea and benzamide derivatives of 2-aminothiazole as multi-target agents against Alzheimer's disease: Design, synthesis, and biological evaluation - Kilic_2022_Bioorg.Chem_131_106322 |
Author(s) : Kilic B , Bardakkaya M , Ilikci Sagkan R , Aksakal F , Shakila S , Dogruer DS |
Ref : Bioorg Chem , 131 :106322 , 2022 |
Abstract :
In this study, two series of compounds were designed and synthesized, bearing thiourea and benzamide derivatives at position 2 of 4-subtituted-2-aminothiazole, respectively. Then, the inhibition potency of all final compounds for cholinesterase enzymes were evaluated. Among the thiourea derivatives, 3c (IC50 = 0.33 microM) was identified as the most potent and selective butyrylcholinesterase inhibitor. Additionally, benzamide derivative 10e (AChE IC50 = 1.47 and BChE IC50 = 11.40 microM) was found as a dual cholinesterase inhibitor. The type of inhibition for both compounds was determined by kinetic studies and the results showed that the compounds were mixed type inhibitors. Moreover, all title compounds were investigated in terms of their antioxidant (DPHH, ORAC) and metal chelator activities. In addition, the neuroprotective effects of selected compounds (3c, 3e, 6c, 6e and 10e) against H(2)O(2)-induced damage in the PC12 cell line were tested. The experimental findings demonstrated that thiourea-derived 6e (40.4 %) and benzamide-derived 10e (37.8 %) have a neuroprotective effect of about half as ferulic acid at 10smicroM. Subsequently, the cytotoxicity of selected compounds was examined by the MTT assay, and the compounds were found not to have cytotoxic effect on the PC12 cell line in 24sh. Additionally, compounds 6e and 10e were also found to be more effective in inhibiting the release of IL-1beta, IL-6, TNF-alpha and NO compared to other selected compounds in this study. |
PubMedSearch : Kilic_2022_Bioorg.Chem_131_106322 |
PubMedID: 36565675 |
Kilic B, Bardakkaya M, Ilikci Sagkan R, Aksakal F, Shakila S, Dogruer DS (2022)
New thiourea and benzamide derivatives of 2-aminothiazole as multi-target agents against Alzheimer's disease: Design, synthesis, and biological evaluation
Bioorg Chem
131 :106322
Kilic B, Bardakkaya M, Ilikci Sagkan R, Aksakal F, Shakila S, Dogruer DS (2022)
Bioorg Chem
131 :106322