4.7 Article

Dual Inhibitors of AChE and BACE-1 for Reducing Aβ in Alzheimer's Disease: From In Silico to In Vivo

期刊

出版社

MDPI
DOI: 10.3390/ijms232113098

关键词

multi-targeting; acetylcholinesterase (AChE); beta-secretase (BACE-1); dual inhibitors; in silico; enzyme inhibition; in vitro; in vivo; amyloid beta

资金

  1. Hungarian Government
  2. Research and Technology Innovation Fund [EUREKA_HU_12-1-2012-0057]

向作者/读者索取更多资源

Alzheimer's disease is a complex and widespread condition, currently without full understanding and cure. Simultaneously inhibiting the formation and aggregation of AChE and BACE-1 enzymes may be an effective therapeutic approach.
Alzheimer's disease (AD) is a complex and widespread condition, still not fully understood and with no cure yet. Amyloid beta (A beta) peptide is suspected to be a major cause of AD, and therefore, simultaneously blocking its formation and aggregation by inhibition of the enzymes BACE-1 (beta-secretase) and AChE (acetylcholinesterase) by a single inhibitor may be an effective therapeutic approach, as compared to blocking one of these targets or by combining two drugs, one for each of these targets. We used our ISE algorithm to model each of the AChE peripheral site inhibitors and BACE-1 inhibitors, on the basis of published data, and constructed classification models for each. Subsequently, we screened large molecular databases with both models. Top scored molecules were docked into AChE and BACE-1 crystal structures, and 36 Molecules with the best weighted scores (based on ISE indexes and docking results) were sent for inhibition studies on the two enzymes. Two of them inhibited both AChE (IC50 between 4-7 mu M) and BACE-1 (IC50 between 50-65 mu M). Two additional molecules inhibited only AChE, and another two molecules inhibited only BACE-1. Preliminary testing of inhibition by F681-0222 (molecule 2) on APPswe/PS1dE9 transgenic mice shows a reduction in brain tissue of soluble A beta 42.

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