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Creation of Novel Cores for ?-Secretase (BACE-1) Inhibitors: A Multiparameter Lead Generation Strategy.


ABSTRACT: In order to find optimal core structures as starting points for lead optimization, a multiparameter lead generation workflow was designed with the goal of finding BACE-1 inhibitors as a treatment for Alzheimer's disease. De novo design of core fragments was connected with three predictive in silico models addressing target affinity, permeability, and hERG activity, in order to guide synthesis. Taking advantage of an additive SAR, the prioritized cores were decorated with a few, well-characterized substituents from known BACE-1 inhibitors in order to allow for core-to-core comparisons. Prediction methods and analyses of how physicochemical properties of the core structures correlate to in vitro data are described. The syntheses and in vitro data of the test compounds are reported in a separate paper by Ginman et al. [J. Med. Chem. 2013, 56, 4181-4205]. The affinity predictions are described in detail by Roos et al. [J. Chem. Inf. 2014, DOI: 10.1021/ci400374z].

SUBMITTER: Viklund J 

PROVIDER: S-EPMC4027760 | biostudies-literature | 2014 Apr

REPOSITORIES: biostudies-literature

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Creation of Novel Cores for β-Secretase (BACE-1) Inhibitors: A Multiparameter Lead Generation Strategy.

Viklund Jenny J   Kolmodin Karin K   Nordvall Gunnar G   Swahn Britt-Marie BM   Svensson Mats M   Gravenfors Ylva Y   Rahm Fredrik F  

ACS medicinal chemistry letters 20140203 4


In order to find optimal core structures as starting points for lead optimization, a multiparameter lead generation workflow was designed with the goal of finding BACE-1 inhibitors as a treatment for Alzheimer's disease. De novo design of core fragments was connected with three predictive in silico models addressing target affinity, permeability, and hERG activity, in order to guide synthesis. Taking advantage of an additive SAR, the prioritized cores were decorated with a few, well-characterize  ...[more]

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