Microglia-Based Phenotypic Screening Identifies a Novel Inhibitor of Neuroinflammation Effective in Alzheimer's Disease Models

  • ACS Chem Neurosci. 2016 Nov 16;7(11):1499-1507. doi: 10.1021/acschemneuro.6b00125.
Wei Zhou  1  2 Guifa Zhong  1 Sihai Fu  3 Hui Xie  4 Tianyan Chi  5 Luyi Li  5 Xiurong Rao  1 Shaogao Zeng  1 Dengfeng Xu  1 Hao Wang  1 Guoqing Sheng  1 Xing Ji  3 Xiaorong Liu  1 Xuefei Ji  5 Donghai Wu  1 Libo Zou  5 Micky Tortorella  1 Kejian Zhang  3 Wenhui Hu  1
Affiliations
  • 1. State Key Laboratory of Respiratory Disease, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences , Guangzhou 510530, People's Republic of China.
  • 2. Institute of Natural Products and Green Chemistry, School of Light Industry and Chemical Engineering, Guangdong University of Technology , Guangzhou 510003, People's Republic of China.
  • 3. Department of Pharmacy, South China Center of Innovative Pharmaceuticals , Guangzhou 510663, People's Republic of China.
  • 4. The First Affiliated Hospital of Guangzhou Medical University , Guangzhou 510120, People's Republic of China.
  • 5. Department of Pharmacology, Shenyang Pharmaceutical University , Shenyang 110016, People's Republic of China.
Abstract

Currently, anti-AD drug discovery using target-based approaches is extremely challenging due to unclear etiology of AD and absence of validated therapeutic protein targets. Neuronal death, regardless of causes, plays a key role in AD progression, and it is directly linked to neuroinflammation. Meanwhile, phenotypic screening is making a resurgence in drug discovery process as an alternative to target-focused approaches. Herein, we employed microglia-based phenotypic screenings to search for small molecules that modulate the release of detrimental proinflammatory cytokines. The identified novel pharmacological inhibitor of neuroinflammation (named GIBH-130) was validated to alter phenotypes of neuroinflammation in AD brains. Notably, this molecule exhibited comparable in vivo efficacy of cognitive impairment relief to donepezil and memantine respectively in both β amyloid-induced and APP/PS1 double transgenic Alzheimer's murine models at a substantially lower dose (0.25 mg/kg). Therefore, GIBH-130 constitutes a unique chemical probe for pathogenesis research and drug development of AD, and it also suggests microglia-based phenotypic screenings that target neuroinflammation as an effective and feasible strategy to identify novel anti-AD agents.

Keywords
Alzheimer’s disease; animal models; inhibitor; neuroinflammation.
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