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Inhibition of AGEs/RAGE/Rho/ROCK pathway suppresses non-specific neuroinflammation by regulating BV2 microglial M1/M2 polarization through the NF-κB pathway. | LitMetric

Inhibition of AGEs/RAGE/Rho/ROCK pathway suppresses non-specific neuroinflammation by regulating BV2 microglial M1/M2 polarization through the NF-κB pathway.

J Neuroimmunol

School of Pharmaceutical Sciences, Sun Yat-sen University, Guangzhou 510006, China; International Joint Laboratory (SYSU-PolyU HK) of Novel Anti-dementia Drugs of Guangdong, Guangzhou 510006, China; National and Local United Engineering Lab of Drug ability and New Drugs Evaluation, Sun Yat-sen University, Guangzhou 510080, China; Guangdong Province Key Laboratory of Brain Function and Disease, Zhongshan School of Medicine, Sun Yat-sen University, Guangzhou 510080, China. Electronic address:

Published: April 2017

AI Article Synopsis

  • Microglia-mediated neuroinflammation is crucial in the development of Alzheimer's disease (AD), with AGEs/RAGE and Rho/ROCK pathways contributing to this inflammation.
  • Research showed that AGEs activate the Rho/ROCK pathway, which can be inhibited by fasudil and FPS-ZM1, leading to reduced inflammation markers and reactive oxygen species in BV2 cells.
  • The study highlights that AGEs promote both M1 and M2 microglial phenotypes, but using fasudil and FPS-ZM1 shifts the balance towards a less inflammatory (M2) state, suggesting new potential targets for AD treatment.

Article Abstract

The microglia-mediated neuroinflammation plays an important role in the pathogenesis of Alzheimer's disease (AD). Advanced glycation end products (AGEs)/receptor for advanced glycation end products (RAGE) or Rho/Rho kinase (ROCK) are both involved in the development of non-specific inflammation. However, there are few reports about their effects on neuroinflammation. Here, we explored the mechanism of AGEs/RAGE/Rho/ROCK pathway underlying the non-specific inflammation and microglial polarization in BV2 cells. AGEs could activate ROCK pathway in a concentration-dependent manner. ROCK inhibitor fasudil and RAGE-specific blocker FPS-ZM1 significantly inhibited AGEs-mediated activation of BV2 cells and induction of reactive oxygen species (ROS). FPS-ZM1 and fasudil exerted their anti-inflammatory effects by downregulating inducible nitric oxide synthase (iNOS), cyclooxygenase-2 (COX-2), NLRP3 and nuclear translocation of nuclear factor kappa B (NF-κB) p65. In addition, AGEs induced both M1 (CD16/32, M1 marker) and M2 (CD206, M2 marker) phenotype in BV2 cells. Fasudil and FPS-ZM1 led to a decreased M1 and increased M2 phenotype. Together, these results indicate that the AGEs/RAGE/Rho/ROCK pathway in BV2 cells could intensify the non-specific inflammation of AD, which will provide novel strategies for the development of anti-AD drugs.

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Source
http://dx.doi.org/10.1016/j.jneuroim.2017.02.010DOI Listing

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