Semisynthetic quercetin-quinone mitigates BV-2 microglia activation through modulation of Nrf2 pathway

Martin Škandík1, Nataša Mrvová1, Štefan Bezek1

  • 1Centre of Experimental Medicine, Institute of Experimental Pharmacology and Toxicology, Slovak Academy of Sciences, Dubravská cesta 9, 841 04, Bratislava, Slovak Republic.

Insights

A new compound, CHNQ, derived from quercetin and naphthoquinone, reduces neuroinflammation in microglia cells. This shows potential for treating age-related neurological disorders by activating antioxidant responses.

Area of Science:

  • Neuroscience
  • Immunology
  • Pharmacology

Background:

  • Microglia activation during brain aging drives neuroinflammation and neurological disorders.
  • Therapeutic strategies often aim to reduce the pro-inflammatory state of microglia.
  • Electrophilic compounds like quinones and flavonoids have diverse biological effects, with dose-dependent cytotoxicity and health benefits.

Purpose of the Study:

  • To investigate the cytotoxicity and prooxidant profile of a synthetic conjugate, CHNQ (4'-O-(2-chloro-1,4-naphthoquinone-3-yloxy) quercetin).
  • To evaluate CHNQ's ability to attenuate inflammatory responses and modulate the Nrf2 pathway in BV-2 microglial cells.
  • To assess the potential therapeutic effects of CHNQ in age-related neurological conditions.

Main Methods:

  • Assessed cytotoxicity and reactive oxygen species (ROS) production of CHNQ and its precursors in BV-2 microglial cells.
  • Measured protein levels of inflammatory markers (iNOS, COX-2, TNFα) and antioxidant enzymes (HO-1) in LPS-stimulated microglia.
  • Analyzed the expression and translocation of Nrf2 and c-Jun, and evaluated the effect of conditioned media on neuron-like PC12 cell viability and microglial phagocytosis.

Main Results:

  • CHNQ exhibited higher cytotoxicity and ROS production than precursors at high concentrations, causing G2/M cell cycle arrest.
  • At non-toxic concentrations, CHNQ significantly downregulated LPS-induced inflammatory markers (iNOS, COX-2, TNFα) more effectively than precursors.
  • CHNQ upregulated HO-1 and the proteasome subunit β5, increased cytosolic Nrf2 and c-Jun, and protected PC12 cells via conditioned media without affecting phagocytosis.

Conclusions:

  • Semisynthetic derivative CHNQ demonstrates significant anti-inflammatory effects in microglia by modulating the Nrf2 pathway.
  • CHNQ shows potential for preventing and treating age-related neurological pathologies through activation of antioxidant response proteins.
  • The study highlights CHNQ as a promising therapeutic agent for neuroinflammation and age-related neurological disorders.

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