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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.
Abstract:
During brain ageing, microglia, the resident immune cells of the CNS, are immunologically activated and contribute to neuroinflammation, a vicious cycle that supports development of neurological disorders. Therapeutic approaches focus mainly on downregulation of their pro-inflammatory activated state that is associated with health benefits. Electrophilic compounds, such as natural quinones and their reduced pro-electrophilic precursors, flavonoids, represent a wide group of diverse substances with important biological effects. They can cause considerable cytotoxicity when used at higher dosages, but on the other hand, they have versatile health benefits at lower dosages. In this study, we investigated the cytotoxicity and prooxidant profile of synthetic conjugate of two electrophilic compounds, quercetin and 1,4-naphthoquinone, 4'-O-(2-chloro-1,4-naphthoquinone-3-yloxy) quercetin (CHNQ), and its attenuation of inflammatory responses and modulation of Nrf2 pathway in BV-2 microglial cells. CHNQ showed higher cytotoxicity than its precursors, accompanied by promotion of production of reactive oxygen species along with G2/M cell cycle arrest at higher concentrations tested. Nevertheless, at a lower non-toxic concentration, CHNQ, more significantly than did its precursors, downregulated LPS-stimulated microglia cells as documented by decreased iNOS, COX-2 and TNFα protein levels. Moreover, CHNQ most effectively upregulated expression of phase II antioxidant enzyme HO-1 and β5 subunit of constitutive proteasome. The enhanced anti-inflammatory effect of CHNQ was accompanied by prominent increase in cytosolic expression of Nrf2 and c-Jun, however, induction effect on nuclear Nrf2 translocation was comparable to QUER. Moreover, a conditioned medium from activated BV-2 cells co-treated with quercetin and CHNQ maintained viability of neuron-like PC12 cells. The compounds tested did not show any disturbance of phagocytosis of live or dead PC12 cells. The present experimental data predict a preventive and therapeutic potential of semisynthetic derivative CHNQ in ageing and related pathologies, mediated by activation of proteins of the antioxidant response.
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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