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Updated: Jan 23, 2026

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Published on: June 23, 2022
Protective Effect of Semisynthetic and Natural Flavonoid on Aged Rat Microglia-enriched Cultures
Nataša Mrvová1, Martin Škandík1, Štefan Bezek1
1Center of Experimental Medicine, Institute of Experimental Pharmacology and Toxicology, Slovak Academy of Sciences, Dubravska cesta 9, 841 04, Bratislava, Slovak Republic.
Abstract:
The ROS-mediated lysosomal dysfunction and coinciding deterioration of mitochondrial function are thought to be the prominent mechanisms responsible for aging. Microglia, the resident macrophages in the central nervous system, were postulated to belong to the major targets vulnerable to these detrimental processes, acting as principal drivers in brain aging. The present study investigated the potential protective effect of the semisynthetic flavonoid 3'-O-(3-chloropivaloyl) quercetin (CPQ) and quercetin (Q) on microglia-enriched mixed brain cultures (MBCs) established from aged Wistar rats. Both flavonoids tested suppressed the development of lipofuscin-related autofluorescence in aged cells. Further ensuing protective effects included reduction of protein oxidation markers in aged cells. Moreover, unlike Q, CPQ significantly suppressed sensitivity of aged cells to stimulation of superoxide burst. Other activation markers, cellular hypertrophy and isolectin B4 binding, were also downregulated by treatment with both CPQ and Q. In conclusion, results of our study suggest that both flavonoids tested may protect microglia with a quite comparable efficacy against aging-related accumulated alterations. The protective mechanism can include interference with the ROS-mediated vicious cycles involving lysosomal dysfunction. Nevertheless, the lipophilized quercetin, CPQ, a compound with proposed enhanced biological availability compared to parent molecule, can represent an agent potentially useful for new effective pharmaceutical intervention against brain aging, overcoming the limitations of clinical applicability of quercetin.
Insights
Quercetin and its derivative CPQ protect aging microglia from oxidative stress and cellular damage. CPQ shows enhanced efficacy, suggesting potential for pharmaceutical intervention against brain aging.
Area of Science:
- Neuroscience
- Cell Biology
- Gerontology
Background:
- Aging involves reactive oxygen species (ROS)-mediated lysosomal and mitochondrial dysfunction.
- Microglia, key immune cells in the brain, are vulnerable to aging processes and drive brain aging.
Purpose of the Study:
- To investigate the protective effects of quercetin (Q) and a semisynthetic derivative, 3'-O-(3-chloropivaloyl) quercetin (CPQ), on aged microglia.
- To explore the potential of these flavonoids in mitigating age-related cellular alterations in the brain.
Main Methods:
- Establishment of microglia-enriched mixed brain cultures (MBCs) from aged Wistar rats.
- Treatment of aged cultures with Q and CPQ.
- Assessment of lipofuscin autofluorescence, protein oxidation markers, and superoxide burst sensitivity.
- Evaluation of cellular activation markers, hypertrophy, and isolectin B4 binding.
Main Results:
- Both Q and CPQ reduced lipofuscin autofluorescence and protein oxidation in aged microglia.
- CPQ demonstrated a superior ability to suppress superoxide burst sensitivity compared to Q.
- Both flavonoids downregulated cellular activation markers, hypertrophy, and isolectin B4 binding.
Conclusions:
- Quercetin and CPQ offer comparable protection against age-related changes in microglia.
- Flavonoids may counteract aging by interfering with ROS-driven lysosomal dysfunction.
- CPQ, with enhanced bioavailability, presents a promising candidate for pharmaceutical interventions against brain aging.
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