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Published on: July 31, 2017
Neuroprotective Potentials of Flavonoids: Experimental Studies and Mechanisms of Action
1Independent Researcher, 37128 Verona, Italy.
Abstract:
Neurological and neurodegenerative diseases, particularly those related to aging, are on the rise, but drug therapies are rarely curative. Functional disorders and the organic degeneration of nervous tissue often have complex causes, in which phenomena of oxidative stress, inflammation and cytotoxicity are intertwined. For these reasons, the search for natural substances that can slow down or counteract these pathologies has increased rapidly over the last two decades. In this paper, studies on the neuroprotective effects of flavonoids (especially the two most widely used, hesperidin and quercetin) on animal models of depression, neurotoxicity, Alzheimer's disease (AD) and Parkinson's disease are reviewed. The literature on these topics amounts to a few hundred publications on in vitro and in vivo models (notably in rodents) and provides us with a very detailed picture of the action mechanisms and targets of these substances. These include the decrease in enzymes that produce reactive oxygen and ferroptosis, the inhibition of mono-amine oxidases, the stimulation of the Nrf2/ARE system, the induction of brain-derived neurotrophic factor production and, in the case of AD, the prevention of amyloid-beta aggregation. The inhibition of neuroinflammatory processes has been documented as a decrease in cytokine formation (mainly TNF-alpha and IL-1beta) by microglia and astrocytes, by modulating a number of regulatory proteins such as Nf-kB and NLRP3/inflammasome. Although clinical trials on humans are still scarce, preclinical studies allow us to consider hesperidin, quercetin, and other flavonoids as very interesting and safe dietary molecules to be further investigated as complementary treatments in order to prevent neurodegenerative diseases or to moderate their deleterious effects.
Insights
Flavonoids like hesperidin and quercetin show promise in protecting against neurological diseases. Preclinical studies suggest these natural compounds can mitigate oxidative stress and inflammation, offering potential as complementary therapies.
Area of Science:
- Neuroscience
- Pharmacology
- Biochemistry
Background:
- Neurological and neurodegenerative diseases are increasing, with limited curative drug options.
- Complex causes involve oxidative stress, inflammation, and cytotoxicity.
- Natural compounds are being explored to counteract these pathologies.
Purpose of the Study:
- To review the neuroprotective effects of flavonoids, specifically hesperidin and quercetin.
- To examine their impact on animal models of depression, neurotoxicity, Alzheimer's disease (AD), and Parkinson's disease.
Main Methods:
- Review of hundreds of in vitro and in vivo (rodent) studies.
- Analysis of molecular mechanisms and targets of flavonoid action.
Main Results:
- Flavonoids decrease reactive oxygen species and ferroptosis.
- They inhibit monoamine oxidases and stimulate the Nrf2/ARE system.
- Flavonoids induce brain-derived neurotrophic factor and prevent amyloid-beta aggregation in AD models.
- Neuroinflammation is inhibited by decreasing cytokine formation (TNF-alpha, IL-1beta) and modulating Nf-kB and NLRP3/inflammasome pathways.
Conclusions:
- Preclinical evidence suggests hesperidin, quercetin, and other flavonoids are safe and effective.
- These compounds show potential as complementary treatments for preventing or managing neurodegenerative diseases.

