» Articles » PMID: 20021389

Nanoparticulated Quercetin in Combating Age Related Cerebral Oxidative Injury

Overview
Journal Curr Aging Sci
Specialty Geriatrics
Date 2009 Dec 22
PMID 20021389
Citations 22
Authors
Affiliations
Soon will be listed here.
Abstract

Reactive oxygen species e.g. O(2)(*-), H(2)O(2) and *OH generated by the induction of oxidative stress exert a potential threat on the activity of endogenous antioxidant enzymes and substantially influence the aging process and age-dependant neuropathology. Chemical antioxidant is almost ineffective in protecting neuronal cells from oxidative damage as Blood Brain Barrier exists in between blood and brain interstitial fluid that restricts undegradable influx from the circulation into cerebral region. Quercetin (QC), a flavonoidal antioxidant is known as a potent antioxidant for its polyphenolic configuration. Formulation of QC in polylactide nanocapsule has been done and the efficacy of this vesicular flavonoid has been tested against cerebral ischemia induced oxidative damage in young and old rat brains. Antioxidant potential of QC loaded in nanocapsule (QC 7.2 mmol/kg b.wt., size 50 nm) was investigated by an in vivo model of cerebral ischemia and reperfusion on Sprague Dawley young (2 months, b.wt. 160-180 g) and aged (20 months, b.wt. 415-440 g) rats. Diene level, the index of lipid peroxidation and GSSG/GSH ratio were found to be higher in normal aged, compared to normal young rat brain. Endogenous antioxidants activities were lower in aged rat brain compared to young. Further reduction of these antioxidants were observed in aged rat brain by the induction of cerebral ischemia - reperfusion. Nanocapsule encapsulated QC treatment resulted a significant protection to endogenous antioxidant enzymes against ischemia induced oxidative damage in neuronal cells of young and old rats.

Citing Articles

Quercetin nanoparticles as a therapeutic approach: pharmacological actions and potential applications in therapy.

Baiomy R BioTechnologia (Pozn). 2025; 105(4):377-393.

PMID: 39844873 PMC: 11748223. DOI: 10.5114/bta.2024.145258.


Therapeutic Potential of Myricetin in the Treatment of Neurological, Neuropsychiatric, and Neurodegenerative Disorders.

Sethiya N, Ghiloria N, Srivastav A, Bisht D, Chaudhary S, Walia V CNS Neurol Disord Drug Targets. 2023; 23(7):865-882.

PMID: 37461364 DOI: 10.2174/1871527322666230718105358.


Oxidation Stress as a Mechanism of Aging in Human Erythrocytes: Protective Effect of Quercetin.

Remigante A, Spinelli S, Basile N, Caruso D, Falliti G, Dossena S Int J Mol Sci. 2022; 23(14).

PMID: 35887126 PMC: 9323120. DOI: 10.3390/ijms23147781.


Airway epithelial Paraoxonase-2 in obese asthma.

Winnica D, Monzon A, Ye S, Vladar E, Saal M, Cooney R PLoS One. 2022; 17(3):e0261504.

PMID: 35286330 PMC: 8920196. DOI: 10.1371/journal.pone.0261504.


Quercetin exhibits potent antioxidant activity, restores motor and non-motor deficits induced by rotenone toxicity.

Madiha S, Batool Z, Tabassum S, Liaquat L, Sadir S, Shahzad S PLoS One. 2021; 16(11):e0258928.

PMID: 34767546 PMC: 8589152. DOI: 10.1371/journal.pone.0258928.