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Neuroprotection by natural polyphenols: molecular mechanisms.

Central nervous system agents in medicinal chemistry
January 1, 1970
Maria del Rosario Campos-Esparza et al. (2 authors)
Journal ArticleResearch Support, Non-U.S. Gov'tReviewHuman StudyMolecular Study
Study Details

Study Goal

The researchers aimed to review the role of polyphenols, including those found in wine, in neuroprotection through various biological processes.

Results Summary

The study found that polyphenols, including those in wine, can protect neuronal cells by targeting oxidative stress, excitotoxicity, apoptotic neuronal death, kinase signal cascades, and the Ubiquitin-Proteasome pathway. These mechanisms suggest potential benefits for neurodegenerative diseases.

Population

Not specified (in vitro and in vivo models referenced, but no human population detailed).

Effective Dosage

Not specified

Duration

Not specified

Interactions

None mentioned

Extracted Claims (8)
InterventionDirectionEndpointPopulationDosageImpactClaim #
polyphenols
increase
neuronal cells
different in vivo and in vitro models
-
are capable of protecting
#1
polyphenols
increase
neuronal cells
different in vivo and in vitro models
-
protecting
#2
polyphenols
increase
neuroprotection
-
-
role on the molecular mechanism involve in neuroprotection
#3
polyphenols
neutral
oxidative stress
-
-
role on the molecular mechanism involve in neuroprotection
#4
polyphenols
neutral
excitotoxicity
-
-
role on the molecular mechanism involve in neuroprotection
#5
polyphenols
neutral
apoptotic neuronal death
-
-
role on the molecular mechanism involve in neuroprotection
#6
polyphenols
neutral
regulation of the kinase signal cascade
-
-
role on the molecular mechanism involve in neuroprotection
#7
polyphenols
neutral
modulation of Ubiquitin-Proteasome pathway
-
-
role on the molecular mechanism involve in neuroprotection
#8
Abstract

Polyphenols are the most abundant antioxidants in diet. These can be found in fruits, vegetables, beverages (tea, wine, juices, etc.), plants and some herbs. These compounds are capable of protecting neuronal cells in different in vivo and in vitro models through diverse intracellular targets. The focus of this review is aimed at presenting the role of some polyphenols on the molecular mechanism involve in neuroprotection through different biological processes like oxidative stress, excitotoxicity, apoptotic neuronal death, regulation of the kinase signal cascade and modulation of Ubiquitin-Proteasome pathway. The study of the molecular mechanisms involved in neuroprotection and the molecular targets of natural polyphenols are important in the discovery of a valuable tool for new and more advanced therapy in neurodegenerative diseases.

Medical Subject Headings (MeSH)
AnimalsCalciumCell DeathFlavonoidsHumansMitochondriaNeuronsNeuroprotective AgentsOxidative StressPeptide HydrolasesPhenolsPolyphenolsProteasome Endopeptidase ComplexUbiquitin
Study Links
Quality Scores
SafetyNot Assessed
Efficacy75/10
Quality80/10
Citation Metrics
Total Citations18
Citations/Year1.2
Relative Citation Ratio0.59
NIH Percentile32.1%
Research Impact Scores
APT Score0.05
Weight Score0.86
Normalized Score0.66
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