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Oral Asiatic Acid Improves Cognitive Function and Modulates Antioxidant and Mitochondrial Pathways in Female 5xFAD Mice
by
Hack, Wyatt
, Varada, Samantha
, Gladen-Kolarsky, Noah
, Brumbach, Barbara H.
, Harris, Christopher J.
, Neff, Cody J.
, Brandes, Mikah S.
, Soumyanath, Amala
, Chamberlin, Stephen R.
, Bui, Lillie
, Gray, Nora E.
, Quinn, Joseph F.
in
Acids
/ Administration, Oral
/ Aging
/ Alzheimer Disease - drug therapy
/ Alzheimer Disease - metabolism
/ Alzheimer's disease
/ Amyloid beta-Peptides - genetics
/ Amyloid beta-Peptides - metabolism
/ Animal cognition
/ Animals
/ Antioxidants
/ Antioxidants - metabolism
/ Brain
/ Brain - drug effects
/ Brain - metabolism
/ Centella - chemistry
/ Cognition
/ Cognition - drug effects
/ Cognitive ability
/ Dehydrogenases
/ Diet
/ Disease Models, Animal
/ Enzymes
/ Female
/ Gene expression
/ Genes
/ Laboratory animals
/ Male
/ Memory
/ Memory - drug effects
/ Metabolism
/ Mice
/ Mice, Transgenic
/ Mitochondria - drug effects
/ Mitochondria - metabolism
/ Mutation
/ Oxidative stress
/ Pentacyclic Triterpenes - administration & dosage
/ Pentacyclic Triterpenes - pharmacology
2025
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Oral Asiatic Acid Improves Cognitive Function and Modulates Antioxidant and Mitochondrial Pathways in Female 5xFAD Mice
by
Hack, Wyatt
, Varada, Samantha
, Gladen-Kolarsky, Noah
, Brumbach, Barbara H.
, Harris, Christopher J.
, Neff, Cody J.
, Brandes, Mikah S.
, Soumyanath, Amala
, Chamberlin, Stephen R.
, Bui, Lillie
, Gray, Nora E.
, Quinn, Joseph F.
in
Acids
/ Administration, Oral
/ Aging
/ Alzheimer Disease - drug therapy
/ Alzheimer Disease - metabolism
/ Alzheimer's disease
/ Amyloid beta-Peptides - genetics
/ Amyloid beta-Peptides - metabolism
/ Animal cognition
/ Animals
/ Antioxidants
/ Antioxidants - metabolism
/ Brain
/ Brain - drug effects
/ Brain - metabolism
/ Centella - chemistry
/ Cognition
/ Cognition - drug effects
/ Cognitive ability
/ Dehydrogenases
/ Diet
/ Disease Models, Animal
/ Enzymes
/ Female
/ Gene expression
/ Genes
/ Laboratory animals
/ Male
/ Memory
/ Memory - drug effects
/ Metabolism
/ Mice
/ Mice, Transgenic
/ Mitochondria - drug effects
/ Mitochondria - metabolism
/ Mutation
/ Oxidative stress
/ Pentacyclic Triterpenes - administration & dosage
/ Pentacyclic Triterpenes - pharmacology
2025
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Oral Asiatic Acid Improves Cognitive Function and Modulates Antioxidant and Mitochondrial Pathways in Female 5xFAD Mice
by
Hack, Wyatt
, Varada, Samantha
, Gladen-Kolarsky, Noah
, Brumbach, Barbara H.
, Harris, Christopher J.
, Neff, Cody J.
, Brandes, Mikah S.
, Soumyanath, Amala
, Chamberlin, Stephen R.
, Bui, Lillie
, Gray, Nora E.
, Quinn, Joseph F.
in
Acids
/ Administration, Oral
/ Aging
/ Alzheimer Disease - drug therapy
/ Alzheimer Disease - metabolism
/ Alzheimer's disease
/ Amyloid beta-Peptides - genetics
/ Amyloid beta-Peptides - metabolism
/ Animal cognition
/ Animals
/ Antioxidants
/ Antioxidants - metabolism
/ Brain
/ Brain - drug effects
/ Brain - metabolism
/ Centella - chemistry
/ Cognition
/ Cognition - drug effects
/ Cognitive ability
/ Dehydrogenases
/ Diet
/ Disease Models, Animal
/ Enzymes
/ Female
/ Gene expression
/ Genes
/ Laboratory animals
/ Male
/ Memory
/ Memory - drug effects
/ Metabolism
/ Mice
/ Mice, Transgenic
/ Mitochondria - drug effects
/ Mitochondria - metabolism
/ Mutation
/ Oxidative stress
/ Pentacyclic Triterpenes - administration & dosage
/ Pentacyclic Triterpenes - pharmacology
2025
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Oral Asiatic Acid Improves Cognitive Function and Modulates Antioxidant and Mitochondrial Pathways in Female 5xFAD Mice
Journal Article
Oral Asiatic Acid Improves Cognitive Function and Modulates Antioxidant and Mitochondrial Pathways in Female 5xFAD Mice
2025
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Overview
Background/Objectives: Extracts of the plant Centella asiatica can enhance mitochondrial function, promote antioxidant activity and improve cognitive deficits. Asiatic acid (AA) is one of the constituent triterpene compounds present in the plant. In this study, we explore the effects of AA on brain mitochondrial function, antioxidant response and cognition in a beta-amyloid (Aβ)-overexpressing 5xFAD mouse line. Methods: Six- to seven-month-old 5xFAD mice were treated with 1% AA for 4 weeks. In the last week of treatment, associative memory was assessed along with mitochondrial bioenergetics and the expression of mitochondrial and antioxidant response genes from isolated cortical synaptosomes. The Aβ plaque burden was also evaluated. Results: AA treatment resulted in improvements in associative memory in female 5xFAD mice without altering the Aβ plaque burden. Cortical mitochondrial function and mitochondrial gene expression were increased in the AA-treated female 5xFAD mice, as was the expression of antioxidant genes. More modest effects of AA on cortical mitochondrial function and mitochondrial and antioxidant gene expression were observed in male 5xFAD mice. Conclusions: Oral AA treatment improved cognitive and mitochondrial function and activated antioxidant in Aβ-overexpressing mice. These changes occurred independent of alterations in Aβ plaque burden, suggesting that AA could have translational therapeutic relevance in later-stage AD when plaques are well established.
Publisher
MDPI AG,MDPI
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