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ID 117266
Author
Ara, Tabassum Tokushima University
Ono, Satoko Tokushima University
Hasan, Mahadi Kanazawa University
Keywords
ferulic acid
liver toxicity
CCl4
liposome
oxidative stress
Content Type
Journal Article
Description
Antioxidants are useful for the treatment of oxidative stress mediated liver damage. A naturally occurring antioxidant γ-oryzanol is rapidly hydrolyzed to its active hydrophobic metabolite, ferulic acid, inside the body. Limitations associated with the hydrophobicity of ferulic acid can be overcome by encapsulating in a liposomal formulation. As intravenously administered nanoparticles (including liposomes) can effectively reach the liver, such systems may be suitable drug delivery carriers to treat liver injury. In this study, we prepared a liposomal formulation of ferulic acid (ferulic-lipo) and examined its effects on liver damage induced by CCl4. Ferulic-lipo were ~100 nm in size and drug encapsulation efficiency was about 92%. Ferulic-lipo showed potent scavenging efficacy against hydroxyl radical compared to α-tocopherol liposomes. Ferulic-lipo significantly prevented CCl4-mediated cytotoxicity in human hepatocarcinoma cells. Furthermore, intravenous administration of ferulic-lipo significantly reduced alanine aminotransferase and aspartate amino transferase levels in a rat model of liver injury. CCl4-mediated reactive oxygen species generation in liver was also reduced by intravenous administration of ferulic-lipo. Hepato­protective effects of ferulic-lipo were demonstrated by histo­logical observation of CCl4-induced liver tissue damage. Therefore, ferulic-lipo exhibit potent antioxidative capacity and were suggested to be an effective formulation for prevention of oxidative damage of liver tissue.
Journal Title
Journal of Clinical Biochemistry and Nutrition
ISSN
09120009
18805086
NCID
AA10710201
Publisher
Society for Free Radical Research Japan
Volume
72
Issue
1
Start Page
46
End Page
53
Published Date
2023-01-01
Rights
This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivatives License (https://creativecommons.org/licenses/by-nc-nd/4.0/).
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DOI (Published Version)
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language
eng
TextVersion
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departments
Pharmaceutical Sciences