ID | 117266 |
Author |
Ara, Tabassum
Tokushima University
Ono, Satoko
Tokushima University
Hasan, Mahadi
Kanazawa University
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Keywords | ferulic acid
liver toxicity
CCl4
liposome
oxidative stress
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Content Type |
Journal Article
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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.
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Journal Title |
Journal of Clinical Biochemistry and Nutrition
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ISSN | 09120009
18805086
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NCID | AA10710201
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Publisher | Society for Free Radical Research Japan
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Volume | 72
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Issue | 1
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Start Page | 46
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End Page | 53
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Published Date | 2023-01-01
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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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language |
eng
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departments |
Pharmaceutical Sciences
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