Cargando…

Synergistic antioxidative effect of astaxanthin and tocotrienol by co-encapsulated in liposomes

Astaxanthin and vitamin E are both effective antioxidants that are frequently used in cosmetics, as food additives, and in to prevent oxidative damage. A combination of astaxanthin and vitamin E would be expected to show an additive anntioxidative effect. In this study, liposomes co-encapsulating as...

Descripción completa

Detalles Bibliográficos
Autores principales: Kamezaki, Chihiro, Nakashima, Ami, Yamada, Asako, Uenishi, Sachiko, Ishibashi, Hiroshi, Shibuya, Natsumi, Hama, Susumu, Hosoi, Shinzo, Yamashita, Eiji, Kogure, Kentaro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: the Society for Free Radical Research Japan 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5018571/
https://www.ncbi.nlm.nih.gov/pubmed/27698536
http://dx.doi.org/10.3164/jcbn.15-153
_version_ 1782452932281630720
author Kamezaki, Chihiro
Nakashima, Ami
Yamada, Asako
Uenishi, Sachiko
Ishibashi, Hiroshi
Shibuya, Natsumi
Hama, Susumu
Hosoi, Shinzo
Yamashita, Eiji
Kogure, Kentaro
author_facet Kamezaki, Chihiro
Nakashima, Ami
Yamada, Asako
Uenishi, Sachiko
Ishibashi, Hiroshi
Shibuya, Natsumi
Hama, Susumu
Hosoi, Shinzo
Yamashita, Eiji
Kogure, Kentaro
author_sort Kamezaki, Chihiro
collection PubMed
description Astaxanthin and vitamin E are both effective antioxidants that are frequently used in cosmetics, as food additives, and in to prevent oxidative damage. A combination of astaxanthin and vitamin E would be expected to show an additive anntioxidative effect. In this study, liposomes co-encapsulating astaxanthin and the vitamin E derivatives α-tocopherol (α-T) or tocotrienols (T3) were prepared, and the antioxidative activity of these liposomes toward singlet oxygen and hydroxyl radical was evaluated in vitro. Liposomes co-encapsulating astaxanthin and α-T showed no additive anntioxidative effect, while the actual scavenging activity of liposomes co-encapsulating astaxanthin and T3 was higher than the calculated additive activity. To clarify why this synergistic effect occurs, the most stable structure of astaxanthin in the presence of α-T or α-T3 was calculated. Only α-T3 was predicted to form hydrogen bonding with astaxanthin, and the astaxanthin polyene chain would partially interact with the α-T3 triene chain, which could explain why there was a synergistic effect between astaxanthin and T3 but not α-T. In conclusion, co-encapsulation of astaxanthin and T3 induces synergistic scavenging activity by intermolecular interactions between the two antioxidants.
format Online
Article
Text
id pubmed-5018571
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher the Society for Free Radical Research Japan
record_format MEDLINE/PubMed
spelling pubmed-50185712016-10-03 Synergistic antioxidative effect of astaxanthin and tocotrienol by co-encapsulated in liposomes Kamezaki, Chihiro Nakashima, Ami Yamada, Asako Uenishi, Sachiko Ishibashi, Hiroshi Shibuya, Natsumi Hama, Susumu Hosoi, Shinzo Yamashita, Eiji Kogure, Kentaro J Clin Biochem Nutr Original Article Astaxanthin and vitamin E are both effective antioxidants that are frequently used in cosmetics, as food additives, and in to prevent oxidative damage. A combination of astaxanthin and vitamin E would be expected to show an additive anntioxidative effect. In this study, liposomes co-encapsulating astaxanthin and the vitamin E derivatives α-tocopherol (α-T) or tocotrienols (T3) were prepared, and the antioxidative activity of these liposomes toward singlet oxygen and hydroxyl radical was evaluated in vitro. Liposomes co-encapsulating astaxanthin and α-T showed no additive anntioxidative effect, while the actual scavenging activity of liposomes co-encapsulating astaxanthin and T3 was higher than the calculated additive activity. To clarify why this synergistic effect occurs, the most stable structure of astaxanthin in the presence of α-T or α-T3 was calculated. Only α-T3 was predicted to form hydrogen bonding with astaxanthin, and the astaxanthin polyene chain would partially interact with the α-T3 triene chain, which could explain why there was a synergistic effect between astaxanthin and T3 but not α-T. In conclusion, co-encapsulation of astaxanthin and T3 induces synergistic scavenging activity by intermolecular interactions between the two antioxidants. the Society for Free Radical Research Japan 2016-09 2016-09-01 /pmc/articles/PMC5018571/ /pubmed/27698536 http://dx.doi.org/10.3164/jcbn.15-153 Text en Copyright © 2016 JCBN This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Kamezaki, Chihiro
Nakashima, Ami
Yamada, Asako
Uenishi, Sachiko
Ishibashi, Hiroshi
Shibuya, Natsumi
Hama, Susumu
Hosoi, Shinzo
Yamashita, Eiji
Kogure, Kentaro
Synergistic antioxidative effect of astaxanthin and tocotrienol by co-encapsulated in liposomes
title Synergistic antioxidative effect of astaxanthin and tocotrienol by co-encapsulated in liposomes
title_full Synergistic antioxidative effect of astaxanthin and tocotrienol by co-encapsulated in liposomes
title_fullStr Synergistic antioxidative effect of astaxanthin and tocotrienol by co-encapsulated in liposomes
title_full_unstemmed Synergistic antioxidative effect of astaxanthin and tocotrienol by co-encapsulated in liposomes
title_short Synergistic antioxidative effect of astaxanthin and tocotrienol by co-encapsulated in liposomes
title_sort synergistic antioxidative effect of astaxanthin and tocotrienol by co-encapsulated in liposomes
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5018571/
https://www.ncbi.nlm.nih.gov/pubmed/27698536
http://dx.doi.org/10.3164/jcbn.15-153
work_keys_str_mv AT kamezakichihiro synergisticantioxidativeeffectofastaxanthinandtocotrienolbycoencapsulatedinliposomes
AT nakashimaami synergisticantioxidativeeffectofastaxanthinandtocotrienolbycoencapsulatedinliposomes
AT yamadaasako synergisticantioxidativeeffectofastaxanthinandtocotrienolbycoencapsulatedinliposomes
AT uenishisachiko synergisticantioxidativeeffectofastaxanthinandtocotrienolbycoencapsulatedinliposomes
AT ishibashihiroshi synergisticantioxidativeeffectofastaxanthinandtocotrienolbycoencapsulatedinliposomes
AT shibuyanatsumi synergisticantioxidativeeffectofastaxanthinandtocotrienolbycoencapsulatedinliposomes
AT hamasusumu synergisticantioxidativeeffectofastaxanthinandtocotrienolbycoencapsulatedinliposomes
AT hosoishinzo synergisticantioxidativeeffectofastaxanthinandtocotrienolbycoencapsulatedinliposomes
AT yamashitaeiji synergisticantioxidativeeffectofastaxanthinandtocotrienolbycoencapsulatedinliposomes
AT kogurekentaro synergisticantioxidativeeffectofastaxanthinandtocotrienolbycoencapsulatedinliposomes