The Suppressive Activity of Fucofuroeckol-A Derived from Brown Algal Ecklonia stolonifera Okamura on UVB-Induced Mast Cell Degranulation

UV light, especially UVB, is known as a trigger of allergic reaction, leading to mast cell degranulation and histamine release. In this study, phlorotannin Fucofuroeckol-A (F-A) derived from brown algal Ecklonia stolonifera Okamura was evaluated for its protective capability against UVB-induced alle...

Full description

Bibliographic Details
Main Authors: Thanh Sang Vo, Se-Kwon Kim, BoMi Ryu, Dai Hung Ngo, Na-Young Yoon, Long Giang Bach, Nguyen Thi Nhat Hang, Dai Nghiep Ngo
Format: Article
Language:English
Published: MDPI AG 2018-01-01
Series:Marine Drugs
Subjects:
Online Access:http://www.mdpi.com/1660-3397/16/1/1
_version_ 1797999372911247360
author Thanh Sang Vo
Se-Kwon Kim
BoMi Ryu
Dai Hung Ngo
Na-Young Yoon
Long Giang Bach
Nguyen Thi Nhat Hang
Dai Nghiep Ngo
author_facet Thanh Sang Vo
Se-Kwon Kim
BoMi Ryu
Dai Hung Ngo
Na-Young Yoon
Long Giang Bach
Nguyen Thi Nhat Hang
Dai Nghiep Ngo
author_sort Thanh Sang Vo
collection DOAJ
description UV light, especially UVB, is known as a trigger of allergic reaction, leading to mast cell degranulation and histamine release. In this study, phlorotannin Fucofuroeckol-A (F-A) derived from brown algal Ecklonia stolonifera Okamura was evaluated for its protective capability against UVB-induced allergic reaction in RBL-2H3 mast cells. It was revealed that F-A significantly suppress mast cell degranulation via decreasing histamine release as well as intracellular Ca2+ elevation at the concentration of 50 μM. Moreover, the inhibitory effect of F-A on IL-1β and TNF-α productions was also evidenced. Notably, the protective activity of F-A against mast cell degranulation was found due to scavenging ROS production. Accordingly, F-A from brown algal E. stolonifera was suggested to be promising candidate for its protective capability against UVB-induced allergic reaction.
first_indexed 2024-04-11T11:03:42Z
format Article
id doaj.art-0e332d243d26446fa051292daaca45ac
institution Directory Open Access Journal
issn 1660-3397
language English
last_indexed 2024-04-11T11:03:42Z
publishDate 2018-01-01
publisher MDPI AG
record_format Article
series Marine Drugs
spelling doaj.art-0e332d243d26446fa051292daaca45ac2022-12-22T04:28:26ZengMDPI AGMarine Drugs1660-33972018-01-01161110.3390/md16010001md16010001The Suppressive Activity of Fucofuroeckol-A Derived from Brown Algal Ecklonia stolonifera Okamura on UVB-Induced Mast Cell DegranulationThanh Sang Vo0Se-Kwon Kim1BoMi Ryu2Dai Hung Ngo3Na-Young Yoon4Long Giang Bach5Nguyen Thi Nhat Hang6Dai Nghiep Ngo7NTT Institute of Hi-Technology, Nguyen Tat Thanh University, Ho Chi Minh City 700000, VietnamDepartment of Marine Life Science, College of Ocean Science and Technology, Korea Maritime and Ocean University, Busan 606-791, KoreaSchool of Pharmacy, the University of Queensland, Brisbane QLD 4072, AustraliaFaculty of Natural Sciences, Thu Dau Mot University, Thu Dau Mot City 820000, Binh Duong Province, VietnamFood and Safety Research Center, National Fisheries Research & Development, Busan 46083, KoreaDepartment of Science and Technology, Nguyen Tat Thanh University, Ho Chi Minh City 700000, VietnamFaculty of Natural Sciences, Thu Dau Mot University, Thu Dau Mot City 820000, Binh Duong Province, VietnamDepartment of Biochemistry, Faculty of Biology and Biotechnology, University of Science, Vietnam National University, Ho Chi Minh City 700000, VietnamUV light, especially UVB, is known as a trigger of allergic reaction, leading to mast cell degranulation and histamine release. In this study, phlorotannin Fucofuroeckol-A (F-A) derived from brown algal Ecklonia stolonifera Okamura was evaluated for its protective capability against UVB-induced allergic reaction in RBL-2H3 mast cells. It was revealed that F-A significantly suppress mast cell degranulation via decreasing histamine release as well as intracellular Ca2+ elevation at the concentration of 50 μM. Moreover, the inhibitory effect of F-A on IL-1β and TNF-α productions was also evidenced. Notably, the protective activity of F-A against mast cell degranulation was found due to scavenging ROS production. Accordingly, F-A from brown algal E. stolonifera was suggested to be promising candidate for its protective capability against UVB-induced allergic reaction.http://www.mdpi.com/1660-3397/16/1/1Ecklonia stoloniferaphlorotanninFucofuroeckol-Aanti-allergydegranulationmast cells
spellingShingle Thanh Sang Vo
Se-Kwon Kim
BoMi Ryu
Dai Hung Ngo
Na-Young Yoon
Long Giang Bach
Nguyen Thi Nhat Hang
Dai Nghiep Ngo
The Suppressive Activity of Fucofuroeckol-A Derived from Brown Algal Ecklonia stolonifera Okamura on UVB-Induced Mast Cell Degranulation
Marine Drugs
Ecklonia stolonifera
phlorotannin
Fucofuroeckol-A
anti-allergy
degranulation
mast cells
title The Suppressive Activity of Fucofuroeckol-A Derived from Brown Algal Ecklonia stolonifera Okamura on UVB-Induced Mast Cell Degranulation
title_full The Suppressive Activity of Fucofuroeckol-A Derived from Brown Algal Ecklonia stolonifera Okamura on UVB-Induced Mast Cell Degranulation
title_fullStr The Suppressive Activity of Fucofuroeckol-A Derived from Brown Algal Ecklonia stolonifera Okamura on UVB-Induced Mast Cell Degranulation
title_full_unstemmed The Suppressive Activity of Fucofuroeckol-A Derived from Brown Algal Ecklonia stolonifera Okamura on UVB-Induced Mast Cell Degranulation
title_short The Suppressive Activity of Fucofuroeckol-A Derived from Brown Algal Ecklonia stolonifera Okamura on UVB-Induced Mast Cell Degranulation
title_sort suppressive activity of fucofuroeckol a derived from brown algal ecklonia stolonifera okamura on uvb induced mast cell degranulation
topic Ecklonia stolonifera
phlorotannin
Fucofuroeckol-A
anti-allergy
degranulation
mast cells
url http://www.mdpi.com/1660-3397/16/1/1
work_keys_str_mv AT thanhsangvo thesuppressiveactivityoffucofuroeckoladerivedfrombrownalgaleckloniastoloniferaokamuraonuvbinducedmastcelldegranulation
AT sekwonkim thesuppressiveactivityoffucofuroeckoladerivedfrombrownalgaleckloniastoloniferaokamuraonuvbinducedmastcelldegranulation
AT bomiryu thesuppressiveactivityoffucofuroeckoladerivedfrombrownalgaleckloniastoloniferaokamuraonuvbinducedmastcelldegranulation
AT daihungngo thesuppressiveactivityoffucofuroeckoladerivedfrombrownalgaleckloniastoloniferaokamuraonuvbinducedmastcelldegranulation
AT nayoungyoon thesuppressiveactivityoffucofuroeckoladerivedfrombrownalgaleckloniastoloniferaokamuraonuvbinducedmastcelldegranulation
AT longgiangbach thesuppressiveactivityoffucofuroeckoladerivedfrombrownalgaleckloniastoloniferaokamuraonuvbinducedmastcelldegranulation
AT nguyenthinhathang thesuppressiveactivityoffucofuroeckoladerivedfrombrownalgaleckloniastoloniferaokamuraonuvbinducedmastcelldegranulation
AT dainghiepngo thesuppressiveactivityoffucofuroeckoladerivedfrombrownalgaleckloniastoloniferaokamuraonuvbinducedmastcelldegranulation
AT thanhsangvo suppressiveactivityoffucofuroeckoladerivedfrombrownalgaleckloniastoloniferaokamuraonuvbinducedmastcelldegranulation
AT sekwonkim suppressiveactivityoffucofuroeckoladerivedfrombrownalgaleckloniastoloniferaokamuraonuvbinducedmastcelldegranulation
AT bomiryu suppressiveactivityoffucofuroeckoladerivedfrombrownalgaleckloniastoloniferaokamuraonuvbinducedmastcelldegranulation
AT daihungngo suppressiveactivityoffucofuroeckoladerivedfrombrownalgaleckloniastoloniferaokamuraonuvbinducedmastcelldegranulation
AT nayoungyoon suppressiveactivityoffucofuroeckoladerivedfrombrownalgaleckloniastoloniferaokamuraonuvbinducedmastcelldegranulation
AT longgiangbach suppressiveactivityoffucofuroeckoladerivedfrombrownalgaleckloniastoloniferaokamuraonuvbinducedmastcelldegranulation
AT nguyenthinhathang suppressiveactivityoffucofuroeckoladerivedfrombrownalgaleckloniastoloniferaokamuraonuvbinducedmastcelldegranulation
AT dainghiepngo suppressiveactivityoffucofuroeckoladerivedfrombrownalgaleckloniastoloniferaokamuraonuvbinducedmastcelldegranulation