Free-radical scavenging properties and antioxidant activities of botryosphaeran and some other β-D-glucans

被引:78
作者
Giese, Ellen C. [1 ]
Gascon, Jacob [1 ]
Anzelmo, Gianluca [2 ]
Barbosa, Aneli M. [1 ,3 ]
Alves da Cunha, Mario A. [4 ]
Dekker, Robert F. H. [1 ]
机构
[1] Lakehead Univ, Biorefining Res Inst, Thunder Bay, ON P7B 5E1, Canada
[2] CNR, Ist Chim Biomol, I-80078 Naples, Italy
[3] Univ Estadual Londrina, Dept Quim, CCE, BR-86051990 Londrina, PR, Brazil
[4] Univ Fed Parana, Dept Quim, Pato Branco, PR, Brazil
基金
加拿大自然科学与工程研究理事会;
关键词
Botryosphaeran; Free-radical scavenging; Antioxidant activity; OXIDATIVE STRESS; STRUCTURAL-CHARACTERIZATION; CHEMICAL-CHARACTERIZATION; ANTICOAGULANT ACTIVITY; MOLECULAR-WEIGHT; FRUITING BODIES; RHODINA MAMB-05; POLYSACCHARIDES; MUSHROOM; YEAST;
D O I
10.1016/j.ijbiomac.2014.07.046
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
beta-D-Glucans are known to present antitumor, anticancer, and anti-inflammatory activities that are influenced by their own antioxidant capacity. The antioxidant activity of botryosphaeran, an exopolysaccharide of the (1 -> 3;1 -> 6)-beta-D-glucan type produced by the Bodyosphaeria rhodina MAMB-05was evaluated and compared to some other beta-D-glucans (lasiodiplodan an exocellular (1 -> 6)-beta-D-glucan from Lasiodiplodia theobromae, laminarin and curdlan), and oligosaccharides, disaccharides, and monosaccharides in a study of scavenging activities of free radicals in-vitro. Botryosphaeran displayed high total antioxidant activity (80%) as well as good scavenging activity against hydroxyl radical (90.6%), superoxide anion (37%), hydrogen peroxide (38%), and nitric oxide radical (90%). No reducing power, metal-chelating capacity or inhibition of lipid peroxidation was observed for these beta-D-glucans. The results demonstrated that botryosphaeran exhibited effective antioxidant activity as supported by many different assays, suggesting that this beta-D-glucan may serve as a source of a new bioactive compound with effective antioxidant activity. (C) 2014 Elsevier B.V. All rights reserved.
引用
收藏
页码:125 / 130
页数:6
相关论文
共 36 条
[1]   Methods for monitoring oxidative stress, lipid peroxidation and oxidation resistance of lipoproteins [J].
Abuja, PM ;
Albertini, R .
CLINICA CHIMICA ACTA, 2001, 306 (1-2) :1-17
[2]  
Bacic A, 2009, CHEMISTRY, BIOCHEMISTRY, AND BIOLOGY OF (1-->3)-BETA-GLUCANS AND RELATED POLYSACCHARIDES, P1
[3]   Structural characterization of Botryosphaeran:: a (1→3;1→6)-β-D-glucan produced by the ascomyceteous fungus, Botryosphaeria sp. [J].
Barbosa, AM ;
Steluti, RM ;
Dekker, RFH ;
Cardoso, MS ;
da Silva, MLC .
CARBOHYDRATE RESEARCH, 2003, 338 (16) :1691-1698
[4]   (1->3)-beta-D-glucans as biological response modifiers: A review of structure-functional activity relationships [J].
Bohn, JA ;
BeMiller, JN .
CARBOHYDRATE POLYMERS, 1995, 28 (01) :3-14
[5]   Chemical Modification of Botryosphaeran: Structural Characterization and Anticoagulant Activity of a Water-Soluble Sulfonated (1→3)(1→6)-β-D-Glucan [J].
Brandi, Jamile ;
Oliveira, Eder C. ;
Monteiro, Nilson K. ;
Vasconcelos, Ana Flora D. ;
Dekker, Robert F. H. ;
Barbosa, Aneli M. ;
Silveira, Joana L. M. ;
Mourao, Paulo A. S. ;
Corradi da Silva, Maria de Lourdes .
JOURNAL OF MICROBIOLOGY AND BIOTECHNOLOGY, 2011, 21 (10) :1036-1042
[6]  
Brown GD, 2009, CHEMISTRY, BIOCHEMISTRY, AND BIOLOGY OF (1-->3)-BETA-GLUCANS AND RELATED POLYSACCHARIDES, P579
[7]   Medicinal importance of fungal β-(1→3), (1→6)-glucans [J].
Chen, Jiezhony ;
Seviour, Robert .
MYCOLOGICAL RESEARCH, 2007, 111 :635-652
[8]  
Cunha M.A.A., 2012, J IND MICROBIOL BIOT, V39, P1
[9]   β-glucan recognition by the innate immune system [J].
Goodridge, Helen S. ;
Wolf, Andrea J. ;
Underhill, David M. .
IMMUNOLOGICAL REVIEWS, 2009, 230 :38-50
[10]  
Gregori A, 2007, FOOD TECHNOL BIOTECH, V45, P238