| Literature DB >> 28764027 |
Xiaoqi Xu1, Changhu Xue1, Yaoguang Chang2, Guanchen Liu3.
Abstract
As a bioactive and functional polysaccharide, sea cucumber fucoidan has received increasing attention. Chain conformation and physicochemical properties of fucoidan extracted from Thelenota ananas (Ta-FUC) was investigated by utilizing HPSEC-MALLS-Visc-RI, microelectrophoresis and steady shear measurements. The conformation parameter αs (0.61±0.02), the Mark-Houwink-Kuhn-Sakurada exponent αη (0.92±0.01), αh (0.64±0.01) and the Smidsrød-Haug stiffness parameter B (0.036±0.010) consistently manifested that Ta-FUC adopted a semi-flexible coil conformation in NaCl solution. Based on a wormlike cylinder model, stiffness parameters, including persistence length q (13.27±0.80nm) and cylinder diameter d (0.79nm), were calculated. This polysaccharide demonstrated shear-thinning rheological behaviour, and critical concentration from dilute to semidilute concentration regime was determined as 3.6mg/ml. Ta-FUC exhibited as a negative polyelectrolyte in wide pH and ionic strength ranges. These molecular characteristics and physicochemical properties would facilitate further application of Ta-FUC as a functional ingredient in food.Entities:
Keywords: Chain conformation; Fucoidan; Rheology; Sea cucumber; ζ-Potential
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Year: 2017 PMID: 28764027 DOI: 10.1016/j.foodchem.2017.05.103
Source DB: PubMed Journal: Food Chem ISSN: 0308-8146 Impact factor: 7.514