Shear and temperature sensitivity of a shear-thickening biopolymer from the New Zealand black tree fern

FOOD HYDROCOLLOIDS(2023)

引用 0|浏览8
暂无评分
摘要
Mamaku polysaccharide (MP) is a water-soluble shear-thickening biopolymer that has shown potential to be used in the design of novel food products targeting satiety management and weight loss. During the processing of MP at industrial scale, the polymer may be exposed to high temperature and shear, which could affect its rheological behaviour. Thus, herein we subjected extracted MP to high shear (between 1000-8000 rpm at various times, using a lab-scale high-shear mixer) and temperature treatment (between 65 and 115 degrees C, for 30 min) and investigated the changes in molecular structure and rheological properties. The temperature treatment dis-integrated the backbone of MP into smaller fragments (molecular weight-Mw, reduced from-3.9 x 106 Da with no heat, to-0.6 x 106 Da at 115 degrees C), which caused a reduction in viscosity and in the extent of shear-thickening as well as an increase in the damping factor (GMODIFIER LETTER PRIMEMODIFIER LETTER PRIME/GMODIFIER LETTER PRIME). Similar rheological trends were observed post-shear treatment, however, there was no evidence of depolymerisation, with the Mw, constituent sugar composition and NMR spectra (1H and 13C) being unaffected. It is suggested that the changes in rheological behaviour after shear treatment could be due to changes in the re-arrangement of MP molecules, which led to a compact and folded structure due to increased intra-molecular interactions. The results, therefore, indicate that modification of MP molecules during the industrial process such as shearing and heating should be considered as it may adversely affect the rheological properties of the product where MP is incorporated and the expected physio-logical benefits in the gastrointestinal tract.
更多
查看译文
关键词
Mamaku polysaccharide,Shear-thickening,Shear sensitivity,Temperature sensitivity,Shear rheology,Molecular structure
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要