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高压均质化:扩大奇亚胶在食品中应用的有前途的方法。

High pressure homogenization: A promising approach to expand food applications of chia mucilage.

机构信息

CONICET - Universidad de Buenos Aires, Instituto de Tecnología de Alimentos y Procesos Químicos (ITAPROQ), Buenos Aires, Argentina.

CONICET - Universidad de Buenos Aires, Instituto de Tecnología de Alimentos y Procesos Químicos (ITAPROQ), Buenos Aires, Argentina.

出版信息

Int J Biol Macromol. 2024 Apr;263(Pt 2):129787. doi: 10.1016/j.ijbiomac.2024.129787. Epub 2024 Jan 29.

DOI:10.1016/j.ijbiomac.2024.129787
PMID:38296145
Abstract

Two chia mucilages with different viscosities, obtained by extraction conditions optimized in a previous work, were homogenized by high pressure homogenization (HPH). Particle size, molecular weight, zeta potential, FTIR spectrum, rheological properties, water absorption capacity, water holding capacity and iron binding capacity were determined on both mucilages treated and without treatment. Homogenization led to a significant reduction in viscosity respect to chia mucilage controls, which can be related to the decrease in particle size and molecular weight. A high iron binding capacity was obtained for both mucilages. FTIR spectra of both mucilages with iron showed displacements in bands related with stretching of carboxylic uronic acids, suggesting the interaction site with this mineral. This interaction was also verified by particle size determination with a displacement to higher sizes in the presence of iron. Potential zeta showed a significant reduction in the presence of iron. A model to explain the binding between chia mucilage and iron is proposed. HPH appears as an alternative to expand chia mucilage functionality reducing the viscosity of chia mucilage solutions for the offer of a new ingredient also with optimal levels of hydration and iron binding capacity.

摘要

两种具有不同黏度的奇亚胶,通过先前工作优化的提取条件得到,通过高压均质处理(HPH)使它们均匀化。处理和未处理的两种胶均测定了粒径、分子量、Zeta 电位、FTIR 光谱、流变特性、吸水率、持水能力和铁结合能力。均质处理后,黏度比奇亚胶对照显著降低,这可能与粒径和分子量的降低有关。两种胶的铁结合能力都很高。与铁结合的两种胶的 FTIR 光谱显示出与羧酸糖醛酸伸缩相关的谱带位移,表明与这种矿物质的相互作用位点。通过在存在铁的情况下粒径测定到的位移到更高的尺寸,也验证了这种相互作用。潜在 Zeta 在存在铁的情况下显著降低。提出了一种解释奇亚胶与铁结合的模型。HPH 似乎是一种替代方法,可以降低奇亚胶溶液的黏度,扩大奇亚胶的功能,为提供一种新的成分,同时具有最佳的水合和铁结合能力。

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