Rheological and textural properties of apple pectin-based composite formula with Xanthan gum modification for preparation of thickened matrices with dysphagia-friendly potential

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Abstract

Modifying the consistency of a given edible fluid matrix by incorporating food thickeners is a common nursing remedy for individuals with dysphagia when adequate water consumption is a concern. As apple pectin (AP) offers nutraceutical benefits, properly formulated apple pectin (AP)- based thickeners featuring xanthan gum (XG) can be superior candidates for preparation of dyspha-gia-friendly matrices (DFMs). Our recruited DFMs exhibit fluid-like behavior (loss modulus > stor-age modulus, G” > G’) at lower AP concentrations (2 and 5%, w/w); they turn into weak/critical gels (G’ ≈ G”) as the concentration becomes higher (9%). In contrast, XG-DFMs display gel-like attributes with G’ > G”, even at rather low concentrations (<1%) and become more resistant to sugar, Na+, and Ca2+ modifications. The composite matrix of AP1.8XG0.2 (constraint at 2%) exhibits a confined viscosity of 278 ± 11.7 mPa∙s, which is considered a DFM, in comparison to only AP- or XG-thickened ones. The hardness measurements of XG0.6 and AP1.2XG0.8 are 288.33 ± 7.506 and 302.00 ± 9.849 N/m2, respectively, which potentially represent a promising formulation base for future applications with DFMs; these textural values are not significantly different from a commercially available product (p > 0.05) for dysphagia nursing administrations.

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Yang, H., Tsai, C. C., Jiang, J. S., & Hua, C. C. (2021). Rheological and textural properties of apple pectin-based composite formula with Xanthan gum modification for preparation of thickened matrices with dysphagia-friendly potential. Polymers, 13(6). https://doi.org/10.3390/polym13060873

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