2023
DOI: 10.1016/j.scp.2023.100979
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Supercritical carbon dioxide treatment of plum (Prunus domestica L) kernel protein isolate: Impact on structural, thermal, physical, and functional properties

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Cited by 3 publications
(4 citation statements)
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“…Supercritical CO2-treated samples had their solubility increased up to 23% and foam capacity up to 200% compared to the native plant protein. The improvements in the plant protein's technological properties were attributed to the CO2 solubility that promoted significant changes in protein conformation, making them more prone to aggregation forming soluble aggregates [112]. Therefore, supercritical CO2 processing could be a smart strategy for the underutilized novel plant protein sources.…”
Section: Non-thermal Supercritical Co 2 Processing Of Cannabis Biomassmentioning
confidence: 99%
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“…Supercritical CO2-treated samples had their solubility increased up to 23% and foam capacity up to 200% compared to the native plant protein. The improvements in the plant protein's technological properties were attributed to the CO2 solubility that promoted significant changes in protein conformation, making them more prone to aggregation forming soluble aggregates [112]. Therefore, supercritical CO2 processing could be a smart strategy for the underutilized novel plant protein sources.…”
Section: Non-thermal Supercritical Co 2 Processing Of Cannabis Biomassmentioning
confidence: 99%
“…The key point that makes CO 2 an attractive solvent for food intents is the fact that it is a substance that is not chemically reactive [111]. Indeed, many studies reported the chemical stability of macronutrients after supercritical CO 2 processing such as sugars [99,102], dietary fibers [100], proteins [112,113], and others.…”
Section: Non-thermal Supercritical Co 2 Processing Of Cannabis Biomassmentioning
confidence: 99%
See 2 more Smart Citations