2022
DOI: 10.1111/1541-4337.12904
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Intact cells: “Nutritional capsules” in plant foods

Abstract: Macronutrients of pulses or cereals are stored in the cotyledon or endosperm cells with protection from intact cell walls. However, pulses and cereals are generally processed into fine particles during food production. For example, after milling, the macronutrients enclosed in the intact cells are released and are easily accessible to digestive enzymes in the gastrointestinal tract, leading to high metabolic responses. Therefore, studies on the health effects of intact cells and developing an alternative ingre… Show more

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Cited by 36 publications
(26 citation statements)
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“…To these backbones other sugar molecules and also phenolic acids can be linked, such as the hemicellulose type arabinoxylan ( 56 , 57 ). Finally, pectin serves like a filler giving the cellulose-hemicellulose scaffold stability, controlling permeability and together creating a matrix that can retain water ( Figure 1A ) ( 55 , 58 ). Similarly to hemicellulose, also pectin is a group of structurally diverse polymers, which have a linear galacturonic acid backbone (homogalacturonans) or a galacturonic acid and rhamnose backbone (rhamnogalacturonans) that can be further decorated with side-chains forming complexly branched polymers ( Figure 1A ) ( 20 , 24 , 59 ).…”
Section: Intrinsic Fibers: Complexly Intertwined Three-dimensional St...mentioning
confidence: 99%
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“…To these backbones other sugar molecules and also phenolic acids can be linked, such as the hemicellulose type arabinoxylan ( 56 , 57 ). Finally, pectin serves like a filler giving the cellulose-hemicellulose scaffold stability, controlling permeability and together creating a matrix that can retain water ( Figure 1A ) ( 55 , 58 ). Similarly to hemicellulose, also pectin is a group of structurally diverse polymers, which have a linear galacturonic acid backbone (homogalacturonans) or a galacturonic acid and rhamnose backbone (rhamnogalacturonans) that can be further decorated with side-chains forming complexly branched polymers ( Figure 1A ) ( 20 , 24 , 59 ).…”
Section: Intrinsic Fibers: Complexly Intertwined Three-dimensional St...mentioning
confidence: 99%
“…While all plants share these common aspects of the plant cell wall, their make-up differs depending on the type of plant (e.g. monocots versus dicots; see below), its maturation or ripeness and especially food processing ( 18 , 52 , 58 ). Even within plants, differences in cell types exist between the tissue we consume (such as leaf, root, fruit, stem, seed) and within these tissues ( 52 , 56 ).…”
Section: Intrinsic Fibers: Complexly Intertwined Three-dimensional St...mentioning
confidence: 99%
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