Fruit‐based functional foods I: production of food‐grade apple fibre ingredients

Функциональные продукты питания на основе фруктов I: получение пищевых ингредиентов из яблочной клетчатки
Dongxiao Sun‐Waterhouse, Judie M. Farr, Reginald Wibisono, Zaid S Saleh
2008-11-18

apple fibre ingredientsaqueous fibre preparationdietary fibrefunctional foodspectic polysaccharides
Summary With the increased consumer interest in fibre‐enriched functional foods, industrial‐scale methods for functional fibre production are demanded. The development of a food‐grade fibre preparation method at lab scale that is feasible for industrial scale‐up is a pre‐requisite. This paper describes two lab‐scale fibre preparation methods that have potential to be scaled up to industrial setting for the production of fruit fibres containing desired bioactives and functionality. The two methods, one aqueous and the other ethanolic, were used to isolate fibres from Granny Smith apples ( Malus domestica Borkh cv. ‘Granny Smith’). In the aqueous method, ground apple tissues were suspended in HEPES buffer (20 mM, pH 6.5), and then mechanically ruptured using an Ultra‐Turrax and ring grinder. Between steps, the cell‐wall materials were washed with the HEPES buffer. In the ethanolic method, ground apple tissues were stirred in 72% ethanol at 4 °C, filtered, re‐suspended in 72% ethanol and then washed. Microscopic examination and chemical analysis were performed on the resultant fibres. The aqueous method produced natural and uniform dietary fibres in the form of plant cell walls containing 0.282 g uronic acid per g dried fibre. By comparisons, the ethanolic method produced crude fibres containing only 0.182 g uronic acid per g dried fibre, the lower uronic acid content indicating the presence of impurities. Thus, the aqueous method appeared to be advantageous in terms of the retained pectic polysaccharide content and cost‐effectness for industrial scale‐up. Further characterisation using Folin‐Ciocalteu assay and high performance liquid chromatography indicates that the fibres obtained by the aqueous method contained significant amounts of phenolic compounds (2.6 mg catechin equivalent per g dried fibre). These results suggest that fibres obtained by the aqueous method may be more suitable for functional food applications where fibres with high pectic polysaccharide and beneficial phenolic antioxidants are preferred.
1
Aqueous processing retained more pectic polysaccharides and was considered more cost-effective for industrial scale-up than ethanolic processing.
2
Aqueous-derived fibres contained significant phenolic compounds, measured at 2.6 mg catechin equivalents per g dried fibre, supporting functional-food applications.
3
The aqueous method produced uniform natural plant-cell-wall fibres containing 0.282 g uronic acid per g dried fibre.
4
The ethanolic method yielded crude fibres with only 0.182 g uronic acid per g dried fibre, suggesting greater impurity content.
5
Two lab-scale apple fibre preparation methods—aqueous buffer processing and 72% ethanol extraction—were identified as potentially scalable for industrial production.

Food-grade dietary fibre ingredients isolated from Granny Smith apples (Malus domestica Borkh. cv. ‘Granny Smith’)

The effects of aqueous and ethanolic preparation methods on fibre composition, retained pectic polysaccharides, phenolic content, uniformity, and suitability for industrial-scale functional food production

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2008-11-18
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Dongxiao Sun‐Waterhouse
Judie M. Farr
Reginald Wibisono
Zaid S Saleh
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