Physicochemical, Quality, Antioxidant and Sensory Attributes of Innovative Functional White Pan Bread Manufactured from Wheat Flour Fortified with Broccoli Plant Parts

Innovative aliments obtained upon integration of plant-based ingredients for producing nutraceutical-enriched functional food under the perspective of sustainable management have been drawing increasing importance within the scientific community. Research was conducted to evaluate the effects of the addition of broccoli plant part powder (stalks and inflorescences) at different concentrations (3%, 5% and 10%) into dough on textural, porosity, quality, antioxidant and sensory characteristics of ‘White Pan Bread’. The rising addition (from 3 to 10%) of broccoli stalks and inflorescences into ‘White Pan Bread’ led to a gradual decrease in most textural properties and color components of dough, crumb and crust, as well as dry matter and water activity. Contrary, mineral substances, pH, acidity, and the antioxidant compounds and activities showed increasing trend. Among the sensory features, the scores of general bread aspect as well as crumb texture, structure, aeration, sweetness and aroma aspects decreased with the increasing broccoli powder integration. The latter augmentation fostered crust and crumb flexibility, freshness, sulfur, cruciferous and plant notes. Overall, manufacturing broccoli-enriched bread allows to create a novel functional aliment with less crumb softness and color intensity, importantly characterized by enhanced mineral and bioactive properties within the sustainability framework.

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Publication Details

Journal
Foods
Published
2026-09-25
DOI
https://doi.org/10.3390/foods15193426
Primary Topic
Food composition and properties
Type
article
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article

Physicochemical, Quality, Antioxidant and Sensory Attributes of Innovative Functional White Pan Bread Manufactured from Wheat Flour Fortified with Broccoli Plant Parts

Otilia Cristina Murariu, Florina Stoica, Florin Murariu, Gabriela Tărnăuceanu Frunză et al.
Foods
Food composition and properties
article

Physicochemical, Quality, Antioxidant and Sensory Attributes of Innovative Functional White Pan Bread Manufactured from Wheat Flour Fortified with Broccoli Plant Parts

Otilia Cristina Murariu, Florina Stoica, Florin Murariu, Gabriela Tărnăuceanu Frunză, P. Cârlescu, Aida Albu, Nadezhda Golubkina, Gianluca Caruso, Anca Elena Calistru
article en

Abstract

Innovative aliments obtained upon integration of plant-based ingredients for producing nutraceutical-enriched functional food under the perspective of sustainable management have been drawing increasing importance within the scientific community. Research was conducted to evaluate the effects of the addition of broccoli plant part powder (stalks and inflorescences) at different concentrations (3%, 5% and 10%) into dough on textural, porosity, quality, antioxidant and sensory characteristics of ‘White Pan Bread’. The rising addition (from 3 to 10%) of broccoli stalks and inflorescences into ‘White Pan Bread’ led to a gradual decrease in most textural properties and color components of dough, crumb and crust, as well as dry matter and water activity. Contrary, mineral substances, pH, acidity, and the antioxidant compounds and activities showed increasing trend. Among the sensory features, the scores of general bread aspect as well as crumb texture, structure, aeration, sweetness and aroma aspects decreased with the increasing broccoli powder integration. The latter augmentation fostered crust and crumb flexibility, freshness, sulfur, cruciferous and plant notes. Overall, manufacturing broccoli-enriched bread allows to create a novel functional aliment with less crumb softness and color intensity, importantly characterized by enhanced mineral and bioactive properties within the sustainability framework.

FoodsVol. 15(19)
"Ion Ionescu de la Brad" Iasi University of Life Sciences (RO), Federal Scientific Center for Vegetable Growing (RU), University of Naples Federico II (IT)
Responsible consumption and production
Openalex Percentile: Top 13%
Food composition and properties
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