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1.
Food Chem ; 449: 139174, 2024 Aug 15.
Artigo em Inglês | MEDLINE | ID: mdl-38604027

RESUMO

Five ingredients rich in RS (resistant starch) were assessed in a model system simulating baking process (water addition 30-50%, 180 °C/35 min) and in reformulated cakes (50% replacement of wheat flour). Moreover, two enzymatic methods used for RS determination (official and rapid) were compared. The combined effect of heating and water addition (50%) significantly decreased the RS content in all ingredients. Reformulated vegan cakes presented significantly lower RS values than those theoretically expected, according to the RS value of raw ingredients. The highest RS amount was observed for Hi Maize, which kept 84% and 72% of the initial RS content in the model systems and cake, respectively. Only the cakes made with Hi Maize reached the criteria for the health claim related to the reduction of post-prandial glycemic response (European Union regulation). Finally, differences between the official and rapid methods were less significant in the cakes than in the model systems.


Assuntos
Culinária , Farinha , Temperatura Alta , Amido , Zea mays , Zea mays/química , Farinha/análise , Amido/química , Triticum/química , Amido Resistente/análise
2.
Food Chem ; 402: 134416, 2023 Feb 15.
Artigo em Inglês | MEDLINE | ID: mdl-36303378

RESUMO

The impact and relative relevance of in vitro gastrointestinal digestion, processing temperature (room temperature or 180 °C), and gelling agent (GA) (carrageenan and alginate) on the bioactive compounds and oxidation status of olive and echium oils gelled formulations with 40% lipid incorporation was assessed. In vitro digestion was not affected by the GA, with >90% lipolysis in all formulations, but was the most relevant variable, promoting oxidation (MDA) regardless of the oil type, GA or temperature applied. Tocopherols and phenolic decreased with digestion, which could be interpreted as a protective response to pro-oxidative conditions during digestion. Temperature decreased olive oil phenolics. Gelification of echium oil using alginate reduced secondary oxidation products formation in comparison with carrageenan, with oxidation degrees after digestion equivalent to those shown with olive oil. The use of alginate with olive oil resulted in the most stable formulations, although not protecting its minor bioactive compounds from thermal degradation.


Assuntos
Echium , Olea , Emulsões , Azeite de Oliva , Temperatura , Carragenina , Oxirredução , Óleos , Fenóis , Excipientes , Alginatos , Óleos de Plantas
3.
J Food Sci ; 87(4): 1489-1499, 2022 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-35279846

RESUMO

New sources of bioactive compounds are constantly explored for reformulating healthier foods. This work aimed to explore and characterize the fatty acid profile and sterol content of three non-conventional oils used in functional food products (hempseed oil, moringa oil, and echium oil) and to compare them with two conventional ones (extra virgin olive oil [EVOO] and linseed oil). Oxidative stability was assessed by determining their acidity value and peroxide content. All oils showed adequate values for acidity and oxidation status. Echium and hempseed oils showed a high content of polyunsaturated fatty acids (>70%), especially omega-3 fatty acids, while moringa oil was rich in oleic acid. Echium oil, hempseed oil, and moringa oil presented higher sterol content than EVOO, but lower than that of linseed oil. Sitosterol was the most abundant sterol in all samples (97.88-275.36 mg/100 g oil), except in echium oil, where campesterol (170.62 mg/100 g oil) was the major sterol. Squalene was only found in significant amounts in EVOO. In conclusion, non-conventional oils seem to be interesting sources of bioactive compounds and have great potential for the food industry. PRACTICAL APPLICATION: Non-conventional vegetable oils can be used as alternative sources of lipids in a variety of food products. Additionally, these oils have great potential to be included in the formulation of functional ingredients for the delivery of omega-3 fatty acids, antioxidants, fiber, among others.


Assuntos
Echium , Ácidos Graxos Ômega-3 , Moringa , Cannabis , Ácidos Graxos , Óleo de Semente do Linho , Azeite de Oliva , Extratos Vegetais , Óleos de Plantas , Esqualeno , Esteróis
4.
Crit Rev Food Sci Nutr ; 62(14): 3768-3781, 2022.
Artigo em Inglês | MEDLINE | ID: mdl-33412906

RESUMO

Several strategies have been studied to replace or decrease fat content in bakery products aiming improving their nutritional profile. This paper reviewed the effect of different vehiculization systems (hydrogels, emulgels and oleogels) as fat replacers in different types of bakery goods, focusing on technological and nutritional properties of the reformulated products. The most commonly used fat source for replacement purposes were vegetable oils with high monounsaturated fatty acid content, such as olive oil and canola oil (44% of the revised papers used them), whereas high polyunsaturated fatty acid content oils were used in 34% of papers. Oleogelation was the most frequent used method of oil structuring, using waxes and fibers as stabilizers. Reductions of total fat between 19% and 46% and saturated fatty acid between 33% and 87% were achieved, enough to reach the minimum legal limit to state nutrition claims, under the EU legislation, on several products. Sensory evaluation results showed that partially replaced products (<75% replacement) were more appreciated by panelists than fully replaced ones. This review highlights the wide range of alternatives within gel-like fat replacers, that have potential to be applied in different bakery products and the challenge to produce nutritionally enhanced foods and technologically and sensory acceptable.


Assuntos
Ácidos Graxos , Óleos de Plantas , Ácidos Graxos Monoinsaturados , Géis , Azeite de Oliva
5.
J Food Sci ; 85(10): 3072-3080, 2020 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-32869333

RESUMO

The addition of different amounts of a functional ingredient composed of water, inulin, chia seeds, and hemp or flaxseed oil was examined as butter replacer to improve the nutritional value of muffins. Nutritional, technological, and sensory characteristics of the reformulated products were assessed, as well as the stability under storage at room temperature. One control and six modified formulations with three levels of butter replacement (50%, 75%, and 100%) were analyzed. Modified muffins improved their nutritional profile, reducing up to 78% of fat and increasing fiber (up to 62.5%) and omega-3 fatty acids content (from 0.12 g/100 g of product to 0.62 g and 1.55 g in hemp and flaxseed oil samples, respectively). Sensory analysis revealed that flaxseed oil samples were indistinguishable from the control in all evaluated attributes, even in the highest level of replacement. During storage, texture of modified samples behaved similar to the control and no oxidation problems were observed in any of the formulations. Therefore, the functional ingredient proved to be a feasible alternative for replacing butter in muffins, preserving the quality attributes and making them healthier foods. PRACTICAL APPLICATION: Functional ingredients including fiber and low amounts of good-quality sources of fat have a simple manufacturing process, do not require heating, and perform well once incorporated to the matrix. They are versatile and could be incorporated in other bakery products to substitute butter or even oil, to obtain a reduced calorie product and with an enhanced nutritional profile and good sensory properties.


Assuntos
Cannabis/química , Substitutos da Gordura/análise , Linho/química , Inulina/análise , Óleos de Plantas/análise , Salvia/química , Pão/análise , Manteiga/análise , Fibras na Dieta/análise , Aditivos Alimentares/análise , Manipulação de Alimentos , Humanos , Valor Nutritivo , Oxirredução , Sementes/química , Paladar
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