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1.
Foods ; 11(19)2022 Oct 06.
Artículo en Inglés | MEDLINE | ID: mdl-36230192

RESUMEN

Given consumer trends propelling a movement toward using plant protein in the food industry and searching for alternative protein ingredients by the industry, this study aimed to assess the influence of factors such as protein concentration, medium pH, and the presence of a divalent ion (Ca2+) upon the rheological properties such as viscosity change and gel formation of dispersion proteins extracted from quinoa, black beans, and lentils. A solution of each protein was prepared by varying its concentration (2.5%, 5.0%, and 10%), the pH (5.0, 7.0, and 9.0), and the incorporation of calcium chloride (0.0% and 1.0%). Each obtained solution was subjected to rheological tests to determine the parameters: consistency index (K), flow behavior (n), the storage (G') and loss (G'') modules, and the phase shift angle (δ). The results demonstrate that the incorporation of Ca2+, the shift in protein levels, and the decrease in pH modified the rheological behaviors of proteins, which were also influenced by the structural characteristics of each protein studied. However, thermal treatment and protein concentrations caused the most significant impact on proteins' rheological behavior, forming gels independently of other conditions. It was possible to study and interpret the studied proteins' rheological variations according to the environment's conditions.

2.
Antioxidants (Basel) ; 9(4)2020 Apr 13.
Artículo en Inglés | MEDLINE | ID: mdl-32294926

RESUMEN

This study aimed to assess the thermal stability of the bioactive compounds from annatto seed extract, encapsulated by ionic gelation using quinoa proteins, lentil proteins, soy proteins, and sodium caseinate as carrying materials. The 10.0% aqueous dispersions of the different proteins (carriers) were prepared and mixed with the annatto seed extract. The dispersions were then extruded into a calcium chloride solution to induce the extract encapsulation. The capsules were characterized by encapsulation efficiency, particle size, infrared transmission spectroscopy, confocal microscopy, and scanning electron microscopy (SEM). The antioxidant and antimicrobial activities, the polyphenol compounds, and bixin content from the free and encapsulated extract were assessed once stored for 12 d at different temperatures (4 °C, 25 °C, and 65 °C). The results demonstrated the ability of the proteins to encapsulate the annatto extract with encapsulation efficiencies ranging from 58% to 80%, where the protein structure and amino acid content were the relevant factors to obtain high encapsulation efficiencies. The free extracts stored at 65 °C for 12 d experienced a degradation of bixin and polyphenol compounds, respectively. Conversely, the encapsulated extract had degradations from ~34.00% to ~4.05% for polyphenol compounds and ~20.0% for bixin, respectively. These proteins have a potential encapsulation capacity of annatto extract by ionic gelation.

3.
Vitae (Medellín) ; 16(3): 378-387, sept.-dec. 2009.
Artículo en Español | LILACS | ID: lil-537232

RESUMEN

Este estudio pretende demostrar que residuos de la agroindustria, como son las semillas de Vitis vinífera y Citrus sinensis, y la almendra de Mangifera indica, poseen capacidad neutralizante de algunos efectos enzimáticos inducidos por los venenos de Bothrops asper y Porthidium nasutum; además, actividad inhibitoria del crecimiento de algunos microorganismos de la flora normal de los colmillos y la boca de las serpientes; es así como se determina que los extractos de M. indica y V. vinífera poseen buena capacidad inhibitoria de la actividad de fosfolipasa A2 dependiente de la dosis, y una mayor potencia neutralizante hacia tal actividad del veneno de P. nasutum. Frente al efecto proteolítico inducido por el veneno de las dos víboras, V. vinífera presenta los mejores porcentajes de inhibición dependiendo de la cantidad de extracto utilizado. Sobre la actividad coagulante del veneno de B. asper, M. indica y V. vinífera logran prolongar el tiempo de coagulación hasta ~ 31 y 13 veces respectivamente, el tiempo de l correspondiente control positivo.M. indica y V. vinífera inhiben el crecimiento de Escherichia coli y Staphylococcus aureus. Por el contrario, el extracto etanólico de las semillas de C. sinensis no presenta resultados de inhibición muy prometedores.


Asunto(s)
Citrus sinensis , Mangifera , Taninos
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