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Nanoparticles Containing Tamarind Isolate Protein Potentiate the Satiety without Promoting the Anti-Inflammatory Effect in a Preclinical Model of Diet-Induced Obesity

The study aimed to evaluate the nanoparticles (ECW) containing tamarind trypsin inhibitor (TTI) concerning the storage effect under different conditions on antitrypsin activity and the bioactive potential in a preclinical model. ECW was exposed to different pH and temperatures to evaluate the intera...

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Autores principales: Costa, Rafael O. A., Medeiros, Isaiane, De Queiroz, Jaluza L. C., Matias, Lídia L. R., Lima, Mayara S. R., Oliveira, Gerciane S. De, Aguiar, Ana Júlia F. C., Costa, Izael S., Silva, Eloyse Mikaelly de S., Dos Santos, Nicolle Caroline S., Passos, Thaís S., De A. Morais, Ana Heloneida
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9658257/
https://www.ncbi.nlm.nih.gov/pubmed/36360138
http://dx.doi.org/10.3390/foods11213526
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author Costa, Rafael O. A.
Medeiros, Isaiane
De Queiroz, Jaluza L. C.
Matias, Lídia L. R.
Lima, Mayara S. R.
Oliveira, Gerciane S. De
Aguiar, Ana Júlia F. C.
Costa, Izael S.
Silva, Eloyse Mikaelly de S.
Dos Santos, Nicolle Caroline S.
Passos, Thaís S.
De A. Morais, Ana Heloneida
author_facet Costa, Rafael O. A.
Medeiros, Isaiane
De Queiroz, Jaluza L. C.
Matias, Lídia L. R.
Lima, Mayara S. R.
Oliveira, Gerciane S. De
Aguiar, Ana Júlia F. C.
Costa, Izael S.
Silva, Eloyse Mikaelly de S.
Dos Santos, Nicolle Caroline S.
Passos, Thaís S.
De A. Morais, Ana Heloneida
author_sort Costa, Rafael O. A.
collection PubMed
description The study aimed to evaluate the nanoparticles (ECW) containing tamarind trypsin inhibitor (TTI) concerning the storage effect under different conditions on antitrypsin activity and the bioactive potential in a preclinical model. ECW was exposed to different pH and temperatures to evaluate the interaction between TTI and its encapsulating agents, monitored by antitrypsin activity. Wistar rats (n = 25) with obesity induced by diet were divided into groups: untreated; treatment with nutritionally adequate diet; treatment with nutritionally adequate diet and ECW/12.5 mg/kg; treatment with ECW/12.5 mg/kg; and treatment with TTI/25 mg/kg. The groups were evaluated over ten days with regards to satiety, zoometric, biochemical, and inflammatory parameters, using ten times less TTI (2.5 mg/kg) contained in ECW. TTI was protected and encapsulated in ECW without showing residual inhibitory activity. Only at gastric pH did ECW show antitrypsin activity. At different temperatures, it showed high antitrypsin activity, similar to TTI. The animals treated with ECW had significantly reduced body weight variation (p < 0.05), and only TTI treatment reduced the inflammatory parameters significantly (p < 0.05). The study showed that by using lower concentrations of TTI in ECW it was possible to perceive promising effects with perspectives of use in functional products for managing obesity and its complications.
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spelling pubmed-96582572022-11-15 Nanoparticles Containing Tamarind Isolate Protein Potentiate the Satiety without Promoting the Anti-Inflammatory Effect in a Preclinical Model of Diet-Induced Obesity Costa, Rafael O. A. Medeiros, Isaiane De Queiroz, Jaluza L. C. Matias, Lídia L. R. Lima, Mayara S. R. Oliveira, Gerciane S. De Aguiar, Ana Júlia F. C. Costa, Izael S. Silva, Eloyse Mikaelly de S. Dos Santos, Nicolle Caroline S. Passos, Thaís S. De A. Morais, Ana Heloneida Foods Article The study aimed to evaluate the nanoparticles (ECW) containing tamarind trypsin inhibitor (TTI) concerning the storage effect under different conditions on antitrypsin activity and the bioactive potential in a preclinical model. ECW was exposed to different pH and temperatures to evaluate the interaction between TTI and its encapsulating agents, monitored by antitrypsin activity. Wistar rats (n = 25) with obesity induced by diet were divided into groups: untreated; treatment with nutritionally adequate diet; treatment with nutritionally adequate diet and ECW/12.5 mg/kg; treatment with ECW/12.5 mg/kg; and treatment with TTI/25 mg/kg. The groups were evaluated over ten days with regards to satiety, zoometric, biochemical, and inflammatory parameters, using ten times less TTI (2.5 mg/kg) contained in ECW. TTI was protected and encapsulated in ECW without showing residual inhibitory activity. Only at gastric pH did ECW show antitrypsin activity. At different temperatures, it showed high antitrypsin activity, similar to TTI. The animals treated with ECW had significantly reduced body weight variation (p < 0.05), and only TTI treatment reduced the inflammatory parameters significantly (p < 0.05). The study showed that by using lower concentrations of TTI in ECW it was possible to perceive promising effects with perspectives of use in functional products for managing obesity and its complications. MDPI 2022-11-05 /pmc/articles/PMC9658257/ /pubmed/36360138 http://dx.doi.org/10.3390/foods11213526 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Costa, Rafael O. A.
Medeiros, Isaiane
De Queiroz, Jaluza L. C.
Matias, Lídia L. R.
Lima, Mayara S. R.
Oliveira, Gerciane S. De
Aguiar, Ana Júlia F. C.
Costa, Izael S.
Silva, Eloyse Mikaelly de S.
Dos Santos, Nicolle Caroline S.
Passos, Thaís S.
De A. Morais, Ana Heloneida
Nanoparticles Containing Tamarind Isolate Protein Potentiate the Satiety without Promoting the Anti-Inflammatory Effect in a Preclinical Model of Diet-Induced Obesity
title Nanoparticles Containing Tamarind Isolate Protein Potentiate the Satiety without Promoting the Anti-Inflammatory Effect in a Preclinical Model of Diet-Induced Obesity
title_full Nanoparticles Containing Tamarind Isolate Protein Potentiate the Satiety without Promoting the Anti-Inflammatory Effect in a Preclinical Model of Diet-Induced Obesity
title_fullStr Nanoparticles Containing Tamarind Isolate Protein Potentiate the Satiety without Promoting the Anti-Inflammatory Effect in a Preclinical Model of Diet-Induced Obesity
title_full_unstemmed Nanoparticles Containing Tamarind Isolate Protein Potentiate the Satiety without Promoting the Anti-Inflammatory Effect in a Preclinical Model of Diet-Induced Obesity
title_short Nanoparticles Containing Tamarind Isolate Protein Potentiate the Satiety without Promoting the Anti-Inflammatory Effect in a Preclinical Model of Diet-Induced Obesity
title_sort nanoparticles containing tamarind isolate protein potentiate the satiety without promoting the anti-inflammatory effect in a preclinical model of diet-induced obesity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9658257/
https://www.ncbi.nlm.nih.gov/pubmed/36360138
http://dx.doi.org/10.3390/foods11213526
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