Cargando…

Nanoparticles Loaded with a Carotenoid-Rich Extract from Cantaloupe Melon Improved Hepatic Retinol Levels in a Diet-Induced Obesity Preclinical Model

[Image: see text] The study evaluated the effect of the carotenoid-rich extract from cantaloupe melon (CE) nanoencapsulated in porcine gelatin (EPG) on hepatic retinol concentration and liver damage scores in Wistar rats with obesity induced by high glycemic index and high glycemic load diet (HGLI d...

Descripción completa

Detalles Bibliográficos
Autores principales: de Carvalho Gomes, Camila, Lima, Mayara Santa Rosa, de Oliveira, Grazielle Louise Ribeiro, Medeiros, Isaiane, Xavier, Hanna Stephany Trajano, dos Santos Pais, Tatiana, Costa, Izael de Sousa, de Carvalho, Fabiana Maria Coimbra, Serquiz, Alexandre Coelho, de Souza Lima, Maíra Conceição Jerônimo, de Araújo Morais, Ana Heloneida, Passos, Thaís Souza
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10413461/
https://www.ncbi.nlm.nih.gov/pubmed/37576634
http://dx.doi.org/10.1021/acsomega.3c02750
_version_ 1785087130990542848
author de Carvalho Gomes, Camila
Lima, Mayara Santa Rosa
de Oliveira, Grazielle Louise Ribeiro
Medeiros, Isaiane
Xavier, Hanna Stephany Trajano
dos Santos Pais, Tatiana
Costa, Izael de Sousa
de Carvalho, Fabiana Maria Coimbra
Serquiz, Alexandre Coelho
de Souza Lima, Maíra Conceição Jerônimo
de Araújo Morais, Ana Heloneida
Passos, Thaís Souza
author_facet de Carvalho Gomes, Camila
Lima, Mayara Santa Rosa
de Oliveira, Grazielle Louise Ribeiro
Medeiros, Isaiane
Xavier, Hanna Stephany Trajano
dos Santos Pais, Tatiana
Costa, Izael de Sousa
de Carvalho, Fabiana Maria Coimbra
Serquiz, Alexandre Coelho
de Souza Lima, Maíra Conceição Jerônimo
de Araújo Morais, Ana Heloneida
Passos, Thaís Souza
author_sort de Carvalho Gomes, Camila
collection PubMed
description [Image: see text] The study evaluated the effect of the carotenoid-rich extract from cantaloupe melon (CE) nanoencapsulated in porcine gelatin (EPG) on hepatic retinol concentration and liver damage scores in Wistar rats with obesity induced by high glycemic index and high glycemic load diet (HGLI diet). For 17 days, animals were fed the HGLI diet. They were divided into three groups and treated for 10 days [HGLI diet + water, HGLI diet + CE (12.5 mg/kg), and HGLI diet + EPG (50 mg/kg)]. The groups were evaluated for dietary intake, retinol, weight variation, hematological parameters, fasting glucose, lipid profile, hepatic retinol concentration, AST/ALT ratio, FIB-4 (Fibrosis-4 Index for Liver Fibrosis), and APRI (AST to Platelet Ratio Index) scores to evaluate the effects on the liver. Animals treated with EPG showed a lower dietary intake (p < 0.05). No significant weight change was detected in the evaluated groups (p > 0.05). The EPG-treated group had significantly higher concentrations (p < 0.05) of hepatic retinol [266 (45) μg/g] than the untreated group [186 (23.8) μg/g] and the one treated with CE [175 (8.08) μg/g]. Liver damage assessment scores did not show significant differences, but the lowest means were observed in the group treated with EPG. The nanoencapsulation of the extract rich in beta-carotene promoted reduced food consumption and increased hepatic retinol without causing significant changes in liver damage scores. Thus, EPG is a candidate for future clinical studies to evaluate the beneficial effects of treating diseases involving vitamin A deficiencies.
format Online
Article
Text
id pubmed-10413461
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-104134612023-08-11 Nanoparticles Loaded with a Carotenoid-Rich Extract from Cantaloupe Melon Improved Hepatic Retinol Levels in a Diet-Induced Obesity Preclinical Model de Carvalho Gomes, Camila Lima, Mayara Santa Rosa de Oliveira, Grazielle Louise Ribeiro Medeiros, Isaiane Xavier, Hanna Stephany Trajano dos Santos Pais, Tatiana Costa, Izael de Sousa de Carvalho, Fabiana Maria Coimbra Serquiz, Alexandre Coelho de Souza Lima, Maíra Conceição Jerônimo de Araújo Morais, Ana Heloneida Passos, Thaís Souza ACS Omega [Image: see text] The study evaluated the effect of the carotenoid-rich extract from cantaloupe melon (CE) nanoencapsulated in porcine gelatin (EPG) on hepatic retinol concentration and liver damage scores in Wistar rats with obesity induced by high glycemic index and high glycemic load diet (HGLI diet). For 17 days, animals were fed the HGLI diet. They were divided into three groups and treated for 10 days [HGLI diet + water, HGLI diet + CE (12.5 mg/kg), and HGLI diet + EPG (50 mg/kg)]. The groups were evaluated for dietary intake, retinol, weight variation, hematological parameters, fasting glucose, lipid profile, hepatic retinol concentration, AST/ALT ratio, FIB-4 (Fibrosis-4 Index for Liver Fibrosis), and APRI (AST to Platelet Ratio Index) scores to evaluate the effects on the liver. Animals treated with EPG showed a lower dietary intake (p < 0.05). No significant weight change was detected in the evaluated groups (p > 0.05). The EPG-treated group had significantly higher concentrations (p < 0.05) of hepatic retinol [266 (45) μg/g] than the untreated group [186 (23.8) μg/g] and the one treated with CE [175 (8.08) μg/g]. Liver damage assessment scores did not show significant differences, but the lowest means were observed in the group treated with EPG. The nanoencapsulation of the extract rich in beta-carotene promoted reduced food consumption and increased hepatic retinol without causing significant changes in liver damage scores. Thus, EPG is a candidate for future clinical studies to evaluate the beneficial effects of treating diseases involving vitamin A deficiencies. American Chemical Society 2023-07-26 /pmc/articles/PMC10413461/ /pubmed/37576634 http://dx.doi.org/10.1021/acsomega.3c02750 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle de Carvalho Gomes, Camila
Lima, Mayara Santa Rosa
de Oliveira, Grazielle Louise Ribeiro
Medeiros, Isaiane
Xavier, Hanna Stephany Trajano
dos Santos Pais, Tatiana
Costa, Izael de Sousa
de Carvalho, Fabiana Maria Coimbra
Serquiz, Alexandre Coelho
de Souza Lima, Maíra Conceição Jerônimo
de Araújo Morais, Ana Heloneida
Passos, Thaís Souza
Nanoparticles Loaded with a Carotenoid-Rich Extract from Cantaloupe Melon Improved Hepatic Retinol Levels in a Diet-Induced Obesity Preclinical Model
title Nanoparticles Loaded with a Carotenoid-Rich Extract from Cantaloupe Melon Improved Hepatic Retinol Levels in a Diet-Induced Obesity Preclinical Model
title_full Nanoparticles Loaded with a Carotenoid-Rich Extract from Cantaloupe Melon Improved Hepatic Retinol Levels in a Diet-Induced Obesity Preclinical Model
title_fullStr Nanoparticles Loaded with a Carotenoid-Rich Extract from Cantaloupe Melon Improved Hepatic Retinol Levels in a Diet-Induced Obesity Preclinical Model
title_full_unstemmed Nanoparticles Loaded with a Carotenoid-Rich Extract from Cantaloupe Melon Improved Hepatic Retinol Levels in a Diet-Induced Obesity Preclinical Model
title_short Nanoparticles Loaded with a Carotenoid-Rich Extract from Cantaloupe Melon Improved Hepatic Retinol Levels in a Diet-Induced Obesity Preclinical Model
title_sort nanoparticles loaded with a carotenoid-rich extract from cantaloupe melon improved hepatic retinol levels in a diet-induced obesity preclinical model
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10413461/
https://www.ncbi.nlm.nih.gov/pubmed/37576634
http://dx.doi.org/10.1021/acsomega.3c02750
work_keys_str_mv AT decarvalhogomescamila nanoparticlesloadedwithacarotenoidrichextractfromcantaloupemelonimprovedhepaticretinollevelsinadietinducedobesitypreclinicalmodel
AT limamayarasantarosa nanoparticlesloadedwithacarotenoidrichextractfromcantaloupemelonimprovedhepaticretinollevelsinadietinducedobesitypreclinicalmodel
AT deoliveiragraziellelouiseribeiro nanoparticlesloadedwithacarotenoidrichextractfromcantaloupemelonimprovedhepaticretinollevelsinadietinducedobesitypreclinicalmodel
AT medeirosisaiane nanoparticlesloadedwithacarotenoidrichextractfromcantaloupemelonimprovedhepaticretinollevelsinadietinducedobesitypreclinicalmodel
AT xavierhannastephanytrajano nanoparticlesloadedwithacarotenoidrichextractfromcantaloupemelonimprovedhepaticretinollevelsinadietinducedobesitypreclinicalmodel
AT dossantospaistatiana nanoparticlesloadedwithacarotenoidrichextractfromcantaloupemelonimprovedhepaticretinollevelsinadietinducedobesitypreclinicalmodel
AT costaizaeldesousa nanoparticlesloadedwithacarotenoidrichextractfromcantaloupemelonimprovedhepaticretinollevelsinadietinducedobesitypreclinicalmodel
AT decarvalhofabianamariacoimbra nanoparticlesloadedwithacarotenoidrichextractfromcantaloupemelonimprovedhepaticretinollevelsinadietinducedobesitypreclinicalmodel
AT serquizalexandrecoelho nanoparticlesloadedwithacarotenoidrichextractfromcantaloupemelonimprovedhepaticretinollevelsinadietinducedobesitypreclinicalmodel
AT desouzalimamairaconceicaojeronimo nanoparticlesloadedwithacarotenoidrichextractfromcantaloupemelonimprovedhepaticretinollevelsinadietinducedobesitypreclinicalmodel
AT dearaujomoraisanaheloneida nanoparticlesloadedwithacarotenoidrichextractfromcantaloupemelonimprovedhepaticretinollevelsinadietinducedobesitypreclinicalmodel
AT passosthaissouza nanoparticlesloadedwithacarotenoidrichextractfromcantaloupemelonimprovedhepaticretinollevelsinadietinducedobesitypreclinicalmodel