Thermal disruption of the food matrix of biofortified lettuce varieties modifies absorption of carotenoids by Caco-2 cells.


Journal

Food chemistry
ISSN: 1873-7072
Titre abrégé: Food Chem
Pays: England
ID NLM: 7702639

Informations de publication

Date de publication:
05 Mar 2020
Historique:
received: 22 02 2019
revised: 23 08 2019
accepted: 28 08 2019
pubmed: 28 10 2019
medline: 24 12 2019
entrez: 27 10 2019
Statut: ppublish

Résumé

Amongst green leafy vegetables, new varieties of lettuce enriched in lutein and β-carotene are being developed to provide increased supply of dietary carotenoids. We investigated the effect of lettuce genotypes (varieties) and thermal treatments on lutein and β-carotene bioaccessibility to the micellar fraction (and also carotenoid bioavailability) using a human Caco-2 cell model system. Carotenoid absorption by mammalian cells is not correlated with initial carotenoid concentration in fresh lettuce leaves. While thermal treatment of lettuce leaves increases carotenoid availability, resulting in higher lutein and β-carotene absorption, disruption of the food matrix by prior cooking results in reduced carotenoid levels and transfer to the micellar fraction. Unless the food matrix is disrupted through breeding or post-harvest treatments, absorption of carotenoids from biofortified lettuce remains similar to lettuce cultivars with low carotenoid levels. Genetic improvement programs for biofortified lettuce varieties need to focus on increasing the carotenoid bioavailability from the food matrix.

Identifiants

pubmed: 31654979
pii: S0308-8146(19)31558-4
doi: 10.1016/j.foodchem.2019.125443
pii:
doi:

Substances chimiques

beta Carotene 01YAE03M7J
Lutein X72A60C9MT

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

125443

Informations de copyright

Copyright © 2019 Elsevier Ltd. All rights reserved.

Auteurs

Cleiton Lourenço de Oliveira (CL)

Genetics & Biotechnology Lab, Plant & AgriBiosciences Research Centre (PABC), Ryan Institute, National University of Ireland Galway, University Road, Galway H91 REW4, Ireland; Universidade Federal de Lavras (UFLA), Departamento de Agricultura, Caixa Postal 3037 Lavras, Minas Gerais, Brazil.

Galina Brychkova (G)

Genetics & Biotechnology Lab, Plant & AgriBiosciences Research Centre (PABC), Ryan Institute, National University of Ireland Galway, University Road, Galway H91 REW4, Ireland. Electronic address: galina.brychkova@nuigalway.ie.

Alberto Abrantes Esteves-Ferreira (AA)

Plant Systems Biology Lab, Plant and AgriBiosciences Research Centre (PABC), Ryan Institute, National University of Ireland Galway, University Road, Galway H91 REW4, Ireland. Electronic address: A.ABRANTES1@nuigalway.ie.

Peter McKeown (P)

Genetics & Biotechnology Lab, Plant & AgriBiosciences Research Centre (PABC), Ryan Institute, National University of Ireland Galway, University Road, Galway H91 REW4, Ireland. Electronic address: peter.mckeown@nuigalway.ie.

Matheus de Souza Gomes (M)

Laboratory of Bioinformatics and Molecular Analysis, Institute of Genetics and Biochemistry, Federal University of Uberlandia, Campus Patos de Minas, Av. Getúlio Vargas, 230, 38700-103 Patos de Minas, Minas Gerais, Brazil. Electronic address: matheus@ingeb.ufu.br.

Wilson Roberto Maluf (WR)

Universidade Federal de Lavras (UFLA), Departamento de Agricultura, Caixa Postal 3037 Lavras, Minas Gerais, Brazil. Electronic address: wrmaluf@dag.ufla.br.

Luiz Antonio Augusto Gomes (LAA)

Universidade Federal de Lavras (UFLA), Departamento de Agricultura, Caixa Postal 3037 Lavras, Minas Gerais, Brazil. Electronic address: laagomes@dag.ufla.br.

Charles Spillane (C)

Genetics & Biotechnology Lab, Plant & AgriBiosciences Research Centre (PABC), Ryan Institute, National University of Ireland Galway, University Road, Galway H91 REW4, Ireland. Electronic address: charles.spillane@nuigalway.ie.

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