A scoping review on carotenoid profiling in Passiflora spp. : a vast avenue for expanding the knowledge on the species

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Bibliografische gegevens
Hoofdauteur: Leite, Marina de Macedo Rodrigues
Publicatiedatum: 2024
Andere auteurs: Rodrigues, Daniele Brobowski, Brison, Raquel, Nepomuceno, Fernanda, Bento, Maria Lua dos Reis, Oliveira, Lívia de Lacerda de
Formaat: Article
Taal: eng
Bron: Repositório Institucional da UnB
Download full: http://repositorio.unb.br/handle/10482/54314
https://doi.org/10.3390/molecules29071585
https://orcid.org/0000-0003-0260-5751
https://orcid.org/0000-0002-2317-3364
https://orcid.org/0009-0005-1504-4027
https://orcid.org/0000-0001-5410-8752
Samenvatting: The Passiflora genus is recognised for its ethnopharmacological, sensorial, and nutritional significance. Yet, the screening of its dietary and bioactive molecules has mainly targeted hydrophilic metabolites. Following the PRISMA-P protocol, this review assessed the current knowledge on carotenoid composition and analysis within Passiflora, examining 968 records from seven databases and including 17 studies focusing on carotenoid separation and identification in plant parts. Those publications originated in America and Asia. P. edulis was the most frequently examined species of a total of ten, while pulp was the most studied plant part (16 studies). Carotenoid analysis involved primarily high-performance liquid chromatography separation on C18 columns and detection using diode array detectors (64.71%). Most studies identified the provitamin A β-carotene and xanthophylls lutein and zeaxanthin, with their geometric configuration often neglected. Only one study described carotenoid esters. Besides the methodology’s insufficient description, the lack of use of more accurate techniques and practices led to a high risk of bias in the carotenoid assignment in 17.65% of the articles. This review highlights the opportunity to broaden carotenoid studies to other species and parts within the diverse Passiflora genus, especially to wild, locally available fruits, which may have a strategic role in enhancing food diversity and security amidst climatic changes. Additionally, it urges the use of more accurate and efficient analytical methods based on green chemistry to better identify Passiflora carotenoids.