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  5. Chemical and Bioactive Properties of Red Rice with Potential Pharmaceutical Use

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Article
en
2024

Chemical and Bioactive Properties of Red Rice with Potential Pharmaceutical Use

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en
2024
Vol 29 (10)
Vol. 29
DOI: 10.3390/molecules29102265

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Isabel Cristina Fernandes Rodrigues Ferreira
Isabel Cristina Fernandes Rodrigues Ferreira

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Eugénia C M S Baptista
Ângela Liberal
Rossana V. C. Cardoso
+7 more

Abstract

Red rice has been proposed as a super-food. Accordingly, the nutritional properties (AOAC), as well as its chemical composition, including sugars (HPLC-RI), organic acids (UFLC-PDA), tocopherols (HPLD-FD), and phenolic compounds (LC-DAD-ESI/MSn), together with the main bioactive properties (antioxidant, cytotoxic, antiproliferative, and antibacterial activities), were evaluated to access its nutritional benefits and health improvement potential. The most abundant macronutrients found were carbohydrates (87.2 g/100 g dw), proceeded by proteins (9.1 g/100 g dw), fat (2.6 g/100 g dw), and ash (1.1 g/100 g dw). Sucrose and raffinose were the only detected sugars, with sucrose presenting the maximum concentration (0.74 g/100 g dw). MUFAs and PUFAs were the predominant fatty acids (40.7% and 31%, respectively). Among the two detected tocopherol isoforms, γ-tocopherol (0.67 mg/100 g dw) predominated over α-tocopherol. The phenolic compounds profile, majorly composed of flavan-3-ols, should be associated with the detected bioactivities, which may provide biological benefits to human health beyond the primary nutritional effect. Overall, the bioactive potential of red rice was comprehensively accessed.

How to cite this publication

Eugénia C M S Baptista, Ângela Liberal, Rossana V. C. Cardoso, Ângela Fernandes, María Inês Días, Tânia C. S. P. Pires, Ricardo C. Calhelha, Pablo A. García, Isabel Cristina Fernandes Rodrigues Ferreira, João C.M. Barreira (2024). Chemical and Bioactive Properties of Red Rice with Potential Pharmaceutical Use. , 29(10), DOI: https://doi.org/10.3390/molecules29102265.

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Publication Details

Type

Article

Year

2024

Authors

10

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.3390/molecules29102265

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