Unveiling the nutritional profile and safety of coffee pulp as a first step in its valorization strategy

The coffee pulp, a significant by-product of coffee processing, is often discarded but has potential for recycling and high-value uses. This study aimed to investigate the chemical composition of two coffee pulp ingredients, a flour (CPF) and an aqueous extract (CPE), and conducted acute and sub-chr...

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Detalhes bibliográficos
Autores: Gil-Ramírez, Alicia, Rebollo Hernanz, Miguel, Cañas Rodríguez, Silvia, Rodríguez Rodríguez, Pilar, Gila-Díaz, Andrea, Benítez García, Vanesa, Monedero Cobeta, Ignacio, Arribas Rodríguez, Silvia Magdalena, Aguilera Gutiérrez, Yolanda, Martín Cabrejas, M. Ángeles
Formato: artículo
Fecha de publicación:2024
País:España
Recursos:Universidad Autónoma de Madrid
Repositorio:Biblos-e Archivo. Repositorio Institucional de la UAM
Idioma:inglés
OAI Identifier:oai:repositorio.uam.es:10486/716724
Acesso em linha:http://hdl.handle.net/10486/716724
https://dx.doi.org/10.3390/foods13183006
Access Level:acceso abierto
Palavra-chave:(poly)phenols
amino acids
bioactive compounds
caffeine
coffee pulp
dietary fiber
food ingredient
minerals
safety
toxicity
Química
Descrição
Resumo:The coffee pulp, a significant by-product of coffee processing, is often discarded but has potential for recycling and high-value uses. This study aimed to investigate the chemical composition of two coffee pulp ingredients, a flour (CPF) and an aqueous extract (CPE), and conducted acute and sub-chronic toxicity assays to determine their safety. The proximate composition revealed the high fiber content of both ingredients; the CPF mainly contained insoluble fiber, while CPE consisted exclusively of soluble pectic polysaccharides. The CPF had higher concentrations of amino acids and a better balance of essential/non-essential amino acids, whereas the CPE exhibited higher concentrations of free amino acids, ensuring higher bioavailability. Both ingredients showed elevated mineral content, while heavy-metal concentrations remained within acceptable limits. This study established the bioactive potential of the CPF and the CPE, demonstrating the high content of caffeine and gallic, protocatechuic, and 4-caffeoylquinic acids. The toxicity studies revealed that the CPF and the CPE exhibited safety when orally administered to mice. Administered doses were non-toxic, as they did not induce lethality or adverse effects in the mice or produce significant histopathological or biochemical adverse changes. This study represents a first step in valorizing the CPF and the CPE as safe novel food ingredients with health benefits for functional and nutritional foods