Natural Deep Eutectic Solvent Optimization to Obtain an Extract Rich in Polyphenols from Capsicum chinense Leaves Using an Ultrasonic Probe

Author:

Avilés-Betanzos Kevin Alejandro1ORCID,Cauich-Rodríguez Juan Valerio2ORCID,González-Ávila Marisela3,Scampicchio Matteo4ORCID,Morozova Ksenia4ORCID,Ramírez-Sucre Manuel Octavio1ORCID,Rodríguez-Buenfil Ingrid Mayanin1ORCID

Affiliation:

1. Centro de Investigación y Asistencia en Tecnología y Diseño del Estado de Jalisco A.C., Subsede Sureste, Tablaje Catastral 31264, Km. 5.5 Carretera Sierra Papacal-Chuburná Puerto, Parque Científico Tecnológico de Yucatán, Mérida C.P. 97302, Yucatán, Mexico

2. Centro de Investigación Científica de Yucatán, Unidad de Materiales, Calle 43 No. 130 x 32 y 34, Colonia Chuburná de Hidalgo, Mérida C.P. 97205, Yucatán, Mexico

3. Centro de Investigación y Asistencia en Tecnología y Diseño del Estado de Jalisco, Ex Vivo Digestion Laboratory, CIATEJ, Normalistas No. 800, Colinas de la Normal C.P. 44270, Jalisco, Mexico

4. Faculty of Science and Technology, Free University of Bolzen-Bolzano, Piazza Università 1, 39100 Bolzano, Italy

Abstract

Capsicum chinense Jacq., from the Yucatan peninsula, is recognized worldwide for its pungency, flavor, and secondary metabolites content. This has resulted in an increase in its production, which has led to an increase in the number of byproducts considered waste, mainly its leaves. Capsicum chinense leaves have been demonstrated to contain polyphenols with bioactive properties (antioxidant, anti-inflammatory, antiobesogenic capacity, etc.); hence, the extraction of polyphenols through the use of natural deep eutectic solvents (NADES) with a green technology, such as an ultrasonic probe, could help to revalue these leaves by maximizing the extraction efficiency and preserving their bioactive properties. The objective of this study was to optimize the composition of a eutectic solvent for obtaining an extract rich in polyphenols from the Capsicum chinense leaf using a sonic probe. The optimum conditions of the composition of NADES for obtaining the highest Antioxidant capacity (Ax, 79.71% inhibition) were a 0.8 mol glucose to 1 mol of choline chloride ratio, and 12% water. In addition, with this composition, the Total Polyphenol Content (TPC) obtained was 165.39 mg GAE/100 g dry leaf, and the individual polyphenols, such as vanillin (19.15 mg/100 g dry leaf) and ferulic acid (1.35 mg/100 g dry leaf), were optimized. The habanero pepper leaf extract obtained using a eutectic solvent and a sonic probe demonstrated a high potential for use as an ingredient in the development of nutraceuticals (i.e., functional foods).

Funder

National Council of Science and Technology of Mexico

Publisher

MDPI AG

Subject

Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering

Reference46 articles.

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2. Comparación de dos Métodos de Extracción y Secado para la Cuantificación de Carotenoides en Chile Habanero;Rev. Cent. Grad. Investig.,2018

3. Evaluation of Habanero Pepper (Capsicum chinense Jacq.) Varieties under Shade House Conditions in Yucatan, Mexico;Open Access Libr. J.,2018

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5. (2023, March 06). Servicio de Información Agroalimentaria y Pesquera (SIAP). Available online: https://nube.siap.gob.mx/cierreagricola/.

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