1H NMR-based metabolomics of cacao pod husk: profile comparison of three drying treatments

Author:

Villalón-López Demelza Nayelli1ORCID,Hernández-Ortega Marcela2ORCID,Ortiz-Moreno Alicia3ORCID,Ceballos Guillermo4ORCID,Zepeda-Vallejo Gerardo5ORCID,Valadez-Carmona Lourdes3ORCID

Affiliation:

1. Instituto Politécnico Nacional, Escuela Nacional de Ciencias Biológicas, Departamento de Química Orgánica, Plan de Ayala y Carpio s/n, CDMX 11340, México; Universidad Nacional Autónoma de México, Facultad de Estudios Superiores Cuautitlán, Laboratorio de Propiedades Reológicas y Funcionales en Alimentos. Av. Primero de Mayo s/n, Cuautitlán Izcalli, MEX 54740, México

2. Centro de Investigación en Ciencias de la Salud (CICSA), Facultad de Ciencias de la Salud, Universidad Anáhuac México, Lomas Anáhuac, Huixquilucan, MEX 52786, México

3. Instituto Politécnico Nacional, Escuela Nacional de Ciencias Biológicas, Departamento de Ingeniería Bioquímica, Unidad Profesional Adolfo López Mateos, Av. Wilfrido Massieu esq. Cda. Miguel Stampa s/n, Gustavo A. Madero, CDMX 07738, México

4. Instituto Politécnico Nacional, Escuela Superior de Medicina, Departamento de Bioquímica, Plan de Ayala y Carpio s/n, CDMX 11340, México

5. Instituto Politécnico Nacional, Escuela Nacional de Ciencias Biológicas, Departamento de Química Orgánica, Plan de Ayala y Carpio s/n, CDMX 11340, México

Abstract

Aim: The aim of this study is to apply untargeted proton nuclear magnetic resonance (1H NMR) and chemometric analysis to obtain the cacao pod husk (CPH) fingerprint and evaluate the effect of dehydration in the CPH metabolome. Methods: Phosphate buffer extracts (pH 6.5) were obtained and measured using a one-dimension (1D) 1H NMR spectrometry. The 1D 1H NMR spectra were recorded without spinning and using the presaturation (PRESAT) pulse sequence to suppress the residual H2O signal. The 3-(trimethylsilyl) propionic-2,2,3,3-d4 acid sodium salt (TSP) was used as an internal reference. Analysis of processed data, applying an orthogonal projection on latent structure-discriminant analysis (OPLS-DA) model was used to highlight significant differences between the three dehydration treatments. Signal assignment of CPH metabolites was carried out based on the coupling constant, software simulation prediction, published data comparison, and metabolomics databases. Results: A total of 25 compounds were detected by 1H NMR, methylxanthines, sugars, some amino acids, fatty acids, and organic acids were found among the identified compounds. The fingerprint spectra of the three dehydration methods were clustered separately discriminating the metabolome profile of each of the dehydration treatments, finding that metabolome remarkably differed in theanine, myristic acid, fumaric acid, and aspartic acid composition. Conclusions: An untargeted metabolomics to obtain the fingerprint of CPH was successfully established. A 1H NMR spectra with a detailed signal assignment aided to identify 25 metabolites present in CPH fresh and dried by different methods. The results complement the information about CPH composition and how it is affected by the temperature used during the dehydration process. The multivariate analysis points out that freeze drying (FD) preserves the metabolites better than microwave drying (MWD) or hot air drying (HAD). FD and MWD are similar in composition maintaining most of the compounds after drying.

Publisher

Open Exploration Publishing

Subject

General Earth and Planetary Sciences,General Environmental Science,Materials Chemistry,Economics and Econometrics,Media Technology,Forestry,General Medicine,General Medicine,Management, Monitoring, Policy and Law,Geography, Planning and Development,Religious studies,Cultural Studies,General Medicine,General Medicine,General Materials Science,General Medicine

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