Cargando…

Thermal Degradation Kinetics and pH-Rate Profiles of Iriflophenone 3,5-C-β-d-diglucoside, Iriflophenone 3-C-β-d-Glucoside and Mangiferin in Aquilaria crassna Leaf Extract

The health benefits of the Aquilaria crassna Pierre ex Lecomte leaf extract (AE) make it very useful as an ingredient in food and pharmaceutical products. Iriflophenone 3,5-C-β-d-diglucoside (1), iriflophenone 3-C-β-d-glucoside (2) and mangiferin (3) are bioactive compounds of AE. We assessed the st...

Descripción completa

Detalles Bibliográficos
Autores principales: Wongwad, Eakkaluk, Ingkaninan, Kornkanok, Wisuitiprot, Wudtichai, Sritularak, Boonchoo, Waranuch, Neti
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7660223/
https://www.ncbi.nlm.nih.gov/pubmed/33113908
http://dx.doi.org/10.3390/molecules25214898
_version_ 1783608966568214528
author Wongwad, Eakkaluk
Ingkaninan, Kornkanok
Wisuitiprot, Wudtichai
Sritularak, Boonchoo
Waranuch, Neti
author_facet Wongwad, Eakkaluk
Ingkaninan, Kornkanok
Wisuitiprot, Wudtichai
Sritularak, Boonchoo
Waranuch, Neti
author_sort Wongwad, Eakkaluk
collection PubMed
description The health benefits of the Aquilaria crassna Pierre ex Lecomte leaf extract (AE) make it very useful as an ingredient in food and pharmaceutical products. Iriflophenone 3,5-C-β-d-diglucoside (1), iriflophenone 3-C-β-d-glucoside (2) and mangiferin (3) are bioactive compounds of AE. We assessed the stability of AE by investigating the thermal degradation kinetics and shelf-life (t(90%)) of compounds 1, 2 and 3 using Arrhenius plot models and studied their pH-rate profiles. The results demonstrate that 1 and 2 were degraded, following a first-order kinetic reaction. The degradation of 3 followed first-order reaction kinetics when present in a solution and second-order reaction kinetics in the dried powder form of the extract. According to the first-order kinetic model, the predicted shelf-life (t(90%)) of the extract at 25 °C in dried form for compound 1 was 989 days with activation energy 129.86 kJ·mol(−1), and for 2 it was 248 days with activation energy 110.57 kJ·mol(−1), while in the extract solution, the predicted shelf-life of compounds 1–3 was 189, 13 and 75 days with activation energies 86.83, 51.49 and 65.28 kJ·mol(−1), respectively. In addition, the pH-rate profiles of 1–3 indicated that they were stable in neutral to acidic environments.
format Online
Article
Text
id pubmed-7660223
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-76602232020-11-13 Thermal Degradation Kinetics and pH-Rate Profiles of Iriflophenone 3,5-C-β-d-diglucoside, Iriflophenone 3-C-β-d-Glucoside and Mangiferin in Aquilaria crassna Leaf Extract Wongwad, Eakkaluk Ingkaninan, Kornkanok Wisuitiprot, Wudtichai Sritularak, Boonchoo Waranuch, Neti Molecules Article The health benefits of the Aquilaria crassna Pierre ex Lecomte leaf extract (AE) make it very useful as an ingredient in food and pharmaceutical products. Iriflophenone 3,5-C-β-d-diglucoside (1), iriflophenone 3-C-β-d-glucoside (2) and mangiferin (3) are bioactive compounds of AE. We assessed the stability of AE by investigating the thermal degradation kinetics and shelf-life (t(90%)) of compounds 1, 2 and 3 using Arrhenius plot models and studied their pH-rate profiles. The results demonstrate that 1 and 2 were degraded, following a first-order kinetic reaction. The degradation of 3 followed first-order reaction kinetics when present in a solution and second-order reaction kinetics in the dried powder form of the extract. According to the first-order kinetic model, the predicted shelf-life (t(90%)) of the extract at 25 °C in dried form for compound 1 was 989 days with activation energy 129.86 kJ·mol(−1), and for 2 it was 248 days with activation energy 110.57 kJ·mol(−1), while in the extract solution, the predicted shelf-life of compounds 1–3 was 189, 13 and 75 days with activation energies 86.83, 51.49 and 65.28 kJ·mol(−1), respectively. In addition, the pH-rate profiles of 1–3 indicated that they were stable in neutral to acidic environments. MDPI 2020-10-23 /pmc/articles/PMC7660223/ /pubmed/33113908 http://dx.doi.org/10.3390/molecules25214898 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wongwad, Eakkaluk
Ingkaninan, Kornkanok
Wisuitiprot, Wudtichai
Sritularak, Boonchoo
Waranuch, Neti
Thermal Degradation Kinetics and pH-Rate Profiles of Iriflophenone 3,5-C-β-d-diglucoside, Iriflophenone 3-C-β-d-Glucoside and Mangiferin in Aquilaria crassna Leaf Extract
title Thermal Degradation Kinetics and pH-Rate Profiles of Iriflophenone 3,5-C-β-d-diglucoside, Iriflophenone 3-C-β-d-Glucoside and Mangiferin in Aquilaria crassna Leaf Extract
title_full Thermal Degradation Kinetics and pH-Rate Profiles of Iriflophenone 3,5-C-β-d-diglucoside, Iriflophenone 3-C-β-d-Glucoside and Mangiferin in Aquilaria crassna Leaf Extract
title_fullStr Thermal Degradation Kinetics and pH-Rate Profiles of Iriflophenone 3,5-C-β-d-diglucoside, Iriflophenone 3-C-β-d-Glucoside and Mangiferin in Aquilaria crassna Leaf Extract
title_full_unstemmed Thermal Degradation Kinetics and pH-Rate Profiles of Iriflophenone 3,5-C-β-d-diglucoside, Iriflophenone 3-C-β-d-Glucoside and Mangiferin in Aquilaria crassna Leaf Extract
title_short Thermal Degradation Kinetics and pH-Rate Profiles of Iriflophenone 3,5-C-β-d-diglucoside, Iriflophenone 3-C-β-d-Glucoside and Mangiferin in Aquilaria crassna Leaf Extract
title_sort thermal degradation kinetics and ph-rate profiles of iriflophenone 3,5-c-β-d-diglucoside, iriflophenone 3-c-β-d-glucoside and mangiferin in aquilaria crassna leaf extract
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7660223/
https://www.ncbi.nlm.nih.gov/pubmed/33113908
http://dx.doi.org/10.3390/molecules25214898
work_keys_str_mv AT wongwadeakkaluk thermaldegradationkineticsandphrateprofilesofiriflophenone35cbddiglucosideiriflophenone3cbdglucosideandmangiferininaquilariacrassnaleafextract
AT ingkaninankornkanok thermaldegradationkineticsandphrateprofilesofiriflophenone35cbddiglucosideiriflophenone3cbdglucosideandmangiferininaquilariacrassnaleafextract
AT wisuitiprotwudtichai thermaldegradationkineticsandphrateprofilesofiriflophenone35cbddiglucosideiriflophenone3cbdglucosideandmangiferininaquilariacrassnaleafextract
AT sritularakboonchoo thermaldegradationkineticsandphrateprofilesofiriflophenone35cbddiglucosideiriflophenone3cbdglucosideandmangiferininaquilariacrassnaleafextract
AT waranuchneti thermaldegradationkineticsandphrateprofilesofiriflophenone35cbddiglucosideiriflophenone3cbdglucosideandmangiferininaquilariacrassnaleafextract