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A Novel Process for One-Step Separation and Cyclodextrin Inclusion of Ginsenoside Rg5 from Ginseng Stem–Leaf Saponins (GSLS): Preparation, Characterization, and Evaluation of Storage Stability and Bioactivity

Background: Ginsenoside Rg5 has been proven to possess numerous health benefits. However, Rg5 is difficult to prepare using the current methods, and the poor stability and solubility of Rg5 are intractable properties that limit its application. We try to establish and optimize a new method for prepa...

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Autores principales: Chen, Jianbo, Li, Meijia, Huo, Xiaohui, Li, Zhiman, Qu, Di, Sha, Jiyue, Sun, Yinshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10297216/
https://www.ncbi.nlm.nih.gov/pubmed/37372560
http://dx.doi.org/10.3390/foods12122349
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author Chen, Jianbo
Li, Meijia
Huo, Xiaohui
Li, Zhiman
Qu, Di
Sha, Jiyue
Sun, Yinshi
author_facet Chen, Jianbo
Li, Meijia
Huo, Xiaohui
Li, Zhiman
Qu, Di
Sha, Jiyue
Sun, Yinshi
author_sort Chen, Jianbo
collection PubMed
description Background: Ginsenoside Rg5 has been proven to possess numerous health benefits. However, Rg5 is difficult to prepare using the current methods, and the poor stability and solubility of Rg5 are intractable properties that limit its application. We try to establish and optimize a new method for preparing Rg5. Methods: Different amino acids acted as catalysts, and reaction conditions were investigated to transform Rg5 in GSLS. Different CDs and reaction conditions were investigated for the preparation of CD-Rg5 based on yield and purity; ESI-MS, FT-IR, XRD and SEM analyses were used to prove the formation of the CD-Rg5 inclusion complex. Both the stability and bioactivity of β-CD-Rg5 were investigated. Results: The content of Rg5 reached 140.8 mg/g after transformation of GSLS using Asp as a catalyst. The yield of β-CD-Rg5 reached a maximum of 12% and a purity of 92.5%. The results showed that the β-CD-Rg5 inclusion complex can improve its stability of Rg5 against light and temperature. Antioxidant activity analyses against DPPH, ABTS(+), and Fe(2+) chelation showed enhanced antioxidant activity of the β-CD-Rg5 inclusion complex. Conclusions: A novel and effective strategy for the separation of Rg5 from ginseng stem–leaf saponins (GSLS) was developed to improve the stability, solubility, and bioactivity of Rg5.
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spelling pubmed-102972162023-06-28 A Novel Process for One-Step Separation and Cyclodextrin Inclusion of Ginsenoside Rg5 from Ginseng Stem–Leaf Saponins (GSLS): Preparation, Characterization, and Evaluation of Storage Stability and Bioactivity Chen, Jianbo Li, Meijia Huo, Xiaohui Li, Zhiman Qu, Di Sha, Jiyue Sun, Yinshi Foods Article Background: Ginsenoside Rg5 has been proven to possess numerous health benefits. However, Rg5 is difficult to prepare using the current methods, and the poor stability and solubility of Rg5 are intractable properties that limit its application. We try to establish and optimize a new method for preparing Rg5. Methods: Different amino acids acted as catalysts, and reaction conditions were investigated to transform Rg5 in GSLS. Different CDs and reaction conditions were investigated for the preparation of CD-Rg5 based on yield and purity; ESI-MS, FT-IR, XRD and SEM analyses were used to prove the formation of the CD-Rg5 inclusion complex. Both the stability and bioactivity of β-CD-Rg5 were investigated. Results: The content of Rg5 reached 140.8 mg/g after transformation of GSLS using Asp as a catalyst. The yield of β-CD-Rg5 reached a maximum of 12% and a purity of 92.5%. The results showed that the β-CD-Rg5 inclusion complex can improve its stability of Rg5 against light and temperature. Antioxidant activity analyses against DPPH, ABTS(+), and Fe(2+) chelation showed enhanced antioxidant activity of the β-CD-Rg5 inclusion complex. Conclusions: A novel and effective strategy for the separation of Rg5 from ginseng stem–leaf saponins (GSLS) was developed to improve the stability, solubility, and bioactivity of Rg5. MDPI 2023-06-12 /pmc/articles/PMC10297216/ /pubmed/37372560 http://dx.doi.org/10.3390/foods12122349 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chen, Jianbo
Li, Meijia
Huo, Xiaohui
Li, Zhiman
Qu, Di
Sha, Jiyue
Sun, Yinshi
A Novel Process for One-Step Separation and Cyclodextrin Inclusion of Ginsenoside Rg5 from Ginseng Stem–Leaf Saponins (GSLS): Preparation, Characterization, and Evaluation of Storage Stability and Bioactivity
title A Novel Process for One-Step Separation and Cyclodextrin Inclusion of Ginsenoside Rg5 from Ginseng Stem–Leaf Saponins (GSLS): Preparation, Characterization, and Evaluation of Storage Stability and Bioactivity
title_full A Novel Process for One-Step Separation and Cyclodextrin Inclusion of Ginsenoside Rg5 from Ginseng Stem–Leaf Saponins (GSLS): Preparation, Characterization, and Evaluation of Storage Stability and Bioactivity
title_fullStr A Novel Process for One-Step Separation and Cyclodextrin Inclusion of Ginsenoside Rg5 from Ginseng Stem–Leaf Saponins (GSLS): Preparation, Characterization, and Evaluation of Storage Stability and Bioactivity
title_full_unstemmed A Novel Process for One-Step Separation and Cyclodextrin Inclusion of Ginsenoside Rg5 from Ginseng Stem–Leaf Saponins (GSLS): Preparation, Characterization, and Evaluation of Storage Stability and Bioactivity
title_short A Novel Process for One-Step Separation and Cyclodextrin Inclusion of Ginsenoside Rg5 from Ginseng Stem–Leaf Saponins (GSLS): Preparation, Characterization, and Evaluation of Storage Stability and Bioactivity
title_sort novel process for one-step separation and cyclodextrin inclusion of ginsenoside rg5 from ginseng stem–leaf saponins (gsls): preparation, characterization, and evaluation of storage stability and bioactivity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10297216/
https://www.ncbi.nlm.nih.gov/pubmed/37372560
http://dx.doi.org/10.3390/foods12122349
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