Green and Cost-Effective Extraction Techniques of Quercetin from Mixture of Nutraceuticals with Yield Analysis via Spectrophotometry and High-Performance Liquid Chromatography Methods

Author:

Gamal Mohammed12ORCID,Abd-ElSalam Heba-Alla H3ORCID,Naguib Ibrahim A4ORCID,Al-Ghobashy Medhat A5ORCID,Zaazaa Hala E5ORCID,Abdelkawy M6ORCID

Affiliation:

1. Department of Pharmaceutical Chemistry, Pharmacy College, Jouf University, PO Box 2014, Sakaka, Aljouf, Saudi Arabia

2. Pharmaceutical Analytical Chemistry Department, Faculty of Pharmacy, Beni-Suef University, Alshaheed Shehata Ahmed Hegazy St, 62574, Beni-Suef, Egypt

3. Pharmaceutical Chemistry Department, Faculty of Pharmacy & Drug Technology, Egyptian Chinese University, Gesr ElSuez st. behind Tagneed Bridge, PO Box 11786, Cairo, Egypt

4. Department of Pharmaceutical Chemistry, College of Pharmacy, Taif University, PO Box 11099, Taif, 21944, Saudi Arabia

5. Analytical Chemistry Department, Faculty of Pharmacy, Cairo University, Kasr El-Aini St, Kasr El-Aini St, PO Box 12613, Cairo, Egypt

6. Pharmaceutical Chemistry Department, Faculty of Pharmaceutical Sciences and Pharmaceutical Industries, Future University in Egypt, 90th St, New Cairo 1, Cairo Governorate PO Box 11835, Cairo, Egypt

Abstract

Abstract Background Extraction is the leading critical stage in the analysis of nutraceuticals. Ginkgo biloba (GB) has gained interest because of its therapeutic usages. Objectives The aim was to develop four cost-effective extraction techniques for the extraction of quercetin from GB in a sachet containing a mixture of nutraceuticals. These techniques are solid-phase extraction (SPE), liquid–liquid extraction, inverted dispersive liquid–liquid microextraction, and the QuEChERS (quick, easy, cheap, effective, rugged, and safe) method. Method Direct spectrophotometry was used to monitor the recovery of the standard quercetin throughout the optimization steps. The HPLC–UV method of analysis was optimized to quantify the yields from the extracts present in the complicated contents of the sachets. The present study was assessed by analytical Eco-Scale assessment (ESA) and the National Environmental Method Index (NEMI) for greenness in comparison with the literature. Results SPE showed the best cleanup outcomes. ESA and NEMI showed an adequate greenness of the proposed extraction protocol. Conclusions Quercetin (marker for GB) extraction from market nutraceutical sachets is considered an exemplar for analysis in the QC of nutraceuticals. Regarding the greenness results, the proposed method of extraction is better even with adequate greenness as the extraction was a one-step process, in comparison with multistep processes of previously published protocols. Accordingly, it is recommended for use in routine extraction and analysis of such nutraceuticals. Highlights Four extraction protocols have been developed. For GB ternary-mixture sachets, proper recovery was obtained using C18 SPE. The assessment of greenness of the proposed protocol guaranteed the superiority of the presented method. Safer sorbents and chemicals are favored for use in routine extraction of nutraceuticals.

Publisher

Oxford University Press (OUP)

Subject

Pharmacology,Agronomy and Crop Science,Environmental Chemistry,Food Science,Analytical Chemistry

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