» Articles » PMID: 26617040

Stability Indicating Simplified HPLC Method for Simultaneous Analysis of Resveratrol and Quercetin in Nanoparticles and Human Plasma

Overview
Journal Food Chem
Date 2015 Dec 1
PMID 26617040
Citations 7
Authors
Affiliations
Soon will be listed here.
Abstract

Resveratrol and quercetin are well-known polyphenolic compounds present in common foods, which have demonstrated enormous potential in the treatment of a wide variety of diseases. Owing to their exciting synergistic potential and combination delivery applications, we developed a simple and rapid RP-HPLC method based on isosbestic point detection. The separation was carried out on phenomenex Synergi 4μ Hydro-RP 80A column using methanol: acetonitrile (ACN): 0.1% phosphoric acid (60:10:30) as mobile phase. The method was able to quantify nanograms of analytes simultaneously on a single wavelength (269 nm), making it highly sensitive, rapid as well as economical. Additionally, forced degradation studies of resveratrol and quercetin were established and the method's applicability was evaluated on PLGA nanoparticles and human plasma. The analytes peaks were found to be well resolved in the presence of degradation products and excipients. The simplicity of the developed method potentializes its suitability for routine in vitro and in vivo analysis of resveratrol and quercetin.

Citing Articles

Development and Validation of a Robust RP-HPLC Method for the Simultaneous Analysis of Exemestane and Thymoquinone and Its Application to Lipid-Based Nanoformulations.

Gupta P, Sharma S, Gupta A, Kawish S, Iqbal M, Rahman S ACS Omega. 2024; 9(28):30120-30130.

PMID: 39035924 PMC: 11256079. DOI: 10.1021/acsomega.3c08078.


Three-dimensional strategies in the quantitative resolution of kinetic UV absorbance measurements for monitoring the oxidation of quercetin by oxidant agents and analyzing dietary supplement product.

Dinc E, Ucer A, Unal N J Food Drug Anal. 2023; 31(2):326-337.

PMID: 37335156 PMC: 10281734. DOI: 10.38212/2224-6614.3455.


Ultrasonically Fabricated Beta-Carotene Nanoemulsion: Optimization, Characterization and Evaluation of Combinatorial Effect with Quercetin on Streptozotocin-Induced Diabetic Rat Model.

Mahadev M, Dubey A, Shetty A Pharmaceutics. 2023; 15(2).

PMID: 36839896 PMC: 9962907. DOI: 10.3390/pharmaceutics15020574.


Anti-Proliferative Potential of Quercetin Loaded Polymeric Mixed Micelles on Rat C6 and Human U87MG Glioma Cells.

Paranthaman S, Uthaiah C, Osmani R, Hani U, Ghazwani M, Alamri A Pharmaceutics. 2022; 14(8).

PMID: 36015268 PMC: 9412540. DOI: 10.3390/pharmaceutics14081643.


Fabrication and Evaluation of Quercetin Nanoemulsion: A Delivery System with Improved Bioavailability and Therapeutic Efficacy in Diabetes Mellitus.

Mahadev M, Nandini H, Ramu R, Gowda D, Almarhoon Z, Al-Ghorbani M Pharmaceuticals (Basel). 2022; 15(1).

PMID: 35056127 PMC: 8779357. DOI: 10.3390/ph15010070.