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1.
J Pharm Biomed Anal ; 245: 116191, 2024 Aug 01.
Article in English | MEDLINE | ID: mdl-38728950

ABSTRACT

A method involving chitosan-assisted magnetic-stirring-enhanced mechanical amorphous dispersion extraction was developed and utilized to extract hydrophobic anthraquinones from Rhei Radix et Rhizoma prior to ultrahigh performance liquid chromatography analysis. Incorporating natural chitosan as a dispersant facilitated the extraction of hydrophobic anthraquinones using purified water, considerably enhancing the eco-friendliness of the extraction methodology. To optimize extraction efficiency, an extensive evaluation of the crucial parameters influencing rhubarb yield was conducted. Furthermore, a response surface methodology was applied to optimize the extraction conditions. Under these optimized conditions, the method exhibited linearity ranges of 0.1-100 µg/mL, with correlation coefficients between 0.9990 and 0.9998. The method's intraday (n = 6) and interday (n = 6) precision levels were maintained at ≤3.58%, which was considered to be within acceptable limits. The computed detection and quantification limits were 16.54-24.60 and 54.91-82.04 ng/mL, respectively. Consequently, this optimized method was effectively employed to extract five specific compounds (aloe-emodin, emodin, rhein, chrysophanol, and physcion) from Rhei Radix et Rhizoma, achieving recoveries ranging from 86.43% to 102.75%.


Subject(s)
Anthraquinones , Hydrophobic and Hydrophilic Interactions , Plants, Medicinal , Rheum , Anthraquinones/chemistry , Anthraquinones/analysis , Chromatography, High Pressure Liquid/methods , Rheum/chemistry , Plants, Medicinal/chemistry , Chitosan/chemistry , Phytochemicals/chemistry , Phytochemicals/analysis , Phytochemicals/isolation & purification , Water/chemistry , Emodin/analogs & derivatives , Emodin/chemistry , Emodin/analysis , Limit of Detection , Plant Extracts/chemistry
2.
J Chromatogr A ; 1714: 464563, 2024 Jan 11.
Article in English | MEDLINE | ID: mdl-38101248

ABSTRACT

An on-line enrichment and separation of multiple derivatized monosaccharides with cyclodextrin-encapsulated sweeping (CDES) by micellar electrokinetic chromatography (MEKC) was presented. Five monosaccharides (L-(-)-Mannose, D-(+)-Glucose, D-(-)-Ribose, D-(+)-Xylose, and L-(+)-Rhamnose) were derivatized with 1-phenyl-3-methyl-5-pyrazolone, subsequently concentrated and separated by MEKC. The optimized conditions were as follows: 50 mM phosphoric acid (PA), 100 mM sodium dodecyl sulfate (SDS), and 30 % (v/v) methanol in background solution; 140 s injection of sample solution containing 50 mM CD and 100 mM PA, followed by 90 s injection of 40 mM SDS solution. Under the optimized conditions, the correlation coefficients ≥ 0.9953, and the limits of detection ranged from 4.2 to 7.4 ng/mL. Relative standard deviation values ranged from 0.24-4.23 %, and sensitivity enrichment factors were in the range of 53-82 compared with typical injection (50 mbar, 3 s). The CDES-MEKC method was successfully applied to Jujube with good recoveries of 84.22-104.33 %. The method provides new ideas for the on-line enrichment and detection of trace monosaccharides and even other target analytes in foods with complex matrices.


Subject(s)
Chromatography, Micellar Electrokinetic Capillary , Cyclodextrins , Chromatography, Micellar Electrokinetic Capillary/methods , Cyclodextrins/chemistry , Monosaccharides , Fruit , Micelles
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