The concentration and distribution of menthol enantiomers have great significance in discriminating natural mint varieties and evaluating the origin of foodstuffs containing menthol additives. However, the chiral separation of eight chiral menthol enantiomers in Mentha plants offers an easy approach to eliminating or reducing the identification technology problem. The application of derivatized β-cyclodextrin capillary chiral column coupled with derivatized γ-cyclodextrin capillary chiral column, and gas chromatography-mass spectrometry (GC-MS) technology, to isolate and analyze eight chiral menthol enantiomers in 23 natural Mentha plants was investigated. The results showed that the two-chiral columns tandem technology enabled the baseline separation of the eight menthol enantiomers. Four different menthol compounds were only detected in seven out of the 23 natural mint plants. (1R,3R,4S)-(-)-menthol and (1R,3S,4S)-(+)-neomenthol were detected in the seven mint plant samples, while (1S,3S,4R)-(+)-menthol and (1S,3R,4R)-(-)-neomenthol could not be detected in the seven mint plant samples. For the two enantiomer couples of (+/-)-isomenthol and (+/-)-neoisomenthol, only (+)-isomers were detected in field mint, candy mint, and peppermint. The Mentha plant samples were distinguished and identified by principal component analysis and radar chart statistical analysis based on the data of the menthol content and isomer ratio. Furthermore, the presence or absence of (1S,3S,4R)-(+)-menthol in the samples can be used as an identification factor for discriminating between synthetic menthol and natural sources of menthol.
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http://dx.doi.org/10.1016/j.foodres.2022.112035 | DOI Listing |
Anal Bioanal Chem
November 2024
Department of Chemistry, Sapienza University, P.Le Aldo Moro 5, 00185, Rome, Italy.
The increasing use of chiral agrochemicals sold as racemic formulations raises concern for the negative impacts that inactive enantiomers can have on aquatic life and human health. The present work just focuses on the determination of ten chiral pesticides in river water samples by applying a ferrofluid-based microextraction followed by their stereoselective liquid chromatography analysis. To develop the ferrofluid, magnetite nanoparticles were prepared and coated with oleic acid and then dispersed in a hydrophobic natural deep eutectic solvent (NaDES), composed of L-menthol and thymol (1:1).
View Article and Find Full Text PDFTalanta
January 2025
Shanghai Institute of Technology, 100 Haiquan Road, Shanghai, 201418, China; Shanghai Research Institute of Fragrance & Flavor Industry, 480 Nanning Road, Shanghai, 200232, China. Electronic address:
Chirality
September 2024
Department of Analytical Chemistry, Ufa University of Science and Technology, Ufa, Russia.
The chirality of biopolymers remains one of the mysteries of Life. For such objects, the phenomenon of supramolecular chirality (SMC) is vital. Enantiomers can be recognized by the adsorption on surfaces with SMC.
View Article and Find Full Text PDFAsian J Pharm Sci
September 2023
Department of Pharmaceutical Sciences, Shenyang Pharmaceutical University, Shenyang 110016, China.
Overlook of chiral consideration in transdermal drug delivery increases administrated dose and risk of side effects, decreasing therapeutical effects. To improve the transdermal delivery efficiency of eutomer, this work focused on investigating the law and mechanism of enantioselective enhancing effects of chiral permeation enhancers on drug enantiomers. Chiral nonsteroidal anti-inflammatory drugs and terpene permeation enhancers were selected as model drug and enhancers.
View Article and Find Full Text PDFInt J Mol Sci
October 2023
Department of Urology, Linkou Chang Gung Memorial Hospital, Taoyuan 333, Taiwan.
Three-phase crystallization (TPC) was introduced in this study to purify -menthol from menthol enantiomer mixtures in consideration of the formation of solid solutions. TPC is a new separation technology, which combines melt crystallization and vaporization to result in the desired crystalline product from a liquid mixture along with the unwanted components vaporized via the three-phase transformation by reducing temperature and pressure. The three-phase transformation conditions for the liquid menthol enantiomer mixtures were determined based on the thermodynamic calculations to direct the TPC experiments.
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