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Paweł K Zarzycki

Publications and source records attributed to Paweł K Zarzycki.

5 recordsLinked to original sources

Isocratic separation of ginsenosides by high-performance liquid chromatography on a diol column at subambient temperatures.

An improved high-performance liquid chromatographic method for separation of a number of ginsenosides has been developed. The influence of temperature (from 0 to 25 degrees C) on the retention and separation of the ginsenosides was studied by applying a binary mobile phase (acetonitrile/water, 82:18 v/v) and a diol column (LiChrospher 100 Diol). The column temperature is one of the more important parameters for the retention and separation of the components investigated. Selected thermodynamic parameters, including changes of enthalpy (deltaH degrees) and entropy (deltaS degrees), were estimated from linear van't Hoff plots, and possible retention mechanisms were discussed. Moreover, the best separation conditions were selected based on optimization criteria including maximum retention time (t(R max)), minimum resolution (R(s min)), and relative resolution product (r). Temperature regions close to 14 degrees C offered the highest selectivity and almost equal distribution of the ginsenosides peaks across the chromatogram. Under such isocratic conditions, excellent separation of chromatographic standards and selected ginseng samples was achieved in less than 16 min.

Chromatography, High Pressure Liquid↗

Evaluation of methanol-water and acetonitrile-water binary mixtures as eluents for temperature-dependent inclusion chromatography.

In the present study the solubility of beta-cyclodextrin and 2-hydroxypropyl-beta-cyclodextrin at sub-zero and elevated temperatures (-10 and +30 degrees C) for a given composition of methanol/water and acetonitrile/water binary mixtures (Xs = 0.16) was studied. Moreover, the freezing temperature profiles of acetonitrile-based chromatographic mobile phases were measured, and the obtained results were compared with data available in the literature. Furthermore, the effect of the macrocycles concentration on the liquid-phase freezing points was determined. The low solubility of native beta-cyclodextrin in a methanol/water mixture at sub-zero temperature as well as the non-linear behavior of acetonitrile/water mixtures that were observed concerning the freezing point profile are discussed from a practical point of view.

2-Hydroxypropyl-beta-cyclodextrin↗

Determination of steroids in human plasma using temperature-dependent inclusion chromatography for metabolomic investigations.

Clinical and metabolomic investigations of complex human fluids require cost-effective methodologies that can rapidly assess the steroid hormone milieu of individual samples. The efficiency of quantification of many steroids is limited using immunoassays as these methods can only measure a single component of biological samples and are dependent upon the specificity of the antiserum used in the protocol. In this study, we optimised the solid-phase extraction protocol for the extraction of a range of steroids of varied polarity from estetrol to progesterone from human plasma. The final SPE procedure for efficient extraction of steroids was a washing mixture of 5 ml of 30% methanol and an elution solvent of 2 ml of 100% methanol using 0.5 g C-18 cartridges. This protocol resulted in a high recovery rate, ranging from 85.2 to 99.9% for both the internal standard (7,8-dimethoxyflavone) and steroids of interest. We also improved the separation methodology of our previous work using temperature dependent inclusion chromatography with a mobile phase composition of 35% acetonitrile and 12 mM of beta-cyclodextrin at 29 degrees C. Under these conditions most of the fluid components including estetrol were detected in the first 10 min with progesterone appearing at 43 min. This method is simplistic, inexpensive and reproducible with the capabilities of accurate quantification of steroids. Therefore it could have numerous clinical and metabolomic applications.

Chromatography, High Pressure Liquid↗

The bioequivalence study of baclofen and lioresal tablets using capillary electrophoresis.

A simple and robust analytical method for rapid separation and sensitive quantification of baclofen in human plasma by capillary electrophoresis technique was developed. Electrophoretic separation was optimized and successfully performed using simple sodium tetraborate aqueous solution. Observed detection limit in biological material was 10 ng. Using UV detection at 200 nm excellent linearity (r = 0.999) was observed over the concentration range from 0.025 to 1.0 microg mL(-1). The described method has been validated and applied to the quantitative determination of baclofen in human plasma. The bioavailability of Baclofen (Polpharma) and Lioresal (Novartis) in 18 healthy volunteers was investigated. The results indicate bioequivalence of the reference and Baclofen preparations.

Adult↗

Simple chamber for temperature-controlled planar chromatography.

This article describes a construction of a simple developing device designed for temperature control of thin-layer chromatographic plates. The plates can be developed by the ascending technique under temperature gradient or non-gradient conditions. Saturated or unsaturated chamber conditions can be easily selected. The effects that give rise to pseudo-non-linear Van't Hoff plots, e.g. a temperature irregularity inside the chamber or heat evolving during solvent adsorption near the migrating front of the mobile phase are minimized. The preliminary temperature-retention studies show that the device is suitable for temperatures ranging from -20 to 60 degrees C. Using a binary mobile phase mixture (methanol-water, 70:30, v/v) the velocity of the mobile phase front on the HPTLC RP-18W plates at different temperatures was investigated. Under these conditions the retention profiles of four natural estrogens (estetrol, estriol, 17beta-estradiol and estrone) were examined. The application of the described device for temperature-retention studies is also discussed.

Chromatography, Thin Layer↗