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P Gebauer

Publications and source records attributed to P Gebauer.

At least 19 recordsLinked to original sources

Why robust background electrolytes containing multivalent ionic species can fail in capillary zone electrophoresis.

In this paper it is demonstrated that system peaks are induced by multivalent weak ionic species in background electrolytes. Their existence is derived from SystCharts and from Peak Shape Diagrams and the theory is confirmed experimentally. If analytes are present in a sample, with mobilities approximately equal to the mobility of a system peak, they interact, resulting in a strong increase of electromigration dispersion. This leads to strong peak broadening, peak deformation and a loss of resolution. Typical background electrolytes containing multivalent ionic species, e.g. phosphate and phthalate buffers, often reported to be robust electrolytes, are therefore not always universally applicable and can fail for the application of specific analytes. This paper reports a systematic study of the above phenomena and shows both theoretical and experimental results for background electrolytes containing phosphoric acid and phthalic acid.

Electrolytes↗

Success and failure with phthalate buffers in capillary zone electrophoresis.

Phthalate buffers are currently used in capillary electrophoresis as robust electrolyte systems for indirect detection. This contribution demonstrates that these buffers show regularly not only successful regions of mobilities of analytes (sample window) but also regions of failure where the migration of analytes is strongly deteriorated due to the presence of a system zone. System zones in phthalate buffers may be easily detected by UV detection and manifest themselves as peaks or dips. Peak shape diagrams are advantageously used for the prediction of the migration behavior of system zones in phthalate background electrolyte (BGE) systems at various pH. It is shown that the mobility of the system zone varies strongly with pH, is practically zero at pH values below 4 and above 7, and shows a maximum at pH 5. Thus, the system peak may coincide either with the peaks of various analytes or with the electroosmotic flow (EOF) peak. Experiments are given showing the effects of such coincidences as, e.g., zigzag detection patterns, double EOF peaks, and/or unusually broad peaks/dips. The message of this contribution is to show how to understand the electrophoretic properties of phthalate BGEs that, regardless of possible failure regions, may be successfully used in the analytical practice of capillary zone electrophoresis (CZE).

Buffers↗

System zones in capillary zone electrophoresis.

This paper brings an overview of system zones (SZs) in capillary zone electrophoresis (CZE) and their effects upon the migration of zones of analytes. It is shown that the formation and migration of SZs is an inherent feature of CZE, and that it depends predominantly on the composition of an actual background electrolyte (BGE). One can distinguish between stationary SZs and migrating SZs. Stationary SZs, which move due to the electroosmotic flow only, are induced in any BGE by sample injection. Migrating SZs may be induced by a sample injection in BGEs which show at least one of the following features: (i) BGE contains two or more co-ions, (ii) BGE has low or high pH whereby H+ or OH- act as the second co-ion, and (iii) BGE contains multivalent weak acids or bases. SZs do not contain any analyte and show always BGE-like composition. They contain components of the BGE only and the concentrations of these components are different from their values in the original BGE. Providing that some of the ionic components of the BGE are visible by the detector, the migrating SZs can be detected and they are present as system peaks/dips in the electropherogram. It is shown that a migrating SZ may be characterized by its mobility, and examples are given how this mobility can depend on the composition of the BGE. Further, the effects of the migrating SZs (either visible or not visible by the detector) upon the zones of analytes are presented and the typical disturbances of the peaks (extra broadening, zig-zag form, schizophrenic behavior) are exemplified and discussed. Finally, some conclusions are presented how to cope with the SZs in practice. The proposed procedure is based on the theoretical predictions and/or measurements of the mobilities of SZs and on the so-called unsafe region. Then, such operational conditions should be selected where the unsafe region is outside of the required analytical window.

Cations, Monovalent↗

Capillary zone electrophoresis in phosphate buffer--known or unknown?

It has been shown recently that the analysis records in capillary electrophoresis may involve regions with extremely strong electromigration dispersion of peaks. Such a fundamental effect is due to the existence of more centers of symmetry in a given electrolyte system. This paper shows that even such a simple and frequently used electrolyte system as phosphate buffer may exhibit more than one center of symmetry. By using the peak shape diagram approach we have revealed that neutral and alkaline phosphate buffers have two centers of symmetry and one center of extreme dispersion. Model experiments confirmed this new important discovery.

Buffers↗

Sample self-stacking in capillary zone electrophoresis: behavior of samples containing multiple major coionic components.

It is a frequent phenomenon in practice that a sample contains bulk levels of more than one coionic component that affect the stacking behavior of minor analytes and in this way also the sensitivity of the method. Here, attention is paid to stacking resulting from the presence of a macrocomponent of leading type that is deteriorated by the presence of another macrocomponent of like charge in the sample. Based on the isotachophoretic model of migration in the initial period of separation, a theoretical approach was elaborated both for strong and weak electrolytes which describes the separation process and finds the conditions that define whether transient isotachophoretic stacking of the analyte takes place or not. It is shown that the crucial parameter is the ratio of the concentrations of macrocomponents migrating in front and behind the analyte of interest. The destacking effect can also be expected when the coion of the background electrolyte is present in the sample. Rules how to cope with effects of destackers present in the sample are given. Theoretical considerations are illustrated by computer simulations and verified experimentally. Examples of antagonistic effects of macrocomponents are demonstrated for model serum samples.

Electrophoresis, Capillary↗

New aspects of buffering with multivalent weak acids in capillary zone electrophoresis: pros and cons of the phosphate buffer.

Phosphate buffer is frequently used as background electrolyte in capillary electrophoresis. It can cover a broad range of pH due to the three dissociation constants (pK1 = 2.0, pK2 = 7.2, and pK3 = 11.0) of phosphoric acid and because it is UV-light transparent. This contribution brings a theoretical study of the analytical separation performance (sample window, regions of peak symmetry, regions of fronting and tailing peaks) of phosphate buffer, serving as a model of buffering with multivalent weak acids. The study is based on the use of peak shape diagrams and covers the pH range 2.55-11.43. New important general knowledge has been revealed that single multivalent weak acids mimic the performance of background electrolytes with multiple coanionic species for anionic analyses. It is shown that simple phosphate buffers prepared by mixing phosphoric acid and potassium hydroxide may exhibit up to two regions of symmetry, of fronting as well as of tailing zones, on the mobility scale inside the sample window. Moreover they may exhibit a "schizophrenic" region of enormous electromigration dispersion.

Buffers↗

Recent progress in capillary isotachophoresis.

This article is a continuation of previous reviews and summarizes the progress of analytical capillary isotachophoresis in the years 1997-1999. Papers reviewed include theoretical and methodological aspects as well as analytical applications. Included are also papers using isotachophoresis and/or isotachophoretic principles as part of multidimensional separation schemes.

Animals↗

"Schizophrenic" behavior of zones in capillary zone electrophoresis: explanation of an old problem.

Background electrolyte (BGE) systems with two coions are frequently used in capillary zone electrophoresis (CZE), especially in cases where indirect optical detection is employed. This study investigates the behavior of analytes, which possess mobilities intermediate to those of the BGE coions used. Besides the expected behavior, where the analytes provide either tailing or fronting zones, unusual behavior with extraordinary zone broadening is also observed in some cases. The explanation for this effect is that binary BGE systems involve, as a physico-chemical rule, a region where the analytes are forced by one coion to give tailing zones and simultaneously by the other coion to give fronting zones. The result of this "schizophrenic" situation is extraordinary zone broadening and deterioration of the detection record. A series of experiments is presented showing in a telling way the electromigration behavior of the discussed type of zones as well as the ways to remedy the deterioration of the peak shape by a mere slight changing of the quantitative composition of the BGE used.

Electrophoresis, Capillary↗

System peaks in capillary zone electrophoresis. 3. Practical rules for predicting the existence of system peaks in capillary zone electrophoresis of anions using indirect spectrophotometric detection.

A theoretical and experimental study of the existence and evolution of system peaks in capillary zone electrophoresis (CZE) with indirect spectrophotometric detection is presented with respect to the effect of the number of coions present in the background electrolyte (BGE). It is shown that in BGEs having only one coion (i.e., the UV-absorbing probe anion), the sample produces only negative peaks due to each analyte anion and no system peaks, with the number of sample peaks corresponding to the number of analytes present in the sample injected. In BGEs containing two coions, a sample with one analyte anion produces one negative indirect detection peak and one system peak. The transition between BGEs having one coion and those with two coions has also been studied and it has been shown that an addition of ca. 5% of the second coion to a single coion BGE causes the resulting BGE to behave macroscopically as a regular two-coion BGE. A descriptive model is proposed, based on transient isotachophoresis (transient stacking) of the sample species and of the coion from the BGE which has the closest mobility to the sample ion. This model explains qualitatively the formation and evolution of the sample peak (containing the sample species and being detected by indirect detection due to displacement of the UV-absorbing probe in its zone) and the system peak (containing no sample species and being a vacancy in the continuum of coions of the BGE). It is shown that the system peak may be positive or negative as it corresponds to the situation where the vacancy of one component of the BGE results in an enhanced concentration of the other component. It has been demonstrated that the system peak is created by a vacancy of that component of the BGE which has the greatest difference in mobility relative to that of the sample species. On indirect detection in BGEs containing two coions the sample displaces predominantly the BGE coion which has a mobility closest to that of the analyte anion. In systems with BGEs containing two coions, a sample having n analytes produces n sample peaks and one system peak, the sign and magnitude of which are dependent on the sum of the UV absorbances of the analytes involved. The effect of bicarbonate from atmospheric CO2 has also been studied and it has been shown that weakly alkaline BGEs with a single anionic UV-absorbing coion, such as those currently used for anionic analyses with indirect detection, may suffer from the presence of system peaks due to bicarbonate.

Anions↗

Recent application and developments of capillary isotachophoresis.

Capillary isotachophoresis is a powerful electromigration separation method with a pronounced capability to concentrate trace components in diluted samples. At present, capillary isotachophoresis is utilized predominantly as the first step in on-line combination with capillary zone electrophoresis. This article is a continuation of previous reviews and summarizes the results published during 1993-1996.

Carbohydrate Sequence↗

Theory of zone separation in isotachophoresis: a diffusional approach.

The qualitative characteristics of isotachophoresis differ substantially from "classical" separation methods such as chromatography or zone electrophoresis. Self-sharpening zone boundaries and step-like concentration profiles are the most specific features of this method, which does not allow the description of the isotachophoretic separation in usual "chromatographic" terms, such as resolution or number of theoretical plates. A theory is presented in this paper, combining the usual isotachophoretic separation characteristics with the theory of isotachoporetic zone boundary, which is the only element of the isotachophoretic system with dispersional properties. This allows us to consider situations near the limits of the isotachophoretic method as far as both selectivity and sample amount (i.e., zone size) are concerned. Based on a simplified expression of the concentration profiles across the isotachophoretic zone boundary, separation and separation limits are described and discussed in terms of resolution, selectivity and zone capacity. Equations are derived showing the relationships between resolution, boundary width, selectivity, sample amount, and column and electrolyte conditions. A simple phenomenological equation is presented, expressing isotachophoretic resolution as a function of only sample amount (or sample zone length) and boundary width. A thermodynamic form of this equation is derived, which is shown to be similar to such an expression for resolution in zone electrophoresis. In both cases resolution is a function of sample selectivity, electric field strength and column length. A simple theoretical model for zone capacity is presented, making it possible to estimate the separation performance of isotachophoretic systems. Based on the presented theory, parallels between isotachophoresis and zone electrophoresis are discussed and both methods are compared.

Diffusion↗

Sample self-stacking and sample stacking in zone electrophoresis with major sample components of like charge: general model and scheme of possible modes.

A theoretical study is presented of zone electrophoretic behavior of samples that contain one or more minor analytes and at least one major ionogenic component of like charge. Based on a simple model comprising weak univalent anionic electrolytes, conditions are derived under which analytes are temporarily focused isotachophoretically into very narrow zones by a sample self-stacking effect provided by the major sample components. Requirements for minimal/maximal mobility and a background coion concentration dependent minimal concentration of a major sample component (stacker) are presented. For systems in which sample self-stacking does not apply, an expression for the concentrating factor is derived that involves the effects of both nonselective (classical) and selective sample stacking, the latter being a consequence of electrophoretic separation of the minor analyte from the major component. The theory derived is discussed with selected model examples by using both numerical calculation and computer simulation.

Electric Conductivity↗

Determination of substituted purines in body fluids by micellar electrokinetic capillary chromatography with direct sample injection.

Many substituted purines (theobromine, caffeine, paraxanthine, theophylline and uric acid, as well as other methylated xanthines and uric acids) can easily be separated and analysed in one run using micellar electrokinetic capillary chromatography with a boratephosphate buffer containing 75 mM sodium dodecyl sulphate (pH approximately 9). Serum, saliva and urine samples collected after the self-administration of caffeine and serum samples from patients receiving theophylline or caffeine pharmacotherapy were screened for substituted purines. The data presented show the ease of using on-column multi-wavelength detection for investigating the feasibility of direct sample application, the characterization of sample pretreatment procedures and peak confirmation by comparing absorption spectra. It is shown that the determination of purines in serum and saliva samples, including therapeutic concentrations of caffeine and theophylline, can be accomplished without any sample pretreatment, whereas sample extraction is required for the determination of purines in urine. Quantitative data for the determination of micromolar amounts of theophylline (samples from adult patients) and caffeine (samples from infants born prematurely) in serum samples compared well with data obtained by non-isotopic immunoassays. Micellar electrokinetic capillary chromatography with the direct injection of serum or saliva samples requires only microlitre volumes of sample and several different compounds can be determined within a few minutes.

Adult↗

Purification of ovalbumin and lysozyme from a commercial product by recycling isotachophoresis.

The aim of this work was to test the suitability of using recycling isotachophoresis (RITP) for the purification of ovalbumin (OVA) and/or lysozyme (LYSO) from a commercial OVA product containing LYSO and conalbumin (CAL) as major proteinaceous impurities. The search for suitable electrolyte systems and spacers was carried out by capillary isotachophoresis. RITP was performed in a recycling free-flow focusing apparatus in the batch mode with immobilization of the advancing zone structure via a controlled counterflow. Typically 700 mg of the commercial product were processed within 2 h. Enhancement of the sample load was achieved by a feed of sample under counterflow control. The collected fractions were analysed separately for conductivity, pH and ultraviolet absorption, and selected fractions were characterized by analytical capillary electrophoretic methods. All three proteins could be separated and fractionated using suitable spacers. Depending on the chosen conditions either OVA or LYSO could be purified in amounts larger than milligrams per hour (OVA 300 mg/h; LYSO 10 mg/h). The instability of CAL in solution prevented its isolation in the investigated configurations.

Conalbumin↗

Isotachophoresis of proteins in uncoated open-tubular fused-silica capillaries with a simple approach for column conditioning.

The isotachophoretic determination of proteins in uncoated open-tubular fused-silica capillaries of 50 and 75 microns I.C. with on-column multi-wavelength detection is reported. Small amounts of hydroxypropylmethylcellulose added to the leader provide an efficient method of dynamic column conditioning which allows the high-resolution isotachophoretic determination of most proteins to be performed in the presence of an electro-osmotic flow. Different approaches for cationic and anionic analyses are discussed and illustrated with selected examples.

Animals↗

Recycling and screen-segmented column isotachophoresis, two free-fluid approaches for fractionation of proteins.

Recycling and screen-segmented column isotachophoresis (ITP), two approaches for the milligrams to grams preparative-scale purification of proteins, are discussed and compared. Recycling ITP was performed in a recycling free-flow focusing apparatus. In this process, fluid flows rapidly through a narrow channel and the effluent from each channel is reinjected into the electrophoresis chamber through the corresponding input port. The residence time in the cell is of the order of 1 s per single pass, which does not allow complete separation, so recycling is essential to attain the steady state. Immobilization of the advancing zone structure is obtained via a controlled counterflow. Thirty fractions of about 4 ml each are obtained. Column ITP was executed in a Rotofor apparatus and in a similar column operated vertically and without rotation. These instruments feature a screen-segmented annular separation space with twenty subcompartments of about 2 ml each. With both approaches, the collected fractions were analysed separately for conductivity, pH and UV absorbance. Selected fractions were characterized by analytical electrophoretic methods. Examples presented include the cationic and anionic ITP behaviour of model proteins, including bovine serum albumin, ovalbumin and ribonuclease A, and the ITP removal of the major impurities from a commercial ovalbumin sample. These examples revealed that the screen-segmented column is suitable for ITP protein purification and operates optimally in a horizontal rotating mode and without internal cooling. The recycling experiments showed that counterflow improves separation and the steady-state patterns are dependent on the fluid layer thickness in the separation cell but, with a given gap, essentially independent of applied current and recycling pump rate.

Electrophoresis↗

Innovative developments in isotachophoresis (displacement electrophoresis).

This Mini Review is aimed at characterizing the innovative developments in isotachophoresis (ITP) during the past few years, discussing in turn new theoretical, analytical, preparative and applicative aspects of this unique separation method. Examples given from our laboratory include the study of the detailed dynamics of the ITP separation of four components by computer simulation and experimental validation in a capillary-type instrument with multiple sensors along the separation trough; the anionic ITP analysis in presence of a strong cathodic electroosmotic flow using an open-tubular fused-silica capillary with on-column multiwavelength detection, and the fractionation of proteins in a screen-segmented, rotating column as well as by recycling ITP.

Electrophoresis↗