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Matthias Herzler

Publications and source records attributed to Matthias Herzler.

2 recordsLinked to original sources

Systematic toxicological analysis by high-performance liquid chromatography with diode array detection (HPLC-DAD).

In recent years, photodiode array detectors (DADs) have been much improved with respect to wavelength accuracy and resolution, sensitivity, linearity and software operation. UV spectra of drugs measured with up-to-date DADs from different manufacturers are in excellent agreement, have the same quality as measured by a conventional UV spectrometer and are highly reproducible. The calculation of similarity parameters by the DAD software includes the entire range of the spectra compared and allows recognition of very small differences. It was shown in a systematic study of more than 2500 toxicologically relevant substances that UV spectra have a very high specificity with respect to substance structure. Therefore, HPLC-DAD in combination with a comprehensive database of UV spectra and retention parameters is one of the most efficient techniques used in systematic toxicological analysis (STA). Furthermore, the method is advantageous for the identification of metabolites, since in many cases they have the same or very similar UV spectra compared with their respective parent substances and their retention times on reversed-phase columns are shifted in a manner typical of the particular biotransformation reaction. Beside these general aspects, practical applications of HPLC-DAD for STA are reviewed with respect to sample preparation and chromatographic conditions. The efficiency of the method is demonstrated for an example of a routine procedure using liquid-liquid extraction with CH 2 Cl 2 and protein precipitation for sample preparation, a system of three isocratic mobile phases with different acetonitrile/phosphate buffer ratios and RP8 columns for chromatography and a database of 2682 UV spectra and relative retention times for substance identification.

Adult↗

Selectivity of substance identification by HPLC-DAD in toxicological analysis using a UV spectra library of 2682 compounds.

The UV spectra and relative retention times (RRT) of 2682 toxicologically relevant substances were measured by high-performance liquid chromatography with diode array detection (HPLC-DAD) in an acetonitrile phospate buffer (pH 2.3) mixture on an RP8 column and were arranged in a database. A complete survey of the molecular structures of all database entries showed the presence of 1650 different chromophores or chromophore combinations. The specificity of the UV spectrum for substance identification was determined by calculation of the similarity indices (SI) of all possible substance pairs within the database with an SI > 0.9990, which indicated spectral identity. In a similar way, the RRT was evaluated for all possible pairs: two compounds were declared indistinguishable because the RRT of at least one of them fell into the RRT error window of the other. Although the use of the RRT alone produced unsatisfactory identification results, 1619 substances (60.4%) were unambiguously identified by their UV spectrum only. This rate was increased to 84.2% by the combination of spectrum and RRT. The selectivity parameters discrimination power (DP) and mean list length (MLL) were calculated (DP = 0.9999, MLL = 1.253) and compared with literature data, which proved HPLC-DAD to be one of the most reliable methods for substance identification in toxicological analysis. The practical relevance of the results for systematic toxicological analysis is demonstrated by the example of a multidrug intoxication and in the context of sample preparation methods routinely used.

Chromatography, High Pressure Liquid↗