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Instrumentation Science & Technology | 2011

SURFACTANT MEDIATED EXTRACTION OF TRITERPENES AND THEIR DIRECT HPLC ANALYSIS FROM THE MICELLAR SYSTEM

P. Schneider; Seyed Schwan Hosseiny; Friedrich Bischoff; U. Müller; Hans-Jörg Bart; K. Schlitter; Volkmar Jordan

The pentacyclic triterpenes oleanolic acid (OA) and ursolic acid (UA) in Salvia triloba are attractive ingredients for cosmetic and pharmaceutical formulations. These triterpenoids are constitution isomers and differ only in the position of one methyl group in their chemical structures. Therefore it is difficult to achieve a baseline separation by standard RP-HPLC systems. Another challenge is that the complex plant contains a large variety of similar compounds. To achieve precise results for the target molecules, these compounds should be removed prior to analysis. Due to the large application of these two triterpenes, a fast quantification method is favored. If the triterpenes are extracted with aqueous two-phase systems, the target substances are enriched in a surfactant-rich phase. For this application, it is desirable to develop a method that is capable of quantifying both triterpenes directly by RP-HPLC without additional purification steps. The optimal chromatographic conditions for pure substances as well as for crude surfactant-containing extracts were accomplished on a Nucleodur C18 ISIS column by isocratic elution with methanol/water/acetic acid/triethanolamine (90:10:0.04:0.02 v/v) as the mobile phase and a column temperature of 10°C. The flow rate was 0.6 mL/min, and the detection wavelength was 210 nm. With these parameters, a baseline separation was achieved and the calibration curve showed a very good linearity (R2 > 0.999 for OA and UA) within the test range. The method is simple, rapid, and reliable for the quantification of crude extracts from plant material.


Phytochemistry Letters | 2009

Rapid solubility determination of the triterpenes oleanolic acid and ursolic acid by UV-spectroscopy in different solvents

P. Schneider; Seyed Schwan Hosseiny; M. Szczotka; Volkmar Jordan; K. Schlitter


Archive | 1996

Process for obtaining carotene from palm oil

Michael Nitsche; Wilhelm Johannisbauer; Volkmar Jordan


Chemical Engineering & Technology | 2011

Plant Extraction with Aqueous Two‐Phase Systems

Peter Schneider; Friedrich Bischoff; U. Müller; Hans-Jörg Bart; Klaus Schlitter; Volkmar Jordan


Archive | 1993

Isolation of tocopherol and sterol

Lutz Jeromin; Wilhelm Johannisbauer; Bernhard Gutsche; Volkmar Jordan; Herbert Wogatzki


Chemie Ingenieur Technik | 1995

Olechemie – Chemieprodukte auf der Basis nachwachsender Rohstoffe

Christoph Breucker; Volkmar Jordan; Michael Nitsche; Bernhard Gutsche


Archive | 1992

Verfahren zum Gewinnen von Tocopherol und/oder Sterin

Lutz Jeromin; Wilhelm Johannisbauer; Bernhard Gutsche; Volkmar Jordan; Herbert Wogatzki


Archive | 2004

Processes for recovering phytosterols via crystallization

Christophe Sicre; Rene Armengaud; Joerg Schwarzer; Bernhard Gutsche; Markus Musholt; Volkmar Jordan


Archive | 1999

Isolation of phytosterols following methyl esterification of rape seed or soya fatty acids comprises crystallization from 25 - 75 wt. % methanol, useful as hypocholesterolemic agents in drugs and foods

Christophe Sicre; Rene Armengaud; Joerg Schwarzer; Bernhard Gutsche; Markus Musholt; Volkmar Jordan


Archive | 1996

PROCEDE DE FABRICATION DE PRODUITS SOLIDES PAR ESTERIFICATION DES ACIDES GRAS LIBRES EN PRESENCE DE CATALYSEURS ACIDES

Bernhardt Gutsche; Volkmar Jordan; Gerhard Dr. Wollmann; Manfred Lindemann; Jena Rigal; Rene Armengaud; Bernard Cormary

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Bernhard Gutsche

Technical University of Berlin

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Herbert Wogatzki

Technical University of Berlin

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U. Müller

Technical University of Dortmund

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Hans-Jörg Bart

Kaiserslautern University of Technology

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Michael Nitsche

Münster University of Applied Sciences

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P. Schneider

Münster University of Applied Sciences

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K. Schlitter

Münster University of Applied Sciences

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