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1.
J Chromatogr A ; 1554: 117-122, 2018 Jun 15.
Article in English | MEDLINE | ID: mdl-29699870

ABSTRACT

Chinoline alkaloids found in Cinchona bark still play an important role in medicine, for example as antimalarial and antiarrhythmic drugs. For the first time Supercritical Fluid Chromatography has been utilized for their separation. Six respective derivatives (dihydroquinidine, dihydroquinine, quinidine, quinine, cinchonine and cinchonidine) could be resolved in less than 7 min, and three of them quantified in crude plant extracts. The optimum stationary phase showed to be an Acquity UPC2 Torus DEA 1.7 µm column, the mobile phase comprised of CO2, acetonitrile, methanol and diethylamine. Method validation confirmed that the procedure is selective, accurate (recovery rates from 97.2% to 103.7%), precise (intra-day ≤2.2%, inter-day ≤3.0%) and linear (R2 ≥ 0.999); at 275 nm the observed detection limits were always below 2.5 µg/ml. In all of the samples analyzed cinchonine dominated (1.87%-2.30%), followed by quinine and cinchonidine. Their total content ranged from 4.75% to 5.20%. These values are in good agreement with published data, so that due to unmatched speed and environmental friendly character SFC is definitely an excellent alternative for the analysis of these important natural products.


Subject(s)
Alkaloids/analysis , Cinchona/chemistry , Alkaloids/chemistry , Chromatography, Supercritical Fluid , Cinchona/metabolism , Cinchona Alkaloids/analysis , Limit of Detection , Plant Bark/chemistry , Plant Bark/metabolism , Plant Extracts/chemistry , Quinidine/analogs & derivatives , Quinidine/analysis , Quinine/analysis
2.
Int J Mol Sci ; 12(11): 7846-60, 2011.
Article in English | MEDLINE | ID: mdl-22174637

ABSTRACT

Quinas contains several compounds, such as quinoline alkaloids, principally quinine, quinidine, cinchonine and cichonidine. Identified from barks of Cinchona, quinine is still commonly used to treat human malaria. Microwave-Integrated Extraction and Leaching (MIEL) is proposed for the extraction of quinoline alkaloids from bark of Cinchona succirubra. The process is performed in four steps, which ensures complete, rapid and accurate extraction of the samples. Optimal conditions for extraction were obtained using a response surface methodology reached from a central composite design. The MIEL extraction has been compared with a conventional technique soxhlet extraction. The extracts of quinoline alkaloids from C. succirubra obtained by these two different methods were compared by HPLC. The extracts obtained by MIEL in 32 min were quantitatively (yield) and qualitatively (quinine, quinidine, cinchonine, cinchonidine) similar to those obtained by conventional Soxhlet extraction in 3 hours. MIEL is a green technology that serves as a good alternative for the extraction of Cinchona alkaloids.


Subject(s)
Cinchona/chemistry , Plant Extracts/analysis , Quinolines/analysis , Antimalarials/analysis , Chromatography, High Pressure Liquid , Cinchona Alkaloids/analysis , Green Chemistry Technology , Microwaves , Plant Bark/chemistry , Quinidine/analysis , Quinine/analysis
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