1.Precipitation reaction between berberine and rheinic acid by capillary electrophoresis.
Xu XU ; Xiao-wei DONG ; Ping MAO
Acta Pharmaceutica Sinica 2003;38(10):779-782
AIMTo study the thermodynamics of precipitation reaction and kinetics between berberine and rheinic acid. The former is the main compound in rhubarb root or corktree bark, the latter is a representation of anthraquinone compounds that are the main kind compound in coptis rhizome. The precipitate produced in preparation of complex prescription of Chinese herbal medicines Xiexin decoction and Shaoyao decoction had made an appeal. The work should build a good basement for two decoctions research and development.
METHODSCapillary electrophoresis (CE) and front analysis methods are used for determining two compounds' equilibrium concentration at different precipitate conditions to calculate the constants of thermodynamics and kinetics.
RESULTSThe molar ratio of berberine and rheinic acid in precipitate is 1:1. The solubility product constant Ksp = [B] [R] = (3.29 +/- 0.19) x 10(-9) mol2.L-2. The precipitate reaction is an endotherm process and Ksp shows less effect by temperature. The reaction occurred immediately even though the precipitate cannot be observed in time. The precipitate process in experiments is practically just an aging or grown process of the precipitate particles. High temperature can quicken the aging.
CONCLUSIONThe precipitate in Chinese herbal medicines Xiexin decoction and Shaoyao decoction should be resulted from anthraquinone compounds and alkaloids. The reproductivity of capillary electrophoresis can be improved for simple sample by combining peak height measurement.
Anthraquinones ; analysis ; chemistry ; Berberine ; analysis ; chemistry ; Chemical Precipitation ; Drug Interactions ; Electrophoresis, Capillary ; Solubility
2.Colloidal gold immunochromatographic test strip for virus detection: a review.
Xuxu DONG ; Wei SUN ; Pan CAO ; Xiaodan LIU
Chinese Journal of Biotechnology 2022;38(9):3243-3254
Colloidal gold immunochromatographic strip is a fast, sensitive and accurate solid-phase labeling detection technology, which has the advantages of low price, easy operation, rapid detection and high specificity, with the potential to qualitatively detect the relevant viruses in a short time with desired sensitivity and accuracy. It effectively addresses the disadvantages of long detection time, equipment inconvenience and professionalism requirement of the traditional detection methods used in the medical, veterinary, animal, plant virus detection, pesticide residue detection and other areas. Presently, the technology has been applied in the detection of bacterial diseases, viral diseases and prevention of extensive spread of infectious diseases, and has sufficient room for further development. This review summarizes the application of colloidal gold immunochromatography strip for biological virus detection, followed by prospecting future perspectives.
Animals
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Antibodies, Monoclonal/chemistry*
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Chromatography, Affinity
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Gold Colloid/chemistry*
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Pesticide Residues
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Sensitivity and Specificity