The purpose of this study was to establish valerenic acid as a marker compound for the standardization of ethanol extract of Valerinan officinalis (valerian) root as a functional health food. We established valerenic acid as a marker compound using HPLC. HPLC was used to quantify the marker compound in the valerian extract after validation of methods with linearity, accuracy, and precision. The specificity for retention time was met by comparative analysis of the valerian extract and standard compound using HPLC. The method showed high linearity of the calibration curve with a coefficient of correlation (R2) of 0.9999. The limit of quantification (LOQ) was 10 μg/mL. The accuracy of measurement was 99.88~ 00.68% and the relative standard deviation (RSD) value was 0.59%. In addition, our analytical method yielded a 29% mean content of valerenic acid in the valerian ethanol extract. These results indicate that the established HPLC method facilitated the determination of marker compounds in the valerian extract for the standardization of health functional foods. Key words: Valerinan officinalis, valerenic acid, HPLC, validation, functional health food
The purpose of this study was that the optimal hydrolysis conditions of endo- and exo-type enzymes were selected to utilize organic cheese byproducts. Optimal substrate concentration and optimum enzyme ratio were measured by using 4 kinds of endo-type enzymes (alcalase, neutrase, protamex, and foodpro alkaline protease) and two exo-type enzymes (flavourzyme and prozyme 2000P) for whey protein hydrolysis were analyzed using liquid chromatography. As a result, the optimal endo-type enzyme through the first enzyme reaction was selected as alcalse, and as a result of the secondary enzyme reaction, flavourzme was selected as the Exo type enzyme. The concentration of whey protein substrate for optimal primary and secondary enzyme reactions was 10%. In addition, the optimum ratio of enzyme was 0.5% of alcalase and 0.2% of flavourzyme, which showed low molecular weight chromatography pattern compared to 2% of alcalase and 1% of flavourzyme hydrolyzate. Therefore, hydrolyzing the endo-type enzyme alcalase at a concentration of 0.5% for 10 hours and then hydrolyzing the exo-type enzyme flavouryme at a concentration of 0.2% for 4 hours was considered to be the optimum condition.
Oligossaccharides have beneficial effects on the immune system, atopy and skin health according to the prebiotic effect on intestinal microflora. Due to the excellent physiological functions of these oligosaccharides, the demand for prebiotics is rapidly increasing in the world. In this review, it has been shown that galactooligosaccharide( GOS) intake improves skin health and atopic eczema and fructooligosaccharide( FOS) prevent atopic dermatitis in human clinical trials. These results indicate that oligosaccharides are sufficiently applicable as a functional food for improving skin health and skin diseases.