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Hsieh, M.-j.

Publications and source records attributed to Hsieh, M.-j..

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The Synergistic Effect of Antioxidant Interaction between Luteolin and Chlorogenic Acid in Lonicera japonica

Lonicera japonica Thunb. is a flower that is used in traditional Chinese medicine to prevent the common cold. The two primary active compounds of the flower bud are luteolin, a flavonoid, and chlorogenic acid, a phenolic acid. Both active compounds have demonstrated antioxidant activity. The interactions between chemicals in a plant heavily influences its total antioxidant activity. We attempted to investigate the antioxidant interactions between the two chemicals in the plant. This study aims to investigate if the antioxidants luteolin and chlorogenic acid have a synergistic effect to inhibit free radicals when combined. A 2,2-diphenyl-1-picrylhydrazyl (DPPH*) assay was performed. The half maximal inhibitory concentration (IC50) of luteolin and chlorogenic acid were first determined and then combined at a 1:1 ratio. The combined inhibition capacity was then compared with the sum of the individual inhibition capacities. The IC50 of luteolin is 26.304 g{middle dot}ml-1 {+/-} 0.120 g{middle dot}ml-1 while the IC50 of chlorogenic acid is 85.529 g{middle dot}ml-1 {+/-} 4.482 g{middle dot}ml-1. The combined solution produced a free radical percentage inhibition of 77.617% {+/-} 5.470%, more than the percentage inhibition of the separate solutions. The experiment shows that luteolin and chlorogenic acid have a synergistic effect in inhibiting DPPH free radicals.

biochemistry

Epigallocatechin-3-gallate yield in different temperature gradients in green tea (Camellia sinensis) brewing

IntroductionEpigallocatechin-3-gallate (EGCG) is a chemical catechin, a natural organic compound found in green teas with strong antioxidative effects. EGCG degrades or epimerizes according to temperature, fluctuating its concentration in green tea (Camellia sinensis). This study is conducted to determine the specified correlation between EGCG and tea temperature, and to conclude with the optimal temperature for EGCG yield.\n\nMethodsEGCG concentrations in different solutions of green tea are analyzed using a high-performance liquid chromatography (HPLC), with a diode array detector (DAD). The solutions are created from green tea brewed in water from 20{degrees}C to 100{degrees}C at increments of 20{degrees}C and undergo an ultrasonic bath of 30 minutes before being analyzed.\n\nResultsThere is a discernible difference between EGCG concentrations in all temperatures. At 20, 40, 60, 80 and 100{degrees}C, the concentrations are 6.18 g/mL, 32.37 g/mL, 57.36 g/mL, 36.13 g/mL, and 44.85 g/mL, respectively. EGCG concentration maximizes at 60{degrees}C. The lowest EGCG concentration yield is at 20{degrees}C.\n\nConclusionThe results of our experiments lead us to recommend hot brewing over cold brewing for green tea if one wishes to maximize the potential of the effects of EGCG due to its higher concentration.

plant biology