Degradation Kinetics of Chlorogenic Acid at Various pH Values and Effects of Ascorbic Acid and Epigallocatechin Gallate on Its Stability under Alkaline Conditions

Кинетика деградации хлорогеновой кислоты при различных значениях pH и влияние аскорбиновой кислоты и эпигаллокатехин галлата на её стабильность в щелочной среде
Kuniyo Inouye, Yusaku Narita
2013-01-09

5-Caffeoylquinic acid (5-CQA)Weibull equationascorbic acid (AA)caffeic acid (CA)chlorogenic acidconcentration-dependent stabilizationdegradation kineticsepigallocatechin gallate (EGCG)pH dependence (pH 5.0-9.0)rate constant (k)stability enhancement under alkaline conditionstemperature 37 °C
5-Caffeoylquinic acid (5-CQA) is generally referred to as chlorogenic acid and exhibits various biological activities such as antioxidant activity and porcine pancreas α-amylase inhibitory activities. 5-CQA may be useful as an antioxidant for food and to prevent diabetes and obesity. The degradation of 5-CQA and caffeic acid (CA) in an aqueous solution at 37 °C and pH 5.0-9.0 was studied. The degradation of 5-CQA and CA, demonstrating time and pH dependence (i.e., the rate constant, k, was higher at higher pH), was satisfactorily described by the Weibull equation. The stability of 5-CQA at pH 7.4 and 9.0 was improved by adding (-)-epigallocatechin gallate (EGCG) and ascorbic acid (AA). Moreover, the degradation of 5-CQA in the presence of EGCG or AA could be described by the Weibull equation. The k value in the presence of EGCG or AA was dependent on their concentration.
1
5-Caffeoylquinic acid (5-CQA, chlorogenic acid) and caffeic acid (CA) degrade in aqueous solution at 37 °C with rates that increase at higher pH (pH 5.0–9.0).
2
Adding (-)-epigallocatechin gallate (EGCG) or ascorbic acid (AA) improves the stability of 5-CQA at pH 7.4 and 9.0.
3
The degradation of 5-CQA in the presence of EGCG or AA also follows the Weibull equation, with the rate constant k dependent on EGCG or AA concentration.
4
The time- and pH-dependent degradation kinetics of 5-CQA and CA are well described by the Weibull equation.

5-Caffeoylquinic acid (chlorogenic acid) and caffeic acid in aqueous solution at 37 °C across pH 5.0–9.0, including systems with added (-)-epigallocatechin gallate (EGCG) and ascorbic acid (AA)

Degradation kinetics and pH-dependent stability (rate constants described by the Weibull equation) of 5-CQA and CA, and the stabilizing effects and concentration dependence of EGCG and AA under alkaline conditions

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2013-01-09
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Kuniyo Inouye
Yusaku Narita
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