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- W2018249016 abstract "Abstract With the successful development of methods for the isolation and purification of ethanol-insoluble cinnamic acid esters in mint it became possible to initiate kinetic, isotopic studies on purified, ‘insoluble’ derivatives of caffeic acid, ferulic acid and p -coumaric acid. Pulse-feeding experiments were conducted with 14 CO 2 , phenylalanine-U- 14 C and cinnamic acid-3- 14 C. The ferulic acid derivative exhibited a significant turnover as compared to the other insoluble derivatives which were relatively stable. Time-course tracer studies were performed to compare the turnover of soluble caffeic acid derivatives with ‘insoluble’ forms of caffeic acid. Caffeic acid associated with a macromolecular fraction consistently showed a higher specific activity than either soluble caffeic acid or the caffeic acid associated with a second insoluble derivative." @default.
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- W2018249016 title "Incorporation of 14CO2, 14C-phenylalanine and 14C-cinnamate into soluble and insoluble cinnamic derivatives in Mentha arvensis" @default.
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- W2018249016 doi "https://doi.org/10.1016/s0031-9422(00)91345-1" @default.
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