Chlorogenic acids and the acyl-quinic acids: discovery, biosynthesis, bioavailability and bioactivity

Хлорогеновые кислоты и ацилхиновые кислоты: открытие, биосинтез, биодоступность и биологическая активность
Alan Crozier, Michael N. Clifford, Indu Bala Jaganath, Iziar A. Ludwig
2017-01-01

NMR and MS characterizationacyl-quinic acidsbioavailability and metabolismbiosynthesischlorogenic acids
Covering: 2000 up to late 2017This review is focussed upon the acyl-quinic acids, the most studied group within the ca. 400 chlorogenic acids so far reported. The acyl-quinic acids, the first of which was characterised in 1846, are a diverse group of plant-derived compounds produced principally through esterification of an hydroxycinnamic acid and 1l-(-)-quinic acid. Topics addressed in this review include the confusing nomenclature, quantification and characterisation by NMR and MS, biosynthesis and role in planta, and the occurrence of acyl-quinic acids in coffee, their transformation during roasting and delivery to the beverage. Coffee is the major human dietary source world-wide of acyl-quinic acids and consideration is given to their absorption and metabolism in the upper gastrointestinal tract, and the colon where the microbiota play a key role in the formation of catabolites. Evidence on the potential of the in vivo metabolites and catabolites of acyl-quinic acids to promote the consumer's health is evaluated.
1
Absorption and metabolism occur in the upper gastrointestinal tract and colon, where microbiota generate catabolites whose potential health effects are evaluated.
2
Acyl-quinic acids are diverse plant-derived compounds formed principally by esterification of hydroxycinnamic acids with 1L-(-)-quinic acid.
3
Coffee is identified as the major worldwide dietary source, with roasting transforming acyl-quinic acids and influencing their delivery into beverages.
4
The review focuses on acyl-quinic acids, the most extensively studied subgroup among approximately 400 reported chlorogenic acids.
5
The review synthesizes methods for nomenclature, quantification, structural characterization by NMR and MS, biosynthesis, and roles in plants.

Plant-derived acyl-quinic acids, including their occurrence in coffee and their transformation, absorption, metabolism, and catabolism in humans

The discovery, nomenclature, characterization, biosynthesis, roles in planta, bioavailability, gastrointestinal and microbial transformation, and health-related bioactivity of acyl-quinic acids and their metabolites

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2017-01-01
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Alan Crozier
Michael N. Clifford
Indu Bala Jaganath
Iziar A. Ludwig
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