Article

Identification of beer bitter acids regulating mechanisms of gastric acid secretion.

Department of Nutritional and Physiological Chemistry, University of Vienna, Althanstrasse 14 (UZA II), A-1090 Vienna, Austria.
Journal of Agricultural and Food Chemistry (impact factor: 2.82). 02/2012; 60(6):1405-12. DOI:10.1021/jf204306z pp.1405-12
Source: PubMed

ABSTRACT Beer, one of the most consumed beverages worldwide, has been shown to stimulate gastric acid secretion. Although organic acids, formed by fermentation of glucose, are known to be stimulants of gastric acid secretion, very little is known about the effects of different types of beer or the active constituents thereof. In the present study, we compared the effects of different beers on mechanisms of gastric acid secretion. To investigate compound-specific effects on mechanisms of gastric acid secretion, organic acids and bitter compounds were quantified by HPLC-DAD and UPLC-MS/MS and tested in human gastric cancer cells (HGT-1) by means of a pH-sensitive fluorescent dye which determines the intracellular pH as an indicator of proton secretion. The expression of relevant genes, coding the H(+)/K(+)-ATPase, ATP4A, the histamine receptor, HRH2, the acetylcholine receptor, CHRM3, and the somatostatin receptor, SSTR2, was determined by qPCR. Ethanol and the organic acids succinic acid, malic acid, and citric acid were demonstrated to contribute to some extent to the effect of beer. The bitter acids comprising α-, β-, and iso-α-acids were identified as potential key components promoting gastric acid secretion and up-regulation of CHRM3 gene expression by a maximum factor of 2.01 compared to that of untreated control cells with a correlation to their respective bitterness.

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Keywords

acetylcholine receptor
 
bitter acids
 
bitter compounds
 
CHRM3 gene expression
 
citric acid
 
compound-specific effects
 
consumed beverages
 
different beers
 
gastric acid secretion
 
histamine receptor
 
human gastric cancer cells
 
malic acid
 
organic acids
 
organic acids succinic acid
 
pH-sensitive fluorescent dye
 
potential key components
 
relevant genes
 
somatostatin receptor
 
stimulate gastric acid secretion
 
untreated control cells
 

Jessica Walker