Open Access System for Information Sharing

Login Library

 

Article
Cited 30 time in webofscience Cited 35 time in scopus
Metadata Downloads

Isoliquiritigenin selectively inhibits H-2 histamine receptor signaling SCIE SCOPUS

Title
Isoliquiritigenin selectively inhibits H-2 histamine receptor signaling
Authors
Kim, DCChoi, SYKim, SHYun, BSYoo, IDReddy, NRPYoon, HSKim, KT
Date Issued
2006-08
Publisher
AMER SOC PHARMACOLOGY EXPERIMENTAL TH
Abstract
Isoliquiritigenin, one of the major constituents of Glycyrrhiza uralensis (licorice), is a natural pigment with a simple chalcone structure 4,2',4'-trihydroxychalcone. In this study, isoliquiritigenin showed selective H 2 histamine receptor ( H 2 R) antagonistic effect and remarkably reduced several H2R-mediated physiological responses. Preincubation of U937 and HL60 hematopoietic cells with isoliquiritigenin significantly inhibited H2R agonist-induced cAMP response in a concentration-dependent manner without affecting the viability of cells. Isoliquiritigenin also blocked the binding affinity of [H-3] tiotidine to membrane receptors in HL-60 cells. Isoliquiritigenin did not affect the elevation of cAMP levels induced by cholera toxin, forskolin, or isoproterenol, indicating that the action site of isoliquiritigenin is not G(s) protein, effector enzyme, adenylyl cyclase, or beta 2-adrenoceptor. Isoliquiritigenin affected neither H1R- nor H3R-mediated signaling. In molecular docking studies, isoliquiritigenin exhibited more favorable interactions with H2R than histamine. Isoliquiritigenin prominently inhibited H2R selective agonist dimaprit-induced cAMP generation in MKN-45 gastric cancer cell. Moreover, isoliquiritigenin reduced gastric acid secretion and protected gastric mucosal lesion formation in pylorus-ligated rat model. Taken together, the results demonstrate that isoliquiritigenin is an effective H2R antagonist and provides the basis for designing novel H2R antagonist.
Keywords
CELL-LINE MKN-45; EXPRESSION; LICORICE; HISTAMINE-H2-RECEPTOR; DIFFERENTIATION; H-2-RECEPTOR; MODULATION; SECRETION; RESPONSES
URI
https://oasis.postech.ac.kr/handle/2014.oak/23917
DOI
10.1124/mol.106.023226
ISSN
0026-895X
Article Type
Article
Citation
MOLECULAR PHARMACOLOGY, vol. 70, no. 2, page. 493 - 500, 2006-08
Files in This Item:
There are no files associated with this item.

qr_code

  • mendeley

Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.

Related Researcher

Researcher

김경태KIM, KYONG TAI
Dept of Life Sciences
Read more

Views & Downloads

Browse