論文

査読有り
2011年4月

Intraluminal administration of zingerol, a non-pungent analogue of zingerone, inhibits colonic motility in rats

BIOMEDICAL RESEARCH-TOKYO
  • Momoe Iwami
  • ,
  • Takahiko Shiina
  • ,
  • Haruko Hirayama
  • ,
  • Yasutake Shimizu

32
2
開始ページ
181
終了ページ
185
記述言語
英語
掲載種別
研究論文(学術雑誌)
DOI
10.2220/biomedres.32.181
出版者・発行元
BIOMEDICAL RESEARCH PRESS LTD

Zingerone, a pungent component of ginger, may exert beneficial therapeutic effects on hypermotility-induced diarrhea because it has the ability to inhibit contractions of colonic smooth muscles. However, the pungency is undesirable for possible therapeutic use. The purpose of this study was to examine effects of zingerol, a non-pungent analogue of zingerone, in rats. Colonic motility in vivo was evaluated by measuring intraluminal pressure changes and expelled fluid volume from the colon in anesthetized rats. Mechanical contractile activities of isolated colonic segments were also recorded. Intracolonic administration of zingerol attenuated colonic motility in vivo without affecting blood pressure and heart rate in a manner similar to that of zingerone. Zingerol also inhibited spontaneous contractile movements in isolated colonic segments, suggesting that zingerol directly acts on the colon. Zingerol had no effect on jejunal motility, although zingerone showed an inhibitory effect to the jejunum. These findings suggest that zingerol can inhibit colonic motility without adverse effects on small intestinal motility and the cardiovascular system. The non-pungent property of zingerol will be useful as an oral or suppository medicine for treating diarrhea and other gastrointestinal disorders.

リンク情報
DOI
https://doi.org/10.2220/biomedres.32.181
PubMed
https://www.ncbi.nlm.nih.gov/pubmed/21551955
Web of Science
https://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcAuth=JSTA_CEL&SrcApp=J_Gate_JST&DestLinkType=FullRecord&KeyUT=WOS:000289958400013&DestApp=WOS_CPL
ID情報
  • DOI : 10.2220/biomedres.32.181
  • ISSN : 0388-6107
  • PubMed ID : 21551955
  • Web of Science ID : WOS:000289958400013

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