Study of Arachidonic Acid Pathway in Human Bladder Tumor

Recent epidemiological studies and animal experiments have demonstrated that nonsteroidal anti-inflammatory drugs (NSAIDs) reduce the incidence of colorectal carcinoma. Cyclooxygenase (COX) is the principal target of NSAIDs. COX is the first oxidase in the process of prostaglandin production from ar...

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Main Authors: Masahide Matsuyama, Rikio Yoshimura
Format: Article
Language:English
Published: SAGE Publishing 2009-12-01
Series:Substance Abuse: Research and Treatment
Online Access:http://la-press.com/study-of-arachidonic-acid-pathway-in-human-bladder-tumor-a1774
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spelling doaj-47ec6223e9f14f3ebb1ea7c30560dc0d2021-04-02T13:29:58ZengSAGE PublishingSubstance Abuse: Research and Treatment1178-22182009-12-012009399107Study of Arachidonic Acid Pathway in Human Bladder TumorMasahide MatsuyamaRikio YoshimuraRecent epidemiological studies and animal experiments have demonstrated that nonsteroidal anti-inflammatory drugs (NSAIDs) reduce the incidence of colorectal carcinoma. Cyclooxygenase (COX) is the principal target of NSAIDs. COX is the first oxidase in the process of prostaglandin production from arachidonic acid. COX enzyme may be involved in the initiation and/or the promotion of tumorigenesis due to NSAIDs inhibition of COX. Lipoxygenase (LOX) is also an initial enzyme in the pathway for producing leukotrienes from arachidonic acid. Similar to COX, LOX enzyme may also be involved in the initiation and/or promotion of tumorigenesis. Peroxisome proliferator activator-receptor (PPAR)-γ is a ligand-activated transcriptional factor belonging to the steroid receptor superfamily. PPAR-γ plays a role in both adipocyte differentiation and tumorigenesis. PPAR-γ is one target for cell growth modulation of NSAIDs. In this review, we report the expression of COX-2, LOX and PPAR-γ in human bladder tumor tissues as well as the effects of COX-2 and LOX inhibitors and PPAR-γ ligand. http://la-press.com/study-of-arachidonic-acid-pathway-in-human-bladder-tumor-a1774
collection DOAJ
language English
format Article
sources DOAJ
author Masahide Matsuyama
Rikio Yoshimura
spellingShingle Masahide Matsuyama
Rikio Yoshimura
Study of Arachidonic Acid Pathway in Human Bladder Tumor
Substance Abuse: Research and Treatment
author_facet Masahide Matsuyama
Rikio Yoshimura
author_sort Masahide Matsuyama
title Study of Arachidonic Acid Pathway in Human Bladder Tumor
title_short Study of Arachidonic Acid Pathway in Human Bladder Tumor
title_full Study of Arachidonic Acid Pathway in Human Bladder Tumor
title_fullStr Study of Arachidonic Acid Pathway in Human Bladder Tumor
title_full_unstemmed Study of Arachidonic Acid Pathway in Human Bladder Tumor
title_sort study of arachidonic acid pathway in human bladder tumor
publisher SAGE Publishing
series Substance Abuse: Research and Treatment
issn 1178-2218
publishDate 2009-12-01
description Recent epidemiological studies and animal experiments have demonstrated that nonsteroidal anti-inflammatory drugs (NSAIDs) reduce the incidence of colorectal carcinoma. Cyclooxygenase (COX) is the principal target of NSAIDs. COX is the first oxidase in the process of prostaglandin production from arachidonic acid. COX enzyme may be involved in the initiation and/or the promotion of tumorigenesis due to NSAIDs inhibition of COX. Lipoxygenase (LOX) is also an initial enzyme in the pathway for producing leukotrienes from arachidonic acid. Similar to COX, LOX enzyme may also be involved in the initiation and/or promotion of tumorigenesis. Peroxisome proliferator activator-receptor (PPAR)-γ is a ligand-activated transcriptional factor belonging to the steroid receptor superfamily. PPAR-γ plays a role in both adipocyte differentiation and tumorigenesis. PPAR-γ is one target for cell growth modulation of NSAIDs. In this review, we report the expression of COX-2, LOX and PPAR-γ in human bladder tumor tissues as well as the effects of COX-2 and LOX inhibitors and PPAR-γ ligand.
url http://la-press.com/study-of-arachidonic-acid-pathway-in-human-bladder-tumor-a1774
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