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新型类二十烷酸途径:前列环素/6-酮前列腺素F1α和肝氧二十碳三烯酸的发现。

Novel eicosanoid pathways: the discovery of prostacyclin/6-keto prostaglandin F1alpha and the hepoxilins.

作者信息

Pace-Asciak Cecil R

机构信息

Research Institute, The Hospital for Sick Children, Programme in Integrative Biology, Toronto, Ontario, Canada M5G1X8.

出版信息

Mol Neurobiol. 2005 Aug;32(1):19-26. doi: 10.1385/mn:32:1:019.

Abstract

This article reviews a lecture I was honored to present at the Leon Wolfe Symposium in Montreal on March 25, 2004. The lecture described my research career, which started with my interaction with Wolfe at the Montreal Neurological Institute as a postdoctoral fellow and research associate and was followed by additional research discoveries after I left Montreal for my first academic position at the Research Institute, The Hospital for Sick Children and University of Toronto. The article consists of two parts. The first part involves the discovery (in Wolfe's laboratory) of a new pathway of arachidonic acid, in which a bicyclic prostanoid structure (later called prostacyclin by John Vane and his group) was described, and its further development in Toronto, which led to the discovery of the conversion of the bicyclic prostanoid into 6-keto prostaglandin F1alpha. The second part deals with the hepoxilin pathway, a pathway I discovered during a sabbatical leave in Japan with Professor Shozo Yamamoto, which was followed by a stay of several months in the laboratory of Professor Bengt Samuelsson in Sweden. I deal with the historical aspects of both pathways and end with interesting novel aspects of hepoxilin stable antagonist analogs in the treatment of solid tumors in experimental animals.

摘要

本文回顾了我有幸于2004年3月25日在蒙特利尔的利昂·沃尔夫研讨会上发表的一次演讲。该演讲讲述了我的研究历程,始于我在蒙特利尔神经学研究所作为博士后研究员和研究助理与沃尔夫的合作,之后在我离开蒙特利尔前往多伦多病童医院和多伦多大学的研究所担任首个学术职位后又有了更多研究发现。本文由两部分组成。第一部分涉及(在沃尔夫实验室)发现花生四烯酸的一条新途径,其中描述了一种双环前列腺素结构(后来约翰·范恩及其团队将其称为前列环素),以及它在多伦多的进一步发展,这导致了双环前列腺素转化为6-酮前列腺素F1α的发现。第二部分涉及hepoxilin途径,这是我在日本与山本庄三教授休假期间发现的一条途径,之后我在瑞典本特·萨缪尔森教授的实验室待了几个月。我论述了这两条途径的历史方面,并以hepoxilin稳定拮抗剂类似物在实验动物实体瘤治疗中的有趣新进展作为结尾。

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