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精油成分作为理解离子通道分子药理学的新途径。

Essential oils components as a new path to understand ion channel molecular pharmacology.

机构信息

Laboratório de Tecnologia Farmacêutica, Universidade Federal da Paraíba, João Pessoa, PB, Brazil.

出版信息

Life Sci. 2011 Oct 10;89(15-16):540-4. doi: 10.1016/j.lfs.2011.04.020. Epub 2011 May 19.

Abstract

The discovery and development of new drugs targeting voltage-gated ion channels are important for treating a variety of medical conditions and diseases. Ion channels are molecular nanostructures expressed ubiquitously throughout the whole body, and are involved in many basic physiological processes. Over the years, natural products have proven useful in the pharmacological assessment of ion channel structure and function, while also contributing to the identification of lead molecules for drug development. Essential oils are complex chemical mixtures isolated from plants which may possess a large spectrum of biological activities most of them of clinical interest. Among their bioactive constituents, terpenes are small to medium-sized components and belong to different chemical groups. Various reports have drawn our attention to the fact that terpenes are novel compounds targeting voltage-gated ion channels. The purpose of this review is to provide a focused discussion on the molecular interaction between monoterpenes and phenylpropenes with voltage-gated ion channels in different biological scenarios.

摘要

新型靶向电压门控离子通道药物的发现和研制对于治疗多种医学病症具有重要意义。离子通道作为一种广泛表达于全身的分子纳米结构,参与了许多基本的生理过程。多年来,天然产物在离子通道结构和功能的药理学评估中已被证明是有用的,同时也为药物开发的先导分子的鉴定做出了贡献。精油是从植物中分离出来的复杂化学混合物,可能具有广泛的生物活性,其中大多数具有临床意义。在它们的生物活性成分中,萜类化合物是小到中等大小的成分,属于不同的化学基团。各种报告引起了我们的注意,萜类化合物是针对电压门控离子通道的新型化合物。本综述的目的是集中讨论单萜类化合物和苯丙素类化合物与不同生物学环境下电压门控离子通道的分子相互作用。

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