自然杂志 ›› 2025, Vol. 47 ›› Issue (4): 303-315.doi: 10.3969/j.issn.0253-9608.2025.04.008

• 自然科学史 • 上一篇    下一篇

生命如电:从生物电到离子通道

郭晓强,郭贝一   

  1. ①河北体育学院 运动人体科学系,石家庄 050041;②北京体育大学 运动医学与康复学院,北京 100084
  • 收稿日期:2025-04-10 出版日期:2025-08-25 发布日期:2025-07-28

Life is electrical: From bioelectricity to ion channels

GUO Xiaoqiang, GUO Beiyi   

  1. ① Department of Kinesiology, Hebei Sport University, Shijiazhuang 050041, China; ② School of Sports Medicine and Rehabilitation, Beijing Sport University, Beijing 100084, China
  • Received:2025-04-10 Online:2025-08-25 Published:2025-07-28

摘要: 生物电的发现和测量及离子通道机制的阐明揭示了生命过程的基本规律和特征。生物电的早期探索包括1791年伽伐尼发现动物电、19世纪静息电位与动作电位的测量、1902年解释静息电位的膜理论提出和50年后阐述动作电位形成过程的离子学说的发展等重要科学事件。离子通道的存在主要通过膜片钳技术得以证实,并借助结构生物学手段诠释其门控机制(电压、配体、温度和机械力等)和离子选择性(如Na+、K+、Ca2+和Cl-等)的分子基础。离子通道是一类允许离子选择性被动运输的膜孔道蛋白,参与感觉形成、信息加工、肌肉收缩和腺体分泌等众多重要的生物学过程,缺失或功能异常可导致大脑、心脏和肌肉等器官多种疾病的发生。生物电和离子通道研究成果已在临床技术(心电图、人工耳蜗和光遗传学等)和药物治疗(麻醉剂和降压药等)方面得到广泛应用。本文全面阐述从生物电发现到离子通道分子机制阐明的历史过程及相关知识,以加深对该领域的理解和认识。

关键词: 生物电, 动作电位, 离子通道, 门控, 离子选择性

Abstract: The discovery and measurement of bioelectricity, as well as the mechanism elucidation of ion channels, reveal the basic laws and characteristics of life processes. The early researches of bioelectricity involved important historical events such as the Galvani's discovery of the animal electricity in 1791, the measurement of resting and action potentials in the 19th century, the proposal of membrane theory explaining resting potential in 1902, and the development of ion theory explaining the formation process of action potentials 50 years later. The existence of ion channels was confirmed using patch-clamp technology, and the molecular mechanisms of gating (voltage, ligand, temperature and mechanical stress) and ion selectivity (Na+, K+, Ca2+, Cl-) were perfectly interpreted with structural biology methods. Ion channels are a class of membrane pore proteins that allow selective passive transport of ions, participating in many important biological processes such as sensory formation, information processing, muscle contraction, and glandular secretion. Loss or dysfunction of ion channels can lead to various diseases in organs such as the brain, heart and muscles. The knowledge of bioelectricity and ion channels has been widely applied in clinical techniques such as electrocardiography, cochlear implants, and optogenetics, as well as in drug therapies such as anesthetics and anti-hypertensive drugs. This article comprehensively introduces the historical process from the discovery of bioelectricity to the elucidation of ion channels and related knowledge, in order to deepen our understanding and recognition of this field.

Key words: bioelectricity, action potential, ,  , ion channel, gating, ion selectivity