Mironova Galina Yu, Kowalewska Paulina M, El-Lakany Mohammed, Tran Cam Ha T, Sancho Maria, Zechariah Anil, Jackson William F, Welsh Donald G
Department of Physiology and Pharmacology, Robarts Research Institute, Schulich School of Medicine and Dentistry, University of Western Ontario, London, Ontario, Canada.
Department of Pharmacology and Toxicology, Faculty of Pharmacy, Alexandria University, Alexandria, Egypt.
Physiol Rev. 2024 Jan 1;104(1):33-84. doi: 10.1152/physrev.00035.2022. Epub 2023 Jul 6.
Biological tissues are fed by arterial networks whose task is to set blood flow delivery in accordance with energetic demand. Coordinating vasomotor activity among hundreds of neighboring segments is an essential process, one dependent upon electrical information spreading among smooth muscle and endothelial cells. The "conducted vasomotor response" is a functional expression of electrical spread, and it is this process that lies at the heart of this critical review. Written in a narrative format, this review first highlights historical manuscripts and then characterizes the conducted response across a range of preparations. Trends are highlighted and used to guide subsequent sections, focused on cellular foundations, biophysical underpinnings, and regulation in health and disease. Key information has been tabulated; figures reinforce grounding concepts and reveal a framework within which theoretical and experimental work can be rationalized. This summative review highlights that despite 30 years of concerted experimentation, key aspects of the conducted response remain ill defined. Of note is the need to rationalize the regulation and deterioration of conduction in pathobiological settings. New quantitative tools, along with transgenic technology, are discussed as a means of propelling this investigative field forward.
生物组织由动脉网络供血,动脉网络的任务是根据能量需求来调节血流供应。协调数百个相邻节段间的血管舒缩活动是一个至关重要的过程,该过程依赖于在平滑肌细胞和内皮细胞之间传播的电信号信息。“传导性血管舒缩反应”是电信号传播的一种功能性表现,而正是这一过程构成了本篇重要综述的核心内容。本综述采用叙述形式,首先着重介绍了历史文献,然后描述了一系列实验准备中的传导性反应。文中突出了一些趋势,并用于指导后续章节,这些章节聚焦于细胞基础、生物物理学基础以及健康和疾病状态下的调节机制。关键信息已制成表格;图表强化了基础概念,并揭示了一个能使理论和实验工作合理化的框架。这篇总结性综述强调,尽管经过30年的协同实验,但传导性反应的关键方面仍未明确界定。值得注意的是,有必要在病理生物学环境中使传导的调节和退化合理化。文中讨论了新的定量工具以及转基因技术,作为推动这一研究领域向前发展的手段。