Myography of isolated blood vessels: Considerations for experimental design and combination with supplementary techniques

Front Physiol. 2023 Apr 24:14:1176748. doi: 10.3389/fphys.2023.1176748. eCollection 2023.

Abstract

The study of the mechanisms of regulation of vascular tone is an urgent task of modern science, since diseases of the cardiovascular system remain the main cause of reduction in the quality of life and mortality of the population. Myography (isometric and isobaric) of isolated blood vessels is one of the most physiologically relevant approaches to study the function of cells in the vessel wall. On the one hand, cell-cell interactions as well as mechanical stretch of the vessel wall remain preserved in myography studies, in contrast to studies on isolated cells, e.g., cell culture. On the other hand, in vitro studies in isolated vessels allow control of numerous parameters that are difficult to control in vivo. The aim of this review was to 1) discuss the specifics of experimental design and interpretation of data obtained by myography and 2) highlight the importance of the combined use of myography with various complementary techniques necessary for a deep understanding of vascular physiology.

Keywords: artery; endothelium; innervation; intracellular calcium; membrane potential; myography; smooth muscle.

Publication types

  • Review

Grants and funding

This work was supported by Russian Science Foundation (grant No 21-75-10036).