A Review of Functional Analysis of Endothelial Cells in Flow Chambers
Overview
Affiliations
The vascular endothelial cells constitute the innermost layer. The cells are exposed to mechanical stress by the flow, causing them to express their functions. To elucidate the functions, methods involving seeding endothelial cells as a layer in a chamber were studied. The chambers are known as parallel plate, T-chamber, step, cone plate, and stretch. The stimulated functions or signals from endothelial cells by flows are extensively connected to other outer layers of arteries or organs. The coculture layer was developed in a chamber to investigate the interaction between smooth muscle cells in the middle layer of the blood vessel wall in vascular physiology and pathology. Additionally, the microfabrication technology used to create a chamber for a microfluidic device involves both mechanical and chemical stimulation of cells to show their dynamics in in vivo microenvironments. The purpose of this study is to summarize the blood flow (flow inducing) for the functions connecting to endothelial cells and blood vessels, and to find directions for future chamber and device developments for further understanding and application of vascular functions. The relationship between chamber design flow, cell layers, and microfluidics was studied.
Biomechanical Study and Analysis for Cardiovascular/Skeletal Materials and Devices.
Qiao A, Du T, Yang H, Mu Y J Funct Biomater. 2023; 14(8).
PMID: 37623643 PMC: 10456227. DOI: 10.3390/jfb14080398.
Integration of immune cells in organs-on-chips: a tutorial.
van Os L, Engelhardt B, Guenat O Front Bioeng Biotechnol. 2023; 11:1191104.
PMID: 37324438 PMC: 10267470. DOI: 10.3389/fbioe.2023.1191104.
Microfluidic platform for the reproduction of hypoxic vascular microenvironments.
Takahashi N, Yoshino D, Sugahara R, Hirose S, Sone K, Rieu J Sci Rep. 2023; 13(1):5428.
PMID: 37012295 PMC: 10070331. DOI: 10.1038/s41598-023-32334-9.