🐣 Our April issue is online today!

This month's cover highlights an article on #ShearStress control of vascular leaks and #atheromas.

Also in this issue: articles on #BreastCancer, #NeuralStemCells, #PrematureOvarianInsufficiency, #Psoriasis, #CLN1, & much more!

🗞️ Fully #openaccess: https://www.embopress.org/toc/17574684/2023/15/4

High-throughout (50) high-res (<1.9 µm/px) blood flow imaging of whole #Zebrafish 2-6 dpf

Geometry
Velocity
Hematocrit
Viscosity
#ShearStress

Visualize the devepmental correlation b/w flow & vascular hierarchy🤩

Dr. Li-Kun Phng lab Front Physiol 2022
https://www.frontiersin.org/articles/10.3389/fphys.2022.881929/full

A systematic map for zebrafish developmental hemodynamics🤓

"stratification order of median levels of WSSpeak b/w vessel types was maintained in the anterior half... the posterior half had a different WSSpeak hierarchy...b/w 6 & 2 dpf"

#Biomechanics in vascular morphogenesis

High-Throughput Imaging of Blood Flow Reveals Developmental Changes in Distribution Patterns of Hemodynamic Quantities in Developing Zebrafish

Mechanical forces from blood flow and pressure (hemodynamic forces) contribute to the formation and shaping of the blood vascular network during embryonic development. Previous studies have demonstrated that hemodynamic forces regulate signaling and gene expression in endothelial cells that line the inner surface of vascular tubes, thereby modifying their cellular state and behavior. Given its important role in vascular development, we still know very little about the quantitative aspects of hemodynamics that endothelial cells experience due to the difficulty in measuring forces in vivo. In this study, we sought to determine the magnitude of wall shear stress (WSS) exerted on ECs by blood flow in different vessel types and how it evolves during development. Utilizing the zebrafish as a vertebrate model system, we have established a semi-automated high-throughput fluorescent imaging system to capture the flow of red blood cells in an entire zebrafish between 2- and 6-day post-fertilization (dpf). This system is capable of imaging up to 50 zebrafish at a time. A semi-automated analysis method was developed to calculate WSS in zebrafish trunk vessels. This was achieved by measuring red blood cell flow using particle tracking velocimetry analysis, generating a custom-made script to measure lumen diameter, and measuring local tube hematocrit levels to calculate the effective blood viscosity at each developmental stage. With this methodology, we were able to determine WSS magnit...

Frontiers

Laminar #ShearStress reduces plasma leakage and #atheroma formation in atheroprotected regions of the aorta through downstream polarization and endocytosis of VE-PTP and resultant activation of #Tie2. #Atherosclerosis can be suppressed by inhibition of VE-PTP in atheroprone regions that lack VE-PTP sequestration.

By D. McDonald, D. Vestweber & colleagues at MPI for molecular biomedicine & UCSFCancer

🗞️ https://doi.org/10.15252/emmm.202216128

5-channel (separated by microposts) #Microfluidic for #EndothelialCell-#Pericyte fibrin-
collagen co-culture

Human Lung fibroblast as feeder

Enable study of Synergy b/w #ShearStress & Pericyte on #SproutingAngiogenesis😁

Dr. Ryuji Yokokawa lab, Lab on a chip 2022

In the #2D #elasticity, #equilibrium of #stresses can be represented on an infinitesimal rectangular element with components of both #DirectStress and #ShearStress generally acting on all four edges. If you were to rotate the rectangle, the stresses change in a precisely orchestrated fashion. In the orientation where the shear stress components vanish, we get what are called #PrincipalStresses and they and their directions can be ascertained precisely through #eigenvalue analysis... 1/2