BBB Device V2 Design


I designed new masks with different sized squares and slits in order to study how the aspect ratio of free-standing membranes would affect endothelial cells. In this 1st experiment, I seeded bEnd at 50000 cells/cm2 and let them grow for 4 days. I then stained the cells with Live/Dead and overlaid the phase channel in…
Hello everyone! this post describes how we are going about determining the size cut-off of the membranes we make through nanosphere lithography. These are 120 nm thick silicon nitride membranes with controlled pore size between 320 and 80 nm. A polymeric scaffold is placed on them to increase robustness. The scaffold is a square grid…
As I mentioned in my previous post, there are a lot of problems associated with the technique for testing the ability of a CytoVu assembly to act as an assay that I had been trying to use before. Several possible sources of error were apparent, such as the difficulty inherent in consistently pipetting such small…
For the first time, we did time-lapse phase microscopy (1 frame / 5 seconds) looking at endothelial cells through the ITO in the static BBB device (device A bottom left well) and measuring the TEER concurrently. Here’s the video, just shy of 15 minutes of recording. (reporting a low resistance: 5-10 ohms, shorted). TEER Test…
This is the second installment in a series of posts focused on the development of a method for measuring barrier permeability in the µSiM. In Part 1 we discussed the goal of making these measurements in situ at a position beneath the membrane. Because our preference is to use the trench down configuration in the…
To determine whether cell proliferation is a function of membrane porosity and/or pore size, human umbilical vein endothelial cells (HUVECs) were cultured on various surfaces. The cells were seeded on low and high porosity membranes of 0.5 um and 3.0 um pore sizes. Non-porous membranes served as control membranes. All membranes were coated with Geltrex…