Tag: cell culture

Cell growth in micovasculature mimetic device

I am trying to grow HUVECs under flow in my device to establish a tight and confluent monolayer for TEER analysis. My device schematic looks like this and the whole setup is as below I tried to use the NPN

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Creating Endothelial Cells from Adipose-Derived Stem Cells

In conducting experiments to address reviewer comments, we again created endothelial-like cells from adipose derived stem cells (ADSCs). As in the past, the vast majority of ADSCs express some CD31 (PECAM-1) after culture in endothelial media (M200) supplemented with 50ng/mL

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HUVEC spreading on various microporous SiO2 membranes

This is part of our work studying how cells adhere, spread and proliferate on varying pore size/porosity SiO2 membranes. This post will be a qualitative look at how HUVEC spread over membranes by staining for actin filaments. In a future

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Vacuole formation on Nitride

Barrett had discovered that growing endothelial cells on pnc-si or tranwells causes vacuoles to form. The vacuoles on pnc-si formed only on the free standing areas of the membrane where there are open pores. The background on pnc-si chips showed

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Maximum stability in cell culture conditions

This experiment was carried out to determine the maximum life of pnc-Si in cell culture conditions based on discoloration. All the discoloration slowing factors were put together to see how long would the membranes last for. These include: samples in

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Day4:Cell Adhesion/Spreading/Growth (Trial 3)

After four days of this ongoing HUVEC culture in pncSi transwell, HUVECs look much better than before. Here I have freshly stained them with Calcein AM and we can see how bright it is in comparison to CMFDA stained cells

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Day2:Cell Adhesion (Trial 3)

On Day 2 of cell growth from trial 3 of adhesion study, cells looked much more spread out but less in density. Most of the cells were observed to have concentrated near the edge of the pnc-Si chip near the

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Cell Adhesion (Trial 3)

Samples (no RTP) from W673 and W684 were taken (four from each wafer; with atleast one blank chip) in Sepcons and HUVECs were plated @ ~19,000 cells/sq. cm. density. Cells were allowed to adhere for over 4 hours and this

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Contact Angle Study

According to recent cell adhesion studies on aminosilanized pncSi, no significant difference between adherence to the silanized and non-silanized surfaces was found. This could have been due to the adsorption of protein from the cell growth media onto the surface

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Cell Adhesion Study (Trial 2)

I repeated the previous experiment, this time plating slightly higher density of cells: ~15100 cells/sq.cm. Samples were from the same W673, no RTP) After counting the cells stained using Calcein AM, % Adhesion w.r.t the cells plated were found to

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