Author: Shayan Gholizadeh

Parylene Nanopockets using Nanosphere Lithography

This initial aim of this project was to obtain “pockets” with sub-100nm pores, while the top opening is much larger. Dr. Carter is the mastermind behind this project. The following simple fabrication process diagram explains the current approach. After initial

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Thickness and pore-size selectivity of neutrophil transmigration: Which membrane parameters matter and how would they affect transmigration?

  Continuing the studies on neutrophil transmigration in devices with embedded parylene membranes of different pore sizes and thicknesses, three pore sizes (1.0 um, 1.4 um and 1.7 um) and two thicknesses (0.7 um and 1.2 um) were used for

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Neutrophil transmigration through Parylene membranes

Tom came up with this idea of using these membrane with precise thickness and pore size control to obtain a critical thickness and pore size, beyond which neutrophils cannot go transmigrate. N-Formylmethionyl-leucyl-phenylalanine (fMLP) was used in the lower channel to

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Highly porous Parylene membranes with precise control over pore size using a single mask

Parylene-C is a biocompatible, inert, FDA-approved and nondegradable material, which can be used to fabricate mechanically robust thin membranes. Parylene is used in the medical device industry for coating implantable devices and in the microelectronics industry as insulator. Furthermore, it

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BMES 2018: Organ on a chip and cell-ECM interactions

Adeel and I summarized our key takeaways from the BMES in this post. I personally tried to attend organ on a chip talks and posters, which included a micro- or nano-porous membrane or a micro/nano-structured co-culture system. I tried to

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Preliminary tests on Parylene-C membranes

As the first phase of my thesis, I have been working on parylene C membranes as potential easy-to-make thin polymeric membranes for blood brain barrier models following Dr. Carter’s works. The initial goal is to create membranes with different thicknesses

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