Recent progress on parylene C polymer for biomedical applications: A review

M Golda-Cepa, K Engvall, M Hakkarainen… - Progress in Organic …, 2020 - Elsevier
Parylene C films have numerous advantages. The versatility of parylene C coatings makes
them useful in a broad range of biomedical applications. The coatings are widely used …

Micromachining of Parylene C for bioMEMS

BJ Kim, E Meng - Polymers for Advanced Technologies, 2016 - Wiley Online Library
Recent advances in the micromachining of poly (p‐xylylenes), commercially known as
Parylenes, have enabled the development of novel structures and devices for …

Review of polymer MEMS micromachining

BJ Kim, E Meng - Journal of Micromechanics and …, 2015 - iopscience.iop.org
The development of polymer micromachining technologies that complement traditional
silicon approaches has enabled the broadening of microelectromechanical systems (MEMS) …

[HTML][HTML] Optimization of Parylene C and Parylene N thin films for use in cellular co-culture and tissue barrier models

S Gholizadeh, DM Lincoln, Z Allahyari, LP Widom… - Scientific Reports, 2023 - nature.com
Parylene has been used widely used as a coating on medical devices. It has also been used
to fabricate thin films and porous membranes upon which to grow cells. Porous membranes …

Self-powered, ultrathin, and transparent printed pressure sensor for biosignal monitoring

K Lozano Montero, MM Laurila… - ACS Applied …, 2021 - ACS Publications
Ultrathin sensing devices utilizing piezoelectric materials have emerged as potential
candidates to develop highly skin-conformable and energy-efficient continuous biosignal …

Capillary‐Scale Hydrogel Microchannel Networks by Wire Templating

S Kawara, B Cunningham, J Bezer, N Kc, J Zhu… - Small, 2023 - Wiley Online Library
Microvascular networks are essential for the efficient transport of nutrients, waste products,
and drugs throughout the body. Wire‐templating is an accessible method for generating …

Oxygen plasma functionalization of parylene C coating for implants surface: Nanotopography and active sites for drug anchoring

M Gołda, M Brzychczy-Włoch, M Faryna… - Materials Science and …, 2013 - Elsevier
The effect of oxygen plasma treatment (t= 0.1–60 min, p O2= 0.2 mbar, P= 50 W) of parylene
C implant surface coating was investigated in order to check its influence on morphology …

[HTML][HTML] An organic transistor-based system for reference-less electrophysiological monitoring of excitable cells

A Spanu, S Lai, P Cosseddu, M Tedesco, S Martinoia… - Scientific reports, 2015 - nature.com
In the last four decades, substantial advances have been done in the understanding of the
electrical behavior of excitable cells. From the introduction in the early 70's of the Ion …

Development of SPR biosensor for the detection of human hepatitis B virus using plasma-treated parylene-N film

YH Choi, GY Lee, H Ko, YW Chang, MJ Kang… - Biosensors and …, 2014 - Elsevier
A plasma-treated parylene-N film was presented for the immobilization of proteins through
physical adsorption. The changes in surface properties of the parylene-N film after plasma …

[HTML][HTML] Aerosol Jet® printing of Poly (3, 4-Ethylenedioxythiophene): Poly (Styrenesulfonate) onto micropatterned substrates for neural cells in vitro stimulation

M Seiti, PS Ginestra, RM Ferraro, S Giliani… - … Journal of Bioprinting, 2022 - ncbi.nlm.nih.gov
In neural tissue engineering (NTE), topographical, electrical, mechanical and/or biochemical
stimulations are established methods to regulate neural cell activities in in vitro cultures …