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Meeting 2021 TMS Annual Meeting & Exhibition
Symposium Bio-Nano Interfaces and Engineering Applications
Presentation Title Flexible-glass Like Coating onto PTFE Vascular Graft Material via Nonthermal Plasma Process
Author(s) Vineeth Vijayan, Bernabe S Tucker, Yogesh Vohra, Vinoy Thomas
On-Site Speaker (Planned) Vinoy Thomas
Abstract Scope PTFE is a fluoropolymer that is widely used as a vascular graft substitute in cardiovascular and hemodialysis applications, but only for large- and medium-diameter PTFE vascular grafts. For small-diameter PTFE vascular grafts, there are considerable risks for thrombosis – blood clotting – and a lack of endothelial cell growth and associated intimal hyperplasia. Non-thermal plasma-polymerized hydrophilic glass-like coating provided a blood compatible material interface. Spectral and microscopic analyses were carried out for the coating characterization. The augmented PTFE surfaces demonstrate better endothelial cell adhesion and reduced platelet adhesion without changing the mechanical flexibility of the graft.According to the American Society of Nephrology more than 300,000 Americans have end-stage renal disease and are depending on artificial dialysis to stay alive. In the context of COVID-19, there are increased cases in the number of ICU dialysis patients due to severe kidney infections and blood clots.
Proceedings Inclusion? Planned:
Keywords Biomaterials, Surface Modification and Coatings, Polymers

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Bio-imaging with Photoluminescence of Single-layer MoS2
Control of Scaffold Shear Forces Through a Perfusion Bioreactor for Design of Prostate Cancer Bone Metastasis Testbed
Detection of Limonene Using Graphene Field Effect Transistor Modified by Self-assembling Peptide
Developing Nanostructured Metals for Innovative Medical Implants with Improved Design and Biofunctionality
Enhancing Electrochemical Detection of Choline Using Molecularly Imprinted Polymer Electrode
Flexible-glass Like Coating onto PTFE Vascular Graft Material via Nonthermal Plasma Process
Insight into the Mechanobiological Progression of Cancer Metastasis to Bone
Stickiness at Bio-nano-interfaces: From Nanoscale Characterization to Macroscale Properties
The Mechanical Significance of Sublamellar Organization of Mineralized Collagen Fibrils

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