Multifunctional S-Nitroso-N-acetylpenicillamine-Incorporated Medical-Grade Polymer with Selenium Interface for

Arnab Mondal1, Megan Douglass1, Sean P Hopkins1

  • 1School of Chemical, Materials and Biomedical Engineering, College of Engineering , University of Georgia , Athens , Georgia 30602 , United States.

Related Concept Videos

Multifunctional, Micropipette-based Method for Incorporation And Stimulation of Bacterial Mechanosensitive Ion Channels in Droplet Interface Bilayers09:54

Multifunctional, Micropipette-based Method for Incorporation And Stimulation of Bacterial Mechanosensitive Ion Channels in Droplet Interface Bilayers

Bacterial mechanosensitive channels can be used as mechanoelectrical transducers in biomolecular devices. Droplet interface bilayers (DIBs), cell-inspired building blocks to such devices, represent new platforms to incorporate and stimulate mechanosensitive channels. Here, we demonstrate a new micropipette-based method of forming DIBs, allowing the study of mechanosensitive channels under mechanical...
11.2K
Fabricating Superhydrophobic Polymeric Materials for Biomedical Applications09:22

Fabricating Superhydrophobic Polymeric Materials for Biomedical Applications

Two- and three-dimensional superhydrophobic polymeric materials are prepared by electrospinning or electrospraying biodegradable polymers blended with a lower surface energy polymer of similar composition.
19.7K
Synthesis of Cd-free InP/ZnS Quantum Dots Suitable for Biomedical Applications10:56

Synthesis of Cd-free InP/ZnS Quantum Dots Suitable for Biomedical Applications

In this protocol, the synthesis of Cd-free InP/ZnS quantum dots (QDs) is detailed. InP-based QDs are gaining popularity due to the toxicity of Cd2+ ions that may be released through nanoparticle degradation. After synthesis, QDs are solubilized in water using an amphiphilic polymer for use in biomedical...
14.5K
Designing Silk-silk Protein Alloy Materials for Biomedical Applications11:14

Designing Silk-silk Protein Alloy Materials for Biomedical Applications

Blending is an efficient approach to generate biomaterials with a broad range of properties and combined features. By predicting the molecular interactions between different natural silk proteins, new silk-silk protein alloy platforms with tunable mechanical resiliency, electrical response, optical transparency, chemical processability, biodegradability, or thermal stability can be...
18.9K
Generation of Alginate Microspheres for Biomedical Applications10:33

Generation of Alginate Microspheres for Biomedical Applications

In the following sections, we outline procedures for the preparation of alginate microspheres for use in biomedical applications. We specifically illustrate a technique for creating multilayered alginate microspheres for the dual purpose of cell and protein encapsulation as a potential treatment for type 1...
21.7K
High-throughput Identification of Bacteria Repellent Polymers for Medical Devices10:43

High-throughput Identification of Bacteria Repellent Polymers for Medical Devices

A high-throughput microarray method for the identification of polymers which reduce bacterial surface binding on medical devices is...
9.5K