Comparison of continuous wave and pulsed mode plasma polymerization of glycidol for storage‐stable coatings for biomolecule immobilization

Author:

Chakraborty Argha123ORCID,Jasieniak Marek3,Coad Bryan R.45ORCID,Griesser Hans J.13ORCID

Affiliation:

1. Future Industries Institute University of South Australia Mawson Lakes South Australia Australia

2. Department of Biotechnology, School of Health Science and Translational Research Sister Nivedita University Kolkata West Bengal India

3. Cooperative Research Centre for Cell Therapy Manufacturing Adelaide South Australia Australia

4. School of Agriculture, Food & Wine University of Adelaide Urrbrae South Australia Australia

5. UniSA Clinical & Health Sciences University of South Australia Adelaide South Australia Australia

Abstract

AbstractPlasma polymers from glycidol vapors are of interest for direct covalent grafting of molecules bearing amine or thiol groups. The question of whether pulsed plasma operation might lead to a higher surface density of epoxide groups and a higher density of grafted molecules is studied using the antifungal drug caspofungin. X‐ray photoelectron spectroscopy and Time of flight‐secondary ions mass spectrometry analysis followed by caspofungin grafting revealed that both continuous wave and pulsed plasmas led to surface epoxides but with higher densities upon pulsing. Investigations into stability suggested that glycidol plasma polymer coatings were still able to immobilize caspofungin after 2 years of storage, making them suitable for applications where grafting of molecules needs to be done immediately before usage of a device.

Funder

University of South Australia

Publisher

Wiley

Subject

Polymers and Plastics,Condensed Matter Physics

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