Publication details

Plasma-Processed Bioprinted Chitosan Hydrogels: Enhancing Physicochemical and Antibacterial Properties for Wound Healing

Authors

EZATI Masoumeh MOHAMAD Noor HASHEMI Amir POLASKOVA Katerina NEČAS David ZUMBERG Inna CMIEL Vratislav SOUAWDA Nada SCHAEFER Jan ZAJÍČKOVÁ Lenka

Year of publication 2026
Type Peer-reviewed scientific article
Magazine / Source PLASMA PROCESSES AND POLYMERS
MU Faculty or unit

Faculty of Science

Citation
web https://onlinelibrary.wiley.com/doi/full/10.1002/ppap.70151
Doi https://doi.org/10.1002/ppap.70151
Keywords 3D bioprinting; cell culture; cold atmospheric plasma jet; plasma treatment; reactive oxygen and nitrogen species (RONS)
Attached files
Description Effective wound healing requires scaffolds that can prevent infection and support tissue regeneration. Bioprinted chitosan hydrogels are promising candidates due to their biocompatibility, biodegradability, and tunable properties. To further enhance their functionality, we employed two plasma processing strategies using cold atmospheric pressure plasma jets. The plasma treatment of the chitosan solvent used to prepare the hydrogel markedly enhanced the mechanical strength, thermal stability, and antibacterial characteristics (>= 2-log reduction) of the bioprinted scaffolds, rendering them suitable for applications requiring long-term durability and infection resistance. The plasma treatment of the already printed scaffolds improved surface bioactivity, facilitating enhanced cell adhesion and proliferation, which are essential for tissue regeneration.

You are running an old browser version. We recommend updating your browser to its latest version.

More info