Open Access
Open access
Nanomaterials, volume 12, issue 19, pages 3397

Possible Synergies of Nanomaterial-Assisted Tissue Regeneration in Plasma Medicine: Mechanisms and Safety Concerns

Priyanka Shaw 1
Patrick Vanraes 1
Naresh Kumar 2
2
 
Department of Medical Devices, National Institute of Pharmaceutical Education and Research, Guwahati 781125, Assam, India
Publication typeJournal Article
Publication date2022-09-28
Journal: Nanomaterials
scimago Q1
SJR0.798
CiteScore8.5
Impact factor4.4
ISSN20794991
PubMed ID:  36234523
General Chemical Engineering
General Materials Science
Abstract

Cold atmospheric plasma and nanomedicine originally emerged as individual domains, but are increasingly applied in combination with each other. Most research is performed in the context of cancer treatment, with only little focus yet on the possible synergies. Many questions remain on the potential of this promising hybrid technology, particularly regarding regenerative medicine and tissue engineering. In this perspective article, we therefore start from the fundamental mechanisms in the individual technologies, in order to envision possible synergies for wound healing and tissue recovery, as well as research strategies to discover and optimize them. Among these strategies, we demonstrate how cold plasmas and nanomaterials can enhance each other’s strengths and overcome each other’s limitations. The parallels with cancer research, biotechnology and plasma surface modification further serve as inspiration for the envisioned synergies in tissue regeneration. The discovery and optimization of synergies may also be realized based on a profound understanding of the underlying redox- and field-related biological processes. Finally, we emphasize the toxicity concerns in plasma and nanomedicine, which may be partly remediated by their combination, but also partly amplified. A widespread use of standardized protocols and materials is therefore strongly recommended, to ensure both a fast and safe clinical implementation.

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