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Comparative In VivoBiocompatibility of Cellulose-Derived and Synthetic Meshes in Subcutaneous Transplantation Models

Authors :
Peltokallio, Nina M. M.
Ajdary, Rubina
Reyes, Guillermo
Kankuri, Esko
Junnila, Jouni J. T.
Kuure, Satu
Meller, Anna S.
Kuula, Jani
Raussi-Lehto, Eija
Sariola, Hannu
Laitinen-Vapaavuori, Outi M.
Rojas, Orlando J.
Source :
Biomacromolecules; 20240101, Issue: Preprints
Publication Year :
2024

Abstract

Despite the increasing interest in cellulose-derived materials in biomedical research, there remains a significant gap in comprehensive in vivoanalyses of cellulosic materials obtained from various sources and processing methods. To explore durable alternatives to synthetic medical meshes, we evaluated the in vivobiocompatibility of bacterial nanocellulose, regenerated cellulose, and cellulose nanofibrils in a subcutaneous transplantation model, alongside incumbent polypropylene and polydioxanone. Notably, this study demonstrates the in vivobiocompatibility of regenerated cellulose obtained through alkali dissolution and subsequent regeneration. All cellulose-derived implants triggered the expected foreign body response in the host tissue, characterized predominantly by macrophages and foreign body giant cells. Porous materials promoted cell ingrowth and biointegration. Our results highlight the potential of bacterial nanocellulose and regenerated cellulose as safe alternatives to commercial polypropylene meshes. However, the in vivofragmentation observed for cellulose nanofibril meshes suggests the need for measures to optimize their processing and preparation.

Details

Language :
English
ISSN :
15257797 and 15264602
Issue :
Preprints
Database :
Supplemental Index
Journal :
Biomacromolecules
Publication Type :
Periodical
Accession number :
ejs67635411
Full Text :
https://doi.org/10.1021/acs.biomac.4c00984