Chitosan-Based Nanogels: Synthesis and Toxicity Profile for Drug Delivery to Articular Joints.
biocompatibility
biopolymer
cartilage
hyaluronic acid
nanogel
osteoarthritis
osteocartilaginous cells
Journal
Nanomaterials (Basel, Switzerland)
ISSN: 2079-4991
Titre abrégé: Nanomaterials (Basel)
Pays: Switzerland
ID NLM: 101610216
Informations de publication
Date de publication:
13 Apr 2022
13 Apr 2022
Historique:
received:
28
03
2022
revised:
06
04
2022
accepted:
09
04
2022
entrez:
23
4
2022
pubmed:
24
4
2022
medline:
24
4
2022
Statut:
epublish
Résumé
One important challenge in treating avascular-degraded cartilage is the development of new drugs for both pain management and joint preservation. Considerable efforts have been invested in developing nanosystems using biomaterials, such as chitosan, a widely used natural polymer exhibiting numerous advantages, i.e., non-toxic, biocompatible and biodegradable. However, even if chitosan is generally recognized as safe, the safety and biocompatibility of such nanomaterials must be addressed because of potential for greater interactions between nanomaterials and biological systems. Here, we developed chitosan-based nanogels as drug-delivery platforms and established an initial biological risk assessment for osteocartilaginous applications. We investigated the influence of synthesis parameters on the physicochemical characteristics of the resulting nanogels and their potential impact on the biocompatibility on all types of human osteocartilaginous cells. Monodisperse nanogels were synthesized with sizes ranging from 268 to 382 nm according to the acidic solution used (i.e., either citric or acetic acid) with overall positive charge surface. Our results demonstrated that purified chitosan-based nanogels neither affected cell proliferation nor induced nitric oxide production in vitro. However, nanogels were moderately genotoxic in a dose-dependent manner but did not significantly induce acute embryotoxicity in zebrafish embryos, up to 100 µg∙mL
Identifiants
pubmed: 35458048
pii: nano12081337
doi: 10.3390/nano12081337
pmc: PMC9027118
pii:
doi:
Types de publication
Journal Article
Langues
eng
Subventions
Organisme : Fonds de recherche du Québec
ID : FQR-NT 137647
Organisme : Fonds de recherche du Québec, ERA-NET EuroNanoMed
ID : GA N°723770
Organisme : Canada First Research Excellence Fund, TransMedTech Institute
ID : N/A
Organisme : Arthritis Society
ID : PhD Salary Award 21-0000000114
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