Chitosan/alginate bionanocomposites adorned with mesoporous silica nanoparticles for bone tissue engineering
Satar Yousefiasl, Hamed Manoochehri, Pooyan Makvandi, Saeid Afshar, Erfan Salahinejad, Pegah Khosraviyan, Massoud Saidijam, Sara Soleimani Asl, Esmaeel Sharifi

TL;DR
This study develops alginate/chitosan scaffolds enhanced with mesoporous silica nanoparticles, improving mechanical strength, biocompatibility, and osteoconductivity for effective bone tissue engineering applications.
Contribution
It introduces a novel scaffold incorporating mesoporous silica nanoparticles into alginate/chitosan matrices, demonstrating enhanced properties for bone regeneration.
Findings
MSN incorporation increased scaffold strength
Scaffolds showed good swelling and low degradation
MSN scaffolds significantly improved cell viability and biomineralization
Abstract
The regeneration of oral and craniofacial bone defects ranging from minor periodontal and peri-implant defects to large and critical lesions imposes a substantial global health burden. Conventional therapies are associated with several limitations, highlighting the development of a unique treatment strategy, such as tissue engineering. A well-designed scaffold for bone tissue engineering should possess biocompatibility, biodegradability, mechanical strength, and osteoconductivity. For this purpose, mesoporous silica nanoparticles (MSNs) were synthesized and incorporated at different ratios (10, 20, and 30%) into alginate/chitosan (Alg/Chit)-based porous composite scaffolds fabricated through the freeze-drying method. The MSN incorporation significantly improved the mechanical strength of the scaffolds while showing a negligible decreasing effect on the porosity. All of the samples…
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Taxonomy
TopicsBone Tissue Engineering Materials · Mesoporous Materials and Catalysis · Advanced Drug Delivery Systems
