JOURNAL ARTICLE

Three-dimensional porous polycaprolactone/chitosan/bioactive glass scaffold for bone tissue engineering

K.M. Freny JoySathya Seeli DavidAbinaya ShanmugavadivuN. SelvamuruganP Mani

Year: 2024 Journal:   Journal of Biomaterials Science Polymer Edition Vol: 35 (18)Pages: 2829-2844   Publisher: Taylor & Francis

Abstract

Three-dimensional (3D) porous scaffolds based on polycaprolactone (PCL)/chitosan (CS)/bioactive glass (BG) nanoparticle composites were fabricated by the freeze-drying technique for bone tissue engineering. The physiochemical properties of the developed PCL/CS/BG scaffolds were studied using FTIR, XRD, EDX and SEM. Furthermore, the swelling degree, porosity, water retention ability, compression strength, in vitro biodegradation, bioactivity and biocompatibility of the scaffolds were examined. The PCL/CS/BG scaffolds with 4 wt. % of BG content presented adequate pore size (106 μm), porosity (156%), water swelling degree (128%), water retention ability (179%), compressive strength (3.7 MPa) and controlled degradation behavior, which could be ideal for bone tissue engineering. The PCL/CS/BG composite scaffolds showed good antimicrobial activity against both test bacteria and fungi. The MTT assay demonstrated the biocompatibility of PCL/CS/BG scaffolds against C3H10T1/2 cell line. The Alizarin red staining assay confirmed the osteogenic activity of the PCL/CS/BG scaffolds.

Keywords:
Biocompatibility Polycaprolactone Materials science Bioactive glass Chitosan Swelling Scaffold Tissue engineering Biodegradation Compressive strength Porosity Bone tissue Biomedical engineering Chemical engineering Composite material Chemistry Polymer Organic chemistry

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Citation History

Topics

Bone Tissue Engineering Materials
Physical Sciences →  Engineering →  Biomedical Engineering
Orthopaedic implants and arthroplasty
Health Sciences →  Medicine →  Surgery
Dental materials and restorations
Health Sciences →  Dentistry →  Orthodontics
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