Chitosan silk-based three-dimensional scaffolds containing gentamicin-encapsulated calcium alginate beads for drug administration and blood compatibility

Author:

Mehta Abijeet Singh1,Singh Brijesh K2,Singh Nandita3,Archana D2,Snigdha Kirti1,Harniman Robert4,Rahatekar Sameer S5,Tewari RP1,Dutta PK2

Affiliation:

1. Department of Applied Mechanics (Biomedical Engineering), Motilal Nehru National Institute of Technology, Allahabad, India

2. Department of Chemistry, Motilal Nehru National Institute of Technology, Allahabad, India

3. School of Cellular & Molecular Medicine, University of Bristol, Bristol, UK

4. School of Chemistry, University of Bristol, Bristol, UK

5. Advanced Composites Centre for Innovation and Science (ACCIS), Aerospace Engineering, University of Bristol, Bristol, UK

Abstract

In the present study gentamicin was encapsulated within calcium alginate beads and incorporated into porous chitosan, gelatin, double-hybrid silk fibroin, chitosan/gelatin and double-hybrid silk fibroin/chitosan scaffolds. Physiochemical, morphological and biological properties of fabricated amenable model systems were evaluated, revealing hemocompatible nature of double-hybrid silk fibroin/chitosan and double-hybrid silk fibroin scaffolds of hemolysis %<5 and porosity >85%. Fourier transform infrared results confirmed the blend formation and scanning electron microscope images showed good interconnectivity. Double-hybrid silk fibroin/chitosan-blended scaffold shows higher compressive strength and compressive modulus than other fabricated scaffolds. A comparative drug release profile of fabricated scaffolds revealed that double-hybrid silk fibroin/chitosan scaffold is a pertinent model system because of its prolonged drug release, optimal hemocompatability and high compressive modulus.

Publisher

SAGE Publications

Subject

Biomedical Engineering,Biomaterials

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