Related Experiment Video
Updated: Jun 27, 2026

Constructing a Collagen Hydrogel for the Delivery of Stem Cell-loaded Chitosan Microspheres
Published on: June 1, 2012
Biodegradable patch based on chitosan-collagen with glycerol plasticizer as scaffold for tympanic membrane
Prihartini Widiyanti1,2, Arkan Fahrian Putra1, Djony Izak Rudyardjo3
1Biomedical Engineering Master Study Program, Department of Physics, Faculty of Science and Technology, Universitas Airlangga, Surabaya, Indonesia.
This study developed a novel chitosan-collagen scaffold patch for tympanic membrane perforation, demonstrating good sound transmission and degradation properties suitable for healing.
Area of Science:
- Biomaterials Science
- Tissue Engineering
- Otolaryngology
Background:
- Tympanic membrane perforation can impair hearing.
- Myringoplasty, a surgical procedure, requires a patch to cover the perforation.
- Existing patch materials may have limitations in biocompatibility or structural integrity.
Purpose of the Study:
- To innovate a scaffold patch for tympanic membrane perforation using chitosan-collagen with glycerol plasticizers.
- To evaluate the physical, mechanical, and biological properties of the developed scaffold patch.
Main Methods:
- Preparation of chitosan-collagen scaffolds at varying ratios (1:0, 9:1, 8:2, 7:3) with glycerol.
- Characterization using FTIR, morphological analysis, sound transmission class, tensile strength, degradation, swelling, and antibacterial tests.
Main Results:
- FTIR confirmed NH group deformation in specific sample variations.
- Morphological analysis indicated increased collagen concentration led to finer microstructural wrinkles.
- All scaffold variations exhibited proper sound transmission without sound reduction.
- The 8:2 chitosan-collagen ratio showed the highest tensile strength (8.02 MPa), though below native tympanic membrane strength.
- Scaffolds demonstrated degradation suitable for a 1-2 month healing period.
- Hydrophilic properties were observed due to free functional groups, contributing to degradation and swelling.
- No antibacterial inhibition zone was formed as chitosan did not diffuse through the agar.
Conclusions:
- The developed chitosan-collagen scaffold shows promise as a myringoplasty patch due to its sound transmission and appropriate degradation profile.
- Further optimization of glycerol plasticizer concentration is needed to enhance tensile strength.
- While not exhibiting direct antibacterial activity in this assay, the material's biocompatibility and structural support are key for tympanic membrane regeneration.
More Related Videos
12:22Synthesis of Thermogelling PolyN-isopropylacrylamide-graft-chondroitin Sulfate Composites with Alginate Microparticles for Tissue Engineering
Published on: October 26, 2016
05:26Fabrication of Size-Controlled and Emulsion-Free Chitosan-Genipin Microgels for Tissue Engineering Applications
Published on: April 13, 2022
Related Concept Videos
Base Excision Repair
The first step of...
Long-patch Base Excision Repair
Types of Membrane Protrusions
The microvilli, an example of stable protrusions, are finger-like projections with a...
Peptidoglycan Synthesis