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A Biodegradable Flexible Micro/Nano-Structured Porous Hemostatic Dental Sponge
Simin Sharifi1, Solmaz Maleki Dizaj1,2, Elham Ahmadian3
1Dental and Periodontal Research Center, Tabriz University of Medical Sciences, Tabriz 5166/15731, Iran.
Nanomaterials (Basel, Switzerland)
|October 14, 2022
Summary
A novel biodegradable gelatin sponge for dental surgery demonstrated excellent hemostatic properties and biocompatibility. This innovative foam effectively absorbs blood, showing promise for improved surgical outcomes.
Area of Science:
- Biomaterials Science
- Dental Surgery
- Hemostatic Agents
Background:
- Effective hemostasis is crucial in dental surgery to control bleeding.
- Existing hemostatic materials may have limitations in efficacy or biocompatibility.
- Biodegradable gelatin-based materials offer potential as advanced surgical aids.
Purpose of the Study:
- To develop and evaluate a micro/nano-structured porous hemostatic gelatin-based sponge for dental applications.
- To assess the hemostatic efficacy and biocompatibility of the novel sponge.
- To compare the performance of the developed sponge against a commercial control in a clinical setting.
Main Methods:
- Preparation of the gelatin sponge using a freeze-drying method.
- In vitro evaluation of hemostatic effect, biocompatibility (HFFF2 cells, RBCs), and degradation profile.
- Clinical trial involving 10 patients undergoing tooth extraction, comparing the novel sponge with a commercial one.
Main Results:
- The sponge exhibited a porous micro/nano-structure, flexibility, and a two-week degradation period.
- In vitro tests showed significant blood absorption (35 times its weight), reduced blood clotting times (BCTs), and a lower blood clotting index (BCI).
- No toxic effects were observed on human fetal foreskin fibroblasts (HFFF2) cells and red blood cells (RBCs).
- Clinical assessment revealed superior blood absorption capabilities of the developed sponge (p=0.0015).
Conclusions:
- The biodegradable gelatin-based sponge possesses excellent hemostatic properties and biocompatibility.
- Its micro/nano-structure and high absorption capacity make it suitable for dental surgery.
- The developed sponge is recommended for use in dental procedures due to its outstanding performance.

