Youn Sol, Ki Mi-Ran, Min Ki Ha, Abdelhamid Mohamed A A, Pack Seung Pil
Department of Biotechnology and Bioinformatics, Korea University, Sejong-Ro 2511, Sejong 30019, Republic of Korea.
Institute of Industrial Technology, Korea University, Sejong-Ro 2511, Sejong 30019, Republic of Korea.
Antibiotics (Basel). 2024 Jul 30;13(8):714. doi: 10.3390/antibiotics13080714.
The 3D nanopatterned silica shells of diatoms have gained attention as drug delivery vehicles because of their high porosity, extensive surface area, and compatibility with living organisms. Tooth extraction may result in various complications, including impaired blood clotting, desiccation of the root canal, and infection. Therapeutic sponges that possess multiple properties, such as the ability to stop bleeding and kill bacteria, provide numerous advantages for the healing of the area where a tooth has been removed. This study involved the fabrication of a composite material with antibacterial and hemostatic properties for dental extraction sponges. We achieved this by utilizing the porous nature and hemostatic capabilities of diatom biosilica. The antibiotic used was doxycycline. The gelatin-based diatom biosilica composite with antibiotics had the ability to prevent bleeding and release the antibiotic over a longer time compared to gelatin sponge. These properties indicate its potential as a highly promising medical device for facilitating rapid healing following tooth extraction.
硅藻的三维纳米图案化二氧化硅外壳因其高孔隙率、大表面积以及与生物体的兼容性,作为药物递送载体而受到关注。拔牙可能会导致各种并发症,包括凝血功能受损、根管干燥和感染。具有多种特性(如止血和杀菌能力)的治疗性海绵为拔牙区域的愈合提供了诸多优势。本研究涉及制备一种用于拔牙海绵的具有抗菌和止血性能的复合材料。我们通过利用硅藻生物二氧化硅的多孔性质和止血能力来实现这一目标。使用的抗生素是强力霉素。与明胶海绵相比,含有抗生素的基于明胶的硅藻生物二氧化硅复合材料具有防止出血和长时间释放抗生素的能力。这些特性表明它作为一种极有前景的医疗设备,在促进拔牙后快速愈合方面具有潜力。