Hakim Lotfollah Kamali, Yazdanian Mohsen, Alam Mostafa, Abbasi Kamyar, Tebyaniyan Hamid, Tahmasebi Elahe, Khayatan Danial, Seifalian Alexander, Ranjbar Reza, Yazdanian Alireza
Research Center for Prevention of Oral and Dental Diseases, Baqiyatallah University of Medical Sciences, Tehran, Iran.
School of Dentistry, Baqiyatallah University of Medical Sciences, Tehran, Iran.
Evid Based Complement Alternat Med. 2021 Nov 13;2021:9011226. doi: 10.1155/2021/9011226. eCollection 2021.
Biomaterials applications have rapidly expanded into different fields of sciences. One of the important fields of using biomaterials is dentistry, which can facilitate implantation, surgery, and treatment of oral diseases such as peri-implantitis, periodontitis, and other dental problems. Drug delivery systems based on biocompatible materials play a vital role in the release of drugs into aim tissues of the oral cavity with minimum side effects. Therefore, scientists have studied various delivery systems to improve the efficacy and acceptability of therapeutic approaches in dental problems and oral diseases. Also, biomaterials could be utilized as carriers in biocompatible drug delivery systems. For instance, natural polymeric substances, such as gelatin, chitosan, calcium phosphate, alginate, and xanthan gum are used to prepare different forms of delivery systems. In addition, some alloys are conducted in drug complexes for the better in transportation. Delivery systems based on biomaterials are provided with different strategies, although individual biomaterial has advantages and disadvantages which have a significant influence on transportation of complex such as solubility in physiological environments or distribution in tissues. Biomaterials have antibacterial and anti-inflammatory effects and prolonged time contact and even enhance antibiotic activities in oral infections. Moreover, these biomaterials are commonly prepared in some forms such as particulate complex, fibers, microspheres, gels, hydrogels, and injectable systems. In this review, we examined the application of biocompatible materials in drug delivery systems of oral and dental diseases or problems.
生物材料的应用已迅速扩展到不同的科学领域。使用生物材料的重要领域之一是牙科,它可以促进植入、手术以及口腔疾病如种植体周围炎、牙周炎和其他牙科问题的治疗。基于生物相容性材料的药物递送系统在将药物以最小的副作用释放到口腔目标组织中起着至关重要的作用。因此,科学家们研究了各种递送系统,以提高牙科问题和口腔疾病治疗方法的疗效和可接受性。此外,生物材料可作为生物相容性药物递送系统的载体。例如,天然聚合物质,如明胶、壳聚糖、磷酸钙、藻酸盐和黄原胶,被用于制备不同形式的递送系统。此外,一些合金用于药物复合物中以更好地进行运输。基于生物材料的递送系统有不同的策略,尽管每种生物材料都有优缺点,这对复合物的运输有重大影响,如在生理环境中的溶解度或在组织中的分布。生物材料具有抗菌和抗炎作用,延长接触时间,甚至增强口腔感染中的抗生素活性。此外,这些生物材料通常以颗粒复合物、纤维、微球、凝胶、水凝胶和可注射系统等形式制备。在这篇综述中,我们研究了生物相容性材料在口腔和牙科疾病或问题的药物递送系统中的应用。