Alkilzy Mohammad, Qadri Ghalib, Splieth Christian H, Santamaría Ruth M
Department of Preventive and Pediatric Dentistry, University of Greifswald, 17475 Greifswald, Germany.
Department of Orthodontic and Pediatric Dentistry, Arab American University, Jenin P.O. Box 240, Palestine.
Biomimetics (Basel). 2023 Jul 4;8(3):290. doi: 10.3390/biomimetics8030290.
The recent understanding of the etiology and pathology of dental caries has shifted its treatment from invasive drill and fill conventional strategies to noninvasive and/or minimally invasive approaches. Guided tissue regeneration (GTR) is a well-established therapeutic approach in medicine and periodontal and oral surgery. Recently, the concept of biomimetic regeneration has been further expanded to treat the loss of hard dental tissues. Self-assembling peptides have emerged as a promising biomaterial for biomimetic regeneration due to their ability to construct a protein scaffold in the body of early carious lesions and provide a matrix that promotes remineralization. This review article accompanies the development of self-assembling peptide P-4 for the treatment of initial carious lesions. In vitro and in vivo studies on the safety, clinical applicability, and efficacy of P-4 are discussed. Furthermore, different treatment options and potential areas of application are presented.
近年来,对龋齿病因和病理的认识已使龋齿治疗从侵入性的钻孔填充传统策略转向非侵入性和/或微创方法。引导组织再生(GTR)是医学、牙周病学和口腔外科中一种成熟的治疗方法。最近,仿生再生的概念已进一步扩展到治疗牙齿硬组织的丧失。自组装肽由于能够在早期龋损部位构建蛋白质支架并提供促进再矿化的基质,已成为一种有前途的用于仿生再生的生物材料。本文综述了用于治疗初始龋损的自组装肽P-4的发展情况。讨论了关于P-4安全性、临床适用性和疗效的体外和体内研究。此外,还介绍了不同的治疗选择和潜在的应用领域。