Varghese Jothi, Rajagopal Anjale, Shanmugasundaram Shashikiran
Department of Periodontology, Manipal College of Dental Sciences, Manipal Academy of Higher Education, Manipal 576104, India.
Polymers (Basel). 2022 Jul 27;14(15):3038. doi: 10.3390/polym14153038.
Periodontal infections are noncommunicable chronic inflammatory diseases of multifactorial origin that can induce destruction of both soft and hard tissues of the periodontium. The standard remedial modalities for periodontal regeneration include nonsurgical followed by surgical therapy with the adjunctive use of various biomaterials to achieve restoration of the lost tissues. Lately, there has been substantial development in the field of biomaterial, which includes the sole or combined use of osseous grafts, barrier membranes, growth factors and autogenic substitutes to achieve tissue and bone regeneration. Of these, bone replacement grafts have been widely explored for their osteogenic potential with varied outcomes. Osseous grafts are derived from either human, bovine or synthetic sources. Though the biologic response from autogenic biomaterials may be better, the use of bone replacement synthetic substitutes could be practical for clinical practice. This comprehensive review focuses initially on bone graft replacement substitutes, namely ceramic-based (calcium phosphate derivatives, bioactive glass) and autologous platelet concentrates, which assist in alveolar bone regeneration. Further literature compilations emphasize the innovations of biomaterials used as bone substitutes, barrier membranes and complex scaffold fabrication techniques that can mimic the histologically vital tissues required for the regeneration of periodontal apparatus.
牙周感染是多因素起源的非传染性慢性炎症性疾病,可导致牙周软硬组织的破坏。牙周再生的标准治疗方式包括非手术治疗,随后进行手术治疗,并辅助使用各种生物材料以实现缺失组织的修复。最近,生物材料领域有了重大发展,包括单独或联合使用骨移植、屏障膜、生长因子和自体替代物来实现组织和骨再生。其中,骨替代移植物因其成骨潜力而得到广泛探索,结果各异。骨移植物来源于人、牛或合成材料。尽管自体生物材料的生物学反应可能更好,但骨替代合成替代物的使用在临床实践中可能更实用。这篇综述最初聚焦于骨移植替代物,即陶瓷基(磷酸钙衍生物、生物活性玻璃)和自体血小板浓缩物,它们有助于牙槽骨再生。进一步的文献汇编强调了用作骨替代物的生物材料、屏障膜和复杂支架制造技术的创新,这些技术可以模拟牙周组织再生所需的组织学重要组织。