Division of Restorative Dentistry and Periodontology, Dublin Dental University Hospital, Trinity College Dublin, University of Dublin, Dublin, Ireland.
Faculty of Dentistry, Sir John Walsh Research Institute, University of Otago, Dunedin, New Zealand.
J Endod. 2020 Sep;46(9S):S10-S18. doi: 10.1016/j.joen.2020.06.019.
The improvement of regenerative endodontic procedures requires an understanding of the key clinical questions combined with a fundamental biological knowledge of how the dental tissues behave during health, disease, and repair. Therefore, partnerships between clinicians and basic scientists are essential to drive the field forward and improve patient outcomes.
This review aimed to provide a background to dentin-pulp biology and the interaction between infection, inflammation, and regeneration.
We have highlighted how the release of neutrophil extracellular traps (NETs) within the pulp are double-edged; while they aim to limit the bacterial infection, they may actually exacerbate cell death and chronic inflammation. Aberrant levels of these structures may occur because of ineffective host immunologic processes, viral infections, or impaired clearance caused by bacterial virulence factors. We also postulate a proinflammatory link in the pulp between NETs and the inflammasome activated by pathogen-associated molecular patterns and damage-associated molecular patterns. Subsequently, we discuss areas potentially fruitful for future clinical exploitation involving NET inhibitors, inflammasome modulators, phototherapies, and novel epigenetic approaches.
Sustained scientist-clinician research partnerships along with an increased understanding of the association between inflammation and regeneration within the dentin-pulp complex will lead to future patient benefit.
再生牙髓治疗的进步需要临床医生了解关键的临床问题,并具备牙髓组织在健康、疾病和修复过程中如何运作的基本生物学知识。因此,临床医生和基础科学家之间的合作对于推动该领域的发展和改善患者的治疗效果至关重要。
本文旨在为牙髓生物学以及感染、炎症和再生之间的相互作用提供背景知识。
我们强调了中性粒细胞胞外诱捕网(NETs)在牙髓中的释放是一把双刃剑;虽然它们旨在限制细菌感染,但实际上可能会加剧细胞死亡和慢性炎症。这些结构的异常水平可能是由于宿主免疫功能失效、病毒感染或细菌毒力因子导致的清除能力受损引起的。我们还提出了牙髓中 NETs 与病原体相关分子模式和损伤相关分子模式激活的炎性小体之间的促炎联系。随后,我们讨论了一些有潜力的领域,包括 NET 抑制剂、炎性小体调节剂、光疗和新型表观遗传方法,这些都可能为未来的临床应用带来益处。
通过科学家与临床医生的持续合作,以及对牙髓复合体中炎症与再生之间关联的深入理解,将为未来的患者带来获益。