Center for Craniofacial Regeneration, University of Pittsburgh, Pittsburgh, PA.
Department of Periodontics and Preventive Dentistry, School of Dental Medicine, University of Pittsburgh, Pittsburgh, PA.
J Immunol. 2021 May 15;206(10):2386-2392. doi: 10.4049/jimmunol.2001432. Epub 2021 May 5.
Periodontal disease (PD) is a chronic destructive inflammatory disease of the tooth-supporting structures that leads to tooth loss at its advanced stages. Although the disease is initiated by a complex organization of oral microorganisms in the form of a plaque biofilm, it is the uncontrolled immune response to periodontal pathogens that fuels periodontal tissue destruction. IL-17A has been identified as a key cytokine in the pathogenesis of PD. Despite its well documented role in host defense against invading pathogens at oral barrier sites, IL-17A-mediated signaling can also lead to a detrimental inflammatory response, causing periodontal bone destruction. In this study, we developed a local sustained delivery system that restrains IL-17A hyperactivity in periodontal tissues by incorporating neutralizing anti-IL-17A Abs in poly(lactic-coglycolic) acid microparticles (MP). This formulation allowed for controlled release of anti-IL-17A in the periodontium of mice with ligature-induced PD. Local delivery of anti-IL-17A MP after murine PD induction inhibited alveolar bone loss and osteoclastic activity. The anti-IL-17A MP formulation also decreased expression of IL-6, an IL-17A target gene known to induce bone resorption in periodontal tissues. This study demonstrates proof of concept that local and sustained release of IL-17A Abs constitutes a promising therapeutic strategy for PD and may be applicable to other osteolytic bone diseases mediated by IL-17A-driven inflammation.
牙周病(PD)是一种慢性破坏性炎症性疾病,会导致牙齿在晚期脱落。尽管该疾病是由口腔微生物以菌斑生物膜的形式复杂组织引发的,但对牙周病原体的失控免疫反应是导致牙周组织破坏的原因。IL-17A 已被确定为 PD 发病机制中的关键细胞因子。尽管它在宿主防御口腔屏障部位入侵病原体方面的作用已得到充分证实,但 IL-17A 介导的信号也可能导致有害的炎症反应,导致牙周骨破坏。在这项研究中,我们开发了一种局部持续递送系统,通过将中和抗 IL-17A Abs 纳入聚(乳酸-乙醇酸)酸微球(MP)中来抑制牙周组织中 IL-17A 的过度活跃。这种配方允许在结扎诱导 PD 的小鼠的牙周组织中控制抗 IL-17A 的释放。在诱导 PD 后向小鼠局部递送抗 IL-17A MP 可抑制牙槽骨丢失和破骨细胞活性。抗 IL-17A MP 配方还降低了已知可诱导牙周组织中骨吸收的 IL-17A 靶基因 IL-6 的表达。这项研究证明了局部和持续释放 IL-17A Abs 构成 PD 有前途的治疗策略的概念验证,并且可能适用于其他由 IL-17A 驱动的炎症介导的溶骨性骨病。