Department of Periodontology, Nanjing Stomatological Hospital, Affiliated Hospital of Medical School, Institute of Stomatology, State Key Laboratory of Pharmaceutical Biotechnology, School of Life Sciences, Nanjing University, Nanjing, China.
Int J Oral Sci. 2024 May 11;16(1):38. doi: 10.1038/s41368-024-00305-z.
Periodontitis is a chronic inflammatory and immune reactive disease induced by the subgingival biofilm. The therapeutic effect for susceptible patients is often unsatisfactory due to excessive inflammatory response and oxidative stress. Sinensetin (Sin) is a nature polymethoxylated flavonoid with anti-inflammatory and antioxidant activities. Our study aimed to explore the beneficial effect of Sin on periodontitis and the specific molecular mechanisms. We found that Sin attenuated oxidative stress and inflammatory levels of periodontal ligament cells (PDLCs) under inflammatory conditions. Administered Sin to rats with ligation-induced periodontitis models exhibited a protective effect against periodontitis in vivo. By molecular docking, we identified Bach1 as a strong binding target of Sin, and this binding was further verified by cellular thermal displacement assay and immunofluorescence assays. Chromatin immunoprecipitation-quantitative polymerase chain reaction results also revealed that Sin obstructed the binding of Bach1 to the HMOX1 promoter, subsequently upregulating the expression of the key antioxidant factor HO-1. Further functional experiments with Bach1 knocked down and overexpressed verified Bach1 as a key target for Sin to exert its antioxidant effects. Additionally, we demonstrated that Sin prompted the reduction of Bach1 by potentiating the ubiquitination degradation of Bach1, thereby inducing HO-1 expression and inhibiting oxidative stress. Overall, Sin could be a promising drug candidate for the treatment of periodontitis by targeting binding to Bach1.
牙周炎是由龈下生物膜引起的慢性炎症和免疫反应性疾病。由于过度的炎症反应和氧化应激,易感患者的治疗效果往往不尽人意。橙皮素(Sin)是一种具有抗炎和抗氧化活性的天然多甲氧基黄酮。我们的研究旨在探讨 Sin 对牙周炎的有益作用及其具体的分子机制。我们发现 Sin 可减轻炎症状态下牙周韧带细胞(PDLCs)的氧化应激和炎症水平。将 Sin 给予结扎诱导的牙周炎模型大鼠体内,表现出对牙周炎的保护作用。通过分子对接,我们鉴定 Bach1 是 Sin 的一个强结合靶标,这一结合通过细胞热位移测定和免疫荧光测定进一步得到验证。染色质免疫沉淀-定量聚合酶链反应结果还表明,Sin 阻止 Bach1 与 HMOX1 启动子结合,从而上调关键抗氧化因子 HO-1 的表达。通过 Bach1 敲低和过表达的功能实验验证了 Bach1 是 Sin 发挥其抗氧化作用的关键靶标。此外,我们证明 Sin 通过增强 Bach1 的泛素化降解来促使 Bach1 的减少,从而诱导 HO-1 表达并抑制氧化应激。总的来说,Sin 通过与 Bach1 结合可能成为治疗牙周炎的有前途的药物候选物。