Engineering Research Center of Oral Translational Medicine, Ministry of Education, West China Hospital of Stomatology, Sichuan University, Chengdu, 610041, China.
National Engineering Laboratory for Oral Regenerative Medicine, West China Hospital of Stomatology, Sichuan University, Chengdu, 610041, China.
J Mol Histol. 2021 Jun;52(3):555-566. doi: 10.1007/s10735-021-09975-z. Epub 2021 Apr 26.
Periostin is essential for periodontal tissue integrity and homeostasis and also associated with periodontitis and periodontitis healing. This study aims to investigate the temporal and spatial expression of Periostin and Wnt5a/CaMKII in periodontitis and how the Wnt5a regulates Periostin through CaMKII signaling pathway in PDLCs in inflammatory environment. The experimental periodontitis mice were adopted to clarify the temporal and spatial expression of Wnt5a, CaMKII and Periostin during early periodontitis. And the Wnt5a, CaMKII and Periostin expression pattern and regulation mechanism in PDLCs were clarified in Porphyromonas gingivalis Lipopolysaccharide (P.g. LPS) induced inflammatory condition. Along with the periodontitis development, Wnt5a, CaMKII and Periostin significantly increased in periodontal ligament and partially increased in gingiva during 0 to 6 day (P < 0.05). They were involved in early periodontitis homeostasis especially in periodontal ligament tissue. Meanwhile, Wnt5a, CaMKII and Periostin were significantly decreased at 12 h (P < 0.05) and increased at 48 h (P < 0.05) in PDLCs after induced by P.g. LPS. Besides, Wnt5a significantly enhanced total CaMKII protein (P < 0.05), pCaMKII (P < 0.001) and Periostin (P < 0.001), and this could be blocked by CaMKII inhibitor KN93 (P < 0.05). In conclusions, in early periodontitis, Wnt5a/CaMKII and Periostin should be involved in maintaining periodontal homeostasis and Wnt5a could up-regulate Periostin via CaMKII pathway in inflammation, which would provide new clues for us to understand the pathogenesis of periodontitis and develop better therapeutic strategies.
骨桥蛋白对于牙周组织的完整性和稳态至关重要,并且与牙周炎和牙周炎的愈合有关。本研究旨在研究骨桥蛋白和 Wnt5a/CaMKII 在牙周炎中的时空表达,以及在炎症环境中 Wnt5a 如何通过 CaMKII 信号通路调节 PDLCs 中的骨桥蛋白。采用实验性牙周炎小鼠来阐明早期牙周炎中 Wnt5a、CaMKII 和骨桥蛋白的时空表达。并阐明在牙龈卟啉单胞菌脂多糖(P.g. LPS)诱导的炎症条件下,PDLCs 中 Wnt5a、CaMKII 和骨桥蛋白的表达模式和调节机制。随着牙周炎的发展,牙周韧带中的 Wnt5a、CaMKII 和骨桥蛋白在 0 至 6 天期间显著增加,牙龈中的部分增加(P<0.05)。它们参与了早期牙周炎的稳态,特别是在牙周韧带组织中。同时,在 P.g. LPS 诱导后 12 小时(P<0.05)和 48 小时(P<0.05),PDLCs 中的 Wnt5a、CaMKII 和骨桥蛋白显著降低。此外,Wnt5a 显著增强总 CaMKII 蛋白(P<0.05)、pCaMKII(P<0.001)和骨桥蛋白(P<0.001),而这可以被 CaMKII 抑制剂 KN93 阻断(P<0.05)。总之,在早期牙周炎中,Wnt5a/CaMKII 和骨桥蛋白可能参与维持牙周稳态,并且 Wnt5a 可以通过 CaMKII 通路在炎症中上调骨桥蛋白,这为我们理解牙周炎的发病机制和开发更好的治疗策略提供了新的线索。