Lee Hae Jin, Lee So Jung, Lee Sung Kwon, Choi Bong Keun, Lee Dong Ryung, Park Ju-Hyoung, Oh Joa Sub
NUON Co., Ltd., Jungwon-gu, Seongnam-si 13201, Republic of Korea.
College of Pharmacy, Dankook University, Cheonan 31116, Republic of Korea.
Curr Issues Mol Biol. 2023 Jun 3;45(6):4875-4890. doi: 10.3390/cimb45060310.
Clinical prevention is of utmost importance for the management of periodontal diseases. Periodontal disease starts with an inflammatory response in the gingival tissue, and results in alveolar bone destruction and subsequent tooth loss. This study aimed to confirm the anti-periodontitis effects of MKE. To confirm this, we studied its mechanism of action using qPCR and WB in LPS-treated HGF-1 cells and RANKL-induced osteoclasts. We found that MKE suppressed proinflammatory cytokine protein expression by inhibiting the TLR4/NF-κB pathway in LPS-PG-induced HGF-1 cells and blocking ECM degradation by regulating the expression of TIMPs and MMPs. We also confirmed that TRAP activity and multinucleated cell formation were reduced in RANKL-stimulated osteoclasts after exposure to MKE. These results were confirmed by inhibiting TRAF6/MAPK expression, which led to the suppression of , , , and MMP expression at the gene and protein levels. Our results confirmed that MKE is a promising candidate for the management of periodontal disease based on its anti-inflammatory effects and inhibition of ECM degradation and osteoclastogenesis.
临床预防对于牙周疾病的管理至关重要。牙周疾病始于牙龈组织的炎症反应,并导致牙槽骨破坏及随后的牙齿脱落。本研究旨在证实MKE的抗牙周炎作用。为了证实这一点,我们在LPS处理的HGF-1细胞和RANKL诱导的破骨细胞中使用qPCR和WB研究了其作用机制。我们发现,MKE通过抑制LPS-PG诱导的HGF-1细胞中的TLR4/NF-κB途径抑制促炎细胞因子蛋白表达,并通过调节TIMPs和MMPs的表达来阻止细胞外基质降解。我们还证实,在暴露于MKE后,RANKL刺激的破骨细胞中的TRAP活性和多核细胞形成减少。这些结果通过抑制TRAF6/MAPK表达得到证实,这导致在基因和蛋白质水平上抑制了、、和MMP表达。我们的结果证实,基于其抗炎作用以及对细胞外基质降解和破骨细胞生成的抑制作用,MKE是牙周疾病管理的一个有前景的候选药物。