Filifactor alocis ‐derived extracellular vesicles inhibit osteogenesis through TLR2 signaling

AbstractFilifactor alocis, an asaccharolytic anaerobic Gram ‐positive rod (AAGPR), is an emerging marker of periodontitis. Severe periodontitis causes destruction of the alveolar bone that supports teeth and can even lead to tooth loss. Based on our previous report thatF. alocis‐derived extracellular vesicles (FA EVs) contain various effector molecules and have immunostimulatory activity, we investigated the effect of FA EVs on osteogenesis using mouse bone‐derived mesenchymal stromal cells (BMSCs). FA EVs dramatically inhibited bone mineralization similarly to whole b acteria and reduced the expression levels of osteogenic marker genes. The osteogenic differentiation of TLR2‐deficient BMSCs was not inhibited by FA EVs, suggesting that their inhibitory effect on osteogenesis is dependent on TLR2 signaling. FA EVs effectively activated TLR2 downstream signaling o f the MAPK and NF‐kB pathways. In addition, FA EVs regulated RANKL and OPG gene expression, increasing the RANKL/OPG ratio in BMSCs in a TLR2‐dependent manner. Our study suggests thatF. alocis‐derived EVs interfere with bone metabolism via TLR2 activation, providing insight into the pathogenesis of bone loss associated with periodontitis.
Source: Molecular Oral Microbiology - Category: Microbiology Authors: Tags: ORIGINAL ARTICLE Source Type: research
More News: Genetics | Microbiology | Study