Sort:
Open Access Review Article Issue
The role of vitamin D and its analogues in the treatment of oral mucosal diseases and periodontal diseases
Journal of Prevention and Treatment for Stomatological Diseases 2019, 27(12): 804-808
Published: 20 December 2019
Abstract PDF (985 KB) Collect
Downloads:0

Vitamin D is an essential nutrient in the body. In recent years, increasing attention has been paid to its role in regulating immunity and anti-inflammatory effects. However, the application of vitamin D in vivo may produce some side effects, such as hypercalcemia and hypercalciuria. Some analogs of vitamin D obtained through molecular modification can reduce the side effects while retaining a similar regulatory action as that of vitamin D. The supplementation of vitamin D or the use of vitamin D analogs may contribute to the prevention and treatment of immune inflammatory diseases. This article reviews the role of vitamin D and its analogues in the prevention and treatment of oral mucosal diseases and periodontal diseases. The literature review results show that vitamin D and its analogues can protect the integrity of the oral mucosal barrier, prevent or delay the occurrence of oral lichen planus, and provide a reference value for the prevention and treatment of periodontitis.

Open Access Original Article Issue
Porphyromonas gingivalis bacteremia increases the permeability of the blood-brain barrier via the Mfsd2a/Caveolin-1 mediated transcytosis pathway
International Journal of Oral Science 2023, 15: 3
Published: 12 January 2023
Abstract PDF (5.5 MB) Collect
Downloads:30

Bacteremia induced by periodontal infection is an important factor for periodontitis to threaten general health. P. gingivalis DNA/virulence factors have been found in the brain tissues from patients with Alzheimer’s disease (AD). The blood-brain barrier (BBB) is essential for keeping toxic substances from entering brain tissues. However, the effect of P. gingivalis bacteremia on BBB permeability and its underlying mechanism remains unclear. In the present study, rats were injected by tail vein with P. gingivalis three times a week for eight weeks to induce bacteremia. An in vitro BBB model infected with P. gingivalis was also established. We found that the infiltration of Evans blue dye and Albumin protein deposition in the rat brain tissues were increased in the rat brain tissues with P. gingivalis bacteremia and P. gingivalis could pass through the in vitro BBB model. Caveolae were detected after P. gingivalis infection in BMECs both in vivo and in vitro. Caveolin-1 (Cav-1) expression was enhanced after P. gingivalis infection. Downregulation of Cav-1 rescued P. gingivalis-enhanced BMECs permeability. We further found P. gingivalis-gingipain could be colocalized with Cav-1 and the strong hydrogen bonding between Cav-1 and arg-specific-gingipain (RgpA) were detected. Moreover, P. gingivalis significantly inhibited the major facilitator superfamily domain containing 2a (Mfsd2a) expression. Mfsd2a overexpression reversed P. gingivalis-increased BMECs permeability and Cav-1 expression. These results revealed that Mfsd2a/Cav-1 mediated transcytosis is a key pathway governing BBB BMECs permeability induced by P. gingivalis, which may contribute to P. gingivalis/virulence factors entrance and the subsequent neurological impairments.

Total 2