Methoxsalen and Bergapten Prevent Diabetes-Induced Osteoporosis by the Suppression of Osteoclastogenic Gene Expression in Mice.
Ju Ri HamRa-Yeong ChoiHae-In LeeMi-Kyung LeePublished in: International journal of molecular sciences (2019)
This study evaluated whether bergapten and methoxsalen could prevent diabetes-induced osteoporosis and its underlying mechanism. For 10 weeks, bergapten or methoxsalen (0.02%, w/w) was applied to diabetic mice that were provided with a high-fat diet and streptozotocin. Bone mineral density (BMD) and microarchitecture quality were significantly reduced in the diabetic control group; however, both bergapten and methoxsalen reversed serum osteocalcin, bone-alkaline phosphatase and femur BMD. These coumarin derivatives significantly increased bone volume density and trabecular number, whereas they decreased the structure model index of femur tissue in diabetic mice. Conversely, tartrate-resistant acid phosphatase 5 (TRAP) staining revealed that these derivatives reduced osteoclast numbers and formation in diabetic bone tissue. Additionally, both bergapten and methoxsalen tended to downregulate the expression of osteoclast-related genes such as receptor activator of nuclear factor kappa-B ligand (RANKL), nuclear of activated T-cells, cytoplasmic 1 (NFATc1) and TRAP in diabetic femurs, with NFATc1 and TRAP expression showing significant reductions. Our data suggest that both bergapten and methoxsalen prevent diabetic osteoporosis by suppressing bone resorption.
Keyphrases
- bone mineral density
- nuclear factor
- postmenopausal women
- high fat diet
- type diabetes
- body composition
- toll like receptor
- gene expression
- diabetic rats
- wound healing
- insulin resistance
- poor prognosis
- bone loss
- cardiovascular disease
- adipose tissue
- high glucose
- glycemic control
- dna methylation
- binding protein
- immune response
- single cell
- flow cytometry
- high fat diet induced
- endothelial cells
- long non coding rna
- protein kinase
- diabetic nephropathy
- artificial intelligence
- preterm birth
- gestational age
- big data
- stress induced