首页> 外文期刊>Wound repair and regeneration: official publication of the Wound Healing Society [and] the European Tissue Repair Society >Improved regeneration and de novo bone formation in a diabetic zebrafish model treated with paricalcitol and cinacalcet
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Improved regeneration and de novo bone formation in a diabetic zebrafish model treated with paricalcitol and cinacalcet

机译:改进的再生和新创骨形成在治疗糖尿病斑马鱼模型paricalcitol和cinacalcet

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Bone changes related to diabetes have been well stablished, but few strategies have been developed to prevent this growing health problem. In our work, we propose to investigate the effects of calcitriol as well as of a vitamin D analog (paricalcitol) and a calcimimetic (cinacalcet), in fin regeneration and de novo mineralization in a zebrafish model of diabetes. Following exposure of diabetic transgenic Tg(ins: nfsb-mCherry) zebrafish to calcitriol, paricalcitol and cinacalcet, caudal fins were amputated to assess their effects on tissue regeneration. Caudal fin mineralized and regenerated areas were quantified by in vivo alizarin red staining. Quantitative real-time PCR was performed using RNA from the vertebral column. Diabetic fish treated with cinacalcet and paricalcitol presented increased regenerated and mineralized areas when compared with non-treated diabetic group, while no significant increase was observed in nondiabetic fish treated with both drugs. Gene expression analysis showed an up-regulation for runt-related transcription factor 2b (runx2b), bone gamma-carboxyglutamic acid-containing protein (bglap), insulin a (insa) and insulin b (insb) and a trend of increase for sp7 transcription factor (sp7) in diabetic groups treated with cinacalcet and paricalcitol. Expression of insra and vdra was up-regulated in both diabetic and nondiabetic fish treated with cinacalcet. In nondiabetic fish treated with paricalcitol and cinacalcet a similar increase in gene expression could be observed but not so pronounced. The increased mineralization and regeneration in diabetic zebrafish treated with cinacalcet and paricalcitol can be explained by increased osteoblastic differentiation and increased insulin expression indicating pro-osteogenic potential of both drugs.
机译:骨改变糖尿病已经好了坚定,但很少有策略开发以防止这一日益严重的健康问题。在我们的工作中,我们提出探讨骨化三醇的影响以及维生素D模拟(paricalcitol)和calcimimetic(cinacalcet)鳍再生,新创矿化在斑马鱼模型的糖尿病。曝光后糖尿病转基因Tg (ins:nfsb-mCherry)斑马鱼骨化三醇,paricalcitol cinacalcet,尾鳍截肢来评估其对组织的影响再生。再生领域被体内量化茜素红染色。进行了使用RNA从椎列。paricalcitol增加再生和矿化区域与摘要相比糖尿病组,而没有显著增加非糖尿病患者中观察到的鱼与治疗药物。老年病为runt-related转录因子2 b (runx2b),骨gamma-carboxyglutamicacid-containing蛋白(bglap)、胰岛素(早期)和胰岛素b (insb)和增加的趋势sp7转录因子(sp7)在糖尿病组对待cinacalcet paricalcitol。表达insra vdra上调治疗糖尿病和非糖尿病的鱼cinacalcet。paricalcitol和cinacalcet类似的增长基因表达可以观察到但不是这样的明显。在糖尿病斑马鱼再生处理cinacalcet和paricalcitol可以解释增加成骨细胞的分化和增加胰岛素的表情表明pro-osteogenic这两种药物的潜力。

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