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首页> 外文期刊>Frontiers in Cell and Developmental Biology >Melatonin Promotes Heterotopic Ossification Through Regulation of Endothelial-Mesenchymal Transition in Injured Achilles Tendons in Rats
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Melatonin Promotes Heterotopic Ossification Through Regulation of Endothelial-Mesenchymal Transition in Injured Achilles Tendons in Rats

机译:褪黑激素通过调节大鼠受伤的achilles肌腱中的内皮 - 间充质转换来促进异位骨化

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Although heterotopic ossification (HO) has been reported to be a common complication of the posttraumatic healing process, the underlying mechanism remains unknown. Endothelial-mesenchymal transition (EndMT) is known to play a role in HO, and our recent study observed that neuroendocrine signals can promote HO by modulating EndMT. Melatonin, a neuroendocrine hormone secreted mainly by the pineal gland, has been documented to perform its function in the skeletal system. This study aimed to describe the expression of melatonin during the formation of HO in rat models of Achilles tendon injury and to further investigate its role in regulating EndMT in HO. Histological staining revealed the expression of melatonin throughout the formation of heterotopic bone in injured Achilles tendons, and the serum melatonin levels were increased after the initial injury. Double immunofluorescence showed that the MT2 melatonin receptor was notably expressed at the sites of injury. Micro-CT showed the enhancement of heterotopic bone volume and calcified areas in rats treated with melatonin. Additionally, our data showed that melatonin induced EndMT in primary rat aortic endothelial cells (RAOECs), which acquired traits including migratory function, invasive function and EndMT and MSC marker gene and protein expression. Furthermore, our data showed that melatonin promoted the osteogenic differentiation of RAOECs undergoing EndMT in vitro. Importantly, inhibition of the melatonin-MT2 pathway by using the MT2 selective inhibitor 4-P-PDOT inhibited melatonin-induced EndMT and osteogenesis both in vivo and in vitro. In conclusion, these findings demonstrated that melatonin promoted HO through the regulation of EndMT in injured Achilles tendons in rats, and these findings might provide additional directions for the management of HO.
机译:据据报道,杂交骨化(HO)据报道,潜在机制仍然未知。已知内皮 - 间充质转换(ENDMT)在何中发挥作用,我们最近的研究观察到神经内分泌信号可以通过调节ENDMT来促进HO。褪黑激素是一种主要由松果腺体分泌的神经内分泌激素,已记录在骨骼系统中进行其功能。本研究旨在描述炎素在大鼠肌腱损伤的大鼠模型中的形成期间的表达,进一步研究其在调节HO调节Endmt中的作用。组织学染色揭示了在损伤的阿基血管肌腱中整个体相骨形成的褪黑素的表达,并且在初始损伤后血清褪黑素水平增加。双免疫荧光表明,MT2褪黑激素受体在损伤部位尤其表达。微型CT显示用褪黑素处理的大鼠异质骨体积和钙化区域的增强。此外,我们的数据显示,褪黑激素诱导原鼠主动脉内皮细胞(Raoecs)中的Endmt,其获得包括迁移功能,侵袭功能和终止和MSC标记基因和蛋白质表达的特征。此外,我们的数据表明,褪黑素促进了体外接受Endmt的Raoecs的成骨分化。重要的是,通过使用MT2选择性抑制剂4-P-PPOT对褪黑激素-MT2途径的抑制抑制在体内和体外抑制褪黑激素诱导的Endmt和osteo发生。总之,这些研究结果表明,褪黑素通过在大鼠中受伤的血管肌腱中的Endmt调节促进何,这些发现可能为HO的管理提供额外的方向。

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