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Effect of TNF-α-Induced Sclerostin on Osteocytes during Orthodontic Tooth Movement

机译:TNF-α诱导的硬化素对正畸牙移动过程中骨细胞的影响

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摘要

Osteocytes are abundant cells in bone, which contribute to bone maintenance. Osteocytes express receptor activator of nuclear factor kappa-B ligand (RANKL) and regulate osteoclast formation. Orthodontic tooth movement (OTM) occurs by osteoclast resorption of alveolar bone. Osteocyte-derived RANKL is critical in bone resorption during OTM. Additionally, tumor necrosis factor-α (TNF-α) is important in osteoclastogenesis during OTM. Sclerostin has been reported to enhance RANKL expression in the MLO-Y4 osteocyte-like cell line. This study investigated the effect of TNF-α on sclerostin expression in osteocytes during OTM. In vitro analysis of primary osteocytes, which were isolated from DMP1-Topaz mice by sorting the Topaz variant of GFP-positive cells, revealed that SOST mRNA expression was increased when osteocytes were cultured with TNF-α and that RANKL mRNA expression was increased when osteocytes were cultured with sclerostin. Moreover, the number of TRAP-positive cells was increased in osteocytes and osteoclast precursors cocultured with sclerostin. In vivo analysis of mouse calvariae that had been subcutaneously injected with phosphate-buffered saline (PBS) or TNF-α revealed that the number of TRAP-positive cells and the percentage of sclerostin-positive osteocytes were higher in the TNF-α group than in the PBS group. Furthermore, the level of SOST mRNA was increased by TNF-α. As an OTM model, a Ni-Ti closed-coil spring connecting the upper incisors and upper-left first molar was placed to move the first molar to the mesial direction in wild-type (WT) mice and TNF receptor 1- and 2-deficient (TNFRsKO) mice. After 6 days of OTM, the percentage of sclerostin-positive osteocytes on the compression side of the first molar in TNFRsKO mice was lower than that in WT mice. In this study, TNF-α increased sclerostin expression in osteocytes, and sclerostin enhanced RANKL expression in osteocytes. Thus, TNF-α may play an important role in sclerostin expression in osteocytes and enhance osteoclast formation during OTM.
机译:骨细胞是骨骼中丰富的细胞,有助于骨骼的维持。骨细胞表达核因子κB配体(RANKL)的受体激活剂,并调节破骨细胞的形成。正畸牙齿移动(OTM)是通过破骨细胞吸收牙槽骨而发生的。骨细胞衍生的RANKL在OTM期间对骨吸收至关重要。另外,肿瘤坏死因子-α(TNF-α)在OTM期间的破骨细胞形成中很重要。据报道,硬化蛋白可增强MLO-Y4骨细胞样细胞系中RANKL的表达。这项研究调查了TNF-α对OTM期间骨细胞中硬化素表达的影响。通过分选GFP阳性细胞的Topaz变种从DMP1-Topaz小鼠中分离而来的原代骨细胞的体外分析显示,当骨细胞与TNF-α培养时,SOST mRNA表达增加,而骨细胞时RANKL mRNA表达增加。用硬化蛋白培养。此外,与硬化素共培养的骨细胞和破骨细胞前体中TRAP阳性细胞的数量增加。皮下注射磷酸盐缓冲液(PBS)或TNF-α的小鼠颅盖的体内分析显示,TNF-α组的TRAP阳性细胞数和硬化素阳性骨细胞百分比高于对照组。 PBS组。此外,TNF-α增加了SOST mRNA的水平。作为OTM模型,放置了连接上切牙和左上第一磨牙的Ni-Ti闭合线圈弹簧,以使第一磨牙在野生型(WT)小鼠和TNF受体1-和2-中向内向移动缺陷(TNFRsKO)小鼠。 OTM 6天后,TNFRsKO小鼠的第一磨牙压缩侧的硬化素阳性骨细胞百分比低于WT小鼠。在这项研究中,TNF-α增加了骨细胞中硬化素的表达,而硬化素增强了骨细胞中RANKL的表达。因此,TNF-α可能在骨细胞的硬化素表达中起重要作用,并在OTM期间增强破骨细胞的形成。

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