首页> 美国卫生研究院文献>other >Inhibition of GSK-3β Rescues the Impairments in Bone Formation and Mechanical Properties Associated with Fracture Healing in Osteoblast Selective Connexin 43 Deficient Mice
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Inhibition of GSK-3β Rescues the Impairments in Bone Formation and Mechanical Properties Associated with Fracture Healing in Osteoblast Selective Connexin 43 Deficient Mice

机译:GSK-3β的抑制作用可减轻成骨细胞选择性连接蛋白43缺陷小鼠骨折愈合相关的骨形成和力学性能受损。

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摘要

Connexin 43 (Cx43) is the most abundant gap junction protein in bone and is required for osteoblastic differentiation and bone homeostasis. During fracture healing, Cx43 is abundantly expressed in osteoblasts and osteocytes, while Cx43 deficiency impairs bone formation and healing. In the present study we selectively deleted Cx43 in the osteoblastic lineage from immature osteoblasts through osteocytes and tested the hypothesis that Cx43 deficiency results in delayed osteoblastic differentiation and impaired restoration of biomechanical properties due to attenuated β-catenin expression relative to wild type littermates. Here we show that Cx43 deficiency results in alterations in the mineralization and remodeling phases of healing. In Cx43 deficient fractures the mineralization phase is marked by delayed expression of osteogenic genes. Additionally, the decrease in the RankL/ Opg ratio, osteoclast number and osteoclast size suggest decreased osteoclast bone resorption and remodeling. These changes in healing result in functional deficits as shown by a decrease in ultimate torque at failure. Consistent with these impairments in healing, β-catenin expression is attenuated in Cx43 deficient fractures at 14 and 21 days, while Sclerostin (Sost) expression, a negative regulator of bone formation is increased in Cx43cKO fractures at 21 days, as is GSK-3β, a key component of the β-catenin proteasomal degradation complex. Furthermore, we show that alterations in healing in Cx43 deficient fractures can be rescued by inhibiting GSK-3β activity using Lithium Chloride (LiCl). Treatment of Cx43 deficient mice with LiCl restores both normal bone formation and mechanical properties relative to LiCl treated WT fractures. This study suggests that Cx43 is a potential therapeutic target to enhance fracture healing and identifies a previously unknown role for Cx43 in regulating β-catenin expression and thus bone formation during fracture repair.
机译:连接蛋白43(Cx43)是骨骼中最丰富的间隙连接蛋白,是成骨细胞分化和骨骼稳态所需的。在骨折愈合期间,Cx43在成骨细胞和骨细胞中大量表达,而Cx43缺乏会损害骨形成和愈合。在本研究中,我们通过成骨细胞选择性地从未成熟成骨细胞中删除了成骨细胞谱系中的Cx43,并验证了以下假设:Cx43缺乏会导致成骨细胞分化延迟,并且由于相对于野生型同窝幼仔而言β-catenin表达减弱,导致成骨细胞生物学特性恢复受损。在这里,我们显示Cx43缺乏症会导致矿化和重塑阶段的改变。在Cx43缺陷骨折中,成矿期的特征是成骨基因的表达延迟。此外,RankL / Opg比,破骨细胞数量和破骨细胞大小的降低表明破骨细胞的骨吸收和重塑降低。愈合过程中的这些变化会导致功能缺陷,如失败时最终扭矩的降低所示。与这些损伤的愈合相一致,在14天和21天时Cx43缺陷型骨折中β-连环蛋白的表达减弱,而在21天时Cx43cKO骨折中Sclerostin(Sost)表达的骨形成负调节剂增加,GSK-3β ,β-catenin蛋白酶体降解复合物的关键成分。此外,我们显示可以通过使用氯化锂(LiCl)抑制GSK-3β活性来挽救Cx43缺乏性骨折的愈合改变。与LiCl处理的WT骨折相比,用LiCl处理Cx43缺陷的小鼠可恢复正常的骨形成和力学性能。这项研究表明,Cx43是增强骨折愈合的潜在治疗靶标,并且确定了Cx43在调节β-catenin表达,从而在骨折修复过程中形成骨骼方面未知的作用。

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