Trans-sutural distraction osteogenesis

  • 文章类型: Journal Article
    背景:颅面骨骼畸形可以通过对缝线施加拉力以促进缝线骨形成来解决。颅面缝线中机械调制的复杂过程涉及复杂的生物力学信号转导。小GTPaseRas同源基因家族成员A(RhoA)作为关键的机械转导蛋白,通过激活Rho相关的含卷曲螺旋的蛋白激酶(ROCK)来协调细胞骨架的动态组装。具有PDZ结合基序(TAZ)的转录共激活因子在机械转导信号通路中的基因调控和生物功能编排中起着至关重要的介导剂。然而,RhoA/ROCK-TAZ在经缝牵张成骨中的作用尚未见报道。
    方法:我们利用前成骨细胞特异性RhoA缺失小鼠建立了从新生小鼠中分离的前成骨细胞的体内颅骨穿缝牵张模型和体外机械拉伸模型。显微CT和组织学染色用于检测颅骨矢状缝中新骨的形成以及RhoA的激活。Osterix和TAZ。通过Westernblot检测机械张力下成骨细胞中ROCK-limk-cofilin的激活和TAZ的核易位,qRT-PCR,和免疫荧光。
    结果:通过激活RhoA和Rho相关激酶(ROCK),机械张力促进了前成骨细胞的成骨分化,而RhoA的消融通过抑制缝线扩张后的成骨细胞前分化而损害成骨。此外,抑制RhoA的表达可以通过ROCK-LIM结构域激酶(LIMK)-cofilin途径阻止F-肌动蛋白的组装来阻断TAZ的拉伸刺激的核易位。此外,TAZ激动剂TM-25659可以通过增加TAZ核积累来减轻前成骨细胞中RhoA消融引起的成骨受损。
    结论:这项研究表明,机械拉伸在经缝牵张成骨过程中促进前成骨细胞的成骨分化,该过程由RhoA/ROCK-TAZ信号轴介导。总的来说,我们的结果可能为通过经缝牵张成骨治疗颅骨融合症患者的潜在治疗策略提供了见解.
    BACKGROUND: Craniofacial skeletal deformities can be addressed by applying tensile force to sutures to prompt sutural bone formation. The intricate process of mechanical modulation in craniofacial sutures involves complex biomechanical signal transduction. The small GTPase Ras homolog gene family member A (RhoA) functions as a key mechanotransduction protein, orchestrating the dynamic assembly of the cytoskeleton by activating the Rho-associated coiled-coil containing protein kinase (ROCK). Transcriptional coactivator with PDZ-binding motif (TAZ) serves as a crucial mediator in the regulation of genes and the orchestration of biological functions within the mechanotransduction signaling pathway. However, the role of RhoA/ROCK-TAZ in trans-sutural distraction osteogenesis has not been reported.
    METHODS: We utilized pre-osteoblast-specific RhoA deletion mice to establish an in vivo calvarial trans-sutural distraction model and an in vitro mechanical stretch model for pre-osteoblasts isolated from neonatal mice. Micro-CT and histological staining were utilized to detect the formation of new bone in the sagittal suture of the skull as well as the activation of RhoA, Osterix and TAZ. The activation of ROCK-limk-cofilin and the nuclear translocation of TAZ in pre-osteoblasts under mechanical tension were detected through Western blot, qRT-PCR, and immunofluorescence.
    RESULTS: The osteogenic differentiation of pre-osteoblasts was facilitated by mechanical tension through the activation of RhoA and Rho-associated kinase (ROCK), while ablation of RhoA impaired osteogenesis by inhibiting pre-osteoblast differentiation after suture expansion. Furthermore, inhibiting RhoA expression could block tensile-stimulated nuclear translocation of TAZ by preventing F-actin assembly through ROCK-LIM-domain kinase (LIMK)-cofilin pathway. In addition, the TAZ agonist TM-25659 could attenuate impaired osteogenesis caused by ablation of RhoA in pre-osteoblasts by increasing TAZ nuclear accumulation.
    CONCLUSIONS: This study demonstrates that mechanical stretching promotes the osteogenic differentiation of pre-osteoblasts in trans-sutural distraction osteogenesis, and this process is mediated by the RhoA/ROCK-TAZ signaling axis. Overall, our results may provide an insight for potential treatment strategies for craniosynostosis patients through trans-sutural distraction osteogenesis.
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  • 文章类型: Journal Article
    背景:跨缝线牵张成骨(TSDO)涉及对面部缝线施加牵张力以刺激成骨。颅骨缝合线中的Gli1细胞在骨骼生长中起重要作用。然而,面部缝合线中的Gli1+细胞在牵张力下是否分化成骨未知。
    方法:使用4周龄Gli1ER/Td和C57BL/6小鼠建立TSDO模型,以探讨吻合齿吻合缝的成骨作用。采用Gli1+细胞谱系示踪模型观察Gli1+细胞分布,探讨Gli1+细胞在面骨重建中的作用。
    结果:牵张力促进TSDO期间的骨重建。荧光和双光子扫描图像揭示了Gli1细胞的分布。在分心的力量下,Gli1谱系细胞显著增殖并与Runx2+细胞共定位。Hedgehog信号在Gli1+细胞中上调。Hedgehog信号的抑制抑制由牵张力诱导的Gli1+细胞的增殖和成骨。随后,鉴定了Gli1+细胞的干细胞特性。细胞拉伸实验验证了机械力通过Hh信号促进Gli1+细胞的成骨分化。此外,免疫荧光染色和RT-qPCR实验表明,Gli1细胞中的初级纤毛表现出不依赖Hedgehog的机械敏感性,这是机械力诱导的成骨分化所必需的。
    结论:我们的研究表明,Gli1+细胞的初级纤毛感觉到机械刺激,介导Hedgehog信号激活,促进Gli1+细胞在腋窝缝合中的成骨分化。
    BACKGROUND: Trans-sutural distraction osteogenesis (TSDO) involves the application of distraction force to facial sutures to stimulate osteogenesis. Gli1+ cells in the cranial sutures play an important role in bone growth. However, whether Gli1+ cells in facial sutures differentiate into bone under distraction force is unknown.
    METHODS: 4-week-old Gli1ER/Td and C57BL/6 mice were used to establish a TSDO model to explore osteogenesis of zygomaticomaxillary sutures. A Gli1+ cell lineage tracing model was used to observe the distribution of Gli1+ cells and explore the role of Gli1+ cells in facial bone remodeling.
    RESULTS: Distraction force promoted bone remodeling during TSDO. Fluorescence and two-photon scanning images revealed the distribution of Gli1+ cells. Under distraction force, Gli1-lineage cells proliferated significantly and co-localized with Runx2+ cells. Hedgehog signaling was upregulated in Gli1+ cells. Inhibition of Hedgehog signaling suppresses the proliferation and osteogenesis of Gli1+ cells induced by distraction force. Subsequently, the stem cell characteristics of Gli1+ cells were identified. Cell-stretching experiments verified that mechanical force promoted the osteogenic differentiation of Gli1+ cells through Hh signaling. Furthermore, immunofluorescence staining and RT-qPCR experiments demonstrated that the primary cilia in Gli1+ cells exhibit Hedgehog-independent mechanosensitivity, which was required for the osteogenic differentiation induced by mechanical force.
    CONCLUSIONS: Our study indicates that the primary cilia of Gli1+ cells sense mechanical stimuli, mediate Hedgehog signaling activation, and promote the osteogenic differentiation of Gli1+ cells in zygomaticomaxillary sutures.
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  • 文章类型: Journal Article
    以往关于经缝牵张成骨(TSDO)治疗唇腭裂(CLP)引起的中面发育不全的疗效研究主要集中在客观测量上,而忽略了患者的主观感受。这项研究旨在通过从客观和主观角度进行综合评估,分析接受TSDO的患者的计算机断层扫描(CT)测量值与FACE-Q评分之间的变化和相关性。这项回顾性研究包括25名平均年龄为10.7岁的患者,这些患者在2018年8月至2022年12月期间患有由CLP引起的面部发育不全并接受TSDO。平均随访时间为18.8±7.7个月。面部形态学和CT测量,包括A-CR,N-AHLHR,SNA角度和L-ZA,表明中表面凹度有显著改善(所有p<0.0001)。所有FACE-Q评分(面部功能除外)均表现出显着增加。ΔA-CR,ΔN-AHLHR,和ΔSNA角度与FACE-Q外观项目的特定方面密切相关,包括脸颊的ΔFACE-Q-外观(所有p<0.0001),面部的ΔFACE-Q-外观(所有p<0.0001),颌骨的ΔFACE-Q-外观(所有p<0.01),Δ对决策的满意度(所有p<0.0001)和Δ对结果的满意度(所有p<0.001)。然而,ΔA-CR,ΔN-AHLHR,和ΔSNA与其他FACE-Q-健康相关的生活质量和功能项目弱相关。这些发现表明,CT检查结果和FACE-Q评分都有自己的重点和优势。有必要建立FACE-Q评分与CT测量相结合的综合疗效评估模型,以评估患者的身体健康状况和心理状况。
    Previous studies on the efficacy of trans-sutural distraction osteogenesis (TSDO) to treat midface hypoplasia caused by cleft lip and palate (CLP) have mainly focused on objective measurements while ignoring the subjective feelings of patients. This study aimed to analyse the changes in and correlation between computed tomography (CT) measurements and FACE-Q scores in patients who underwent TSDO by performing a comprehensive evaluation from both objective and subjective perspectives. This retrospective study included 25 patients with an average age of 10.7 years who had midface hypoplasia caused by CLP and underwent TSDO between August 2018 and December 2022. The average follow-up time was 18.8 ± 7.7 months. Facial morphology and CT measurements, including A-CR, N-A⊥HR, the SNA angle and the L-ZA, indicated significant improvements in midface concavity (all p < 0.0001). All FACE-Q scores (except for facial function) exhibited a significant increase. The ΔA-CR, ΔN-A⊥HR, and ΔSNA angle were strongly correlated with specific aspects of the FACE-Q-Appearance items, including the ΔFACE-Q-Appearance of the cheeks (all p < 0.0001), the ΔFACE-Q-Appearance of the face (all p < 0.0001), the ΔFACE-Q-Appearance of the jaws (all p < 0.01), the ΔSatisfaction with decision (all p < 0.0001) and the ΔSatisfaction with outcome (all p < 0.001). However, the ΔA-CR, ΔN-A⊥HR, and ΔSNA were weakly correlated with other FACE-Q-Health-related quality of life and function items. These findings suggest that both CT findings and FACE-Q scores have their own emphases and advantages. It is necessary to establish an integrated curative effect evaluation model that combines FACE-Q scores with CT measurements to evaluate both the physical health and psychological status of patients.
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  • 文章类型: Journal Article
    通过经缝牵张成骨(TSDO)进行颅面不和谐治疗的高复发率是由于未能在缝合间隙中形成稳定的骨桥。双膦酸盐(BP)具有很高的定位于骨基质中的羟基磷灰石的倾向,并且通常用作靶向配体,用于将治疗剂局部递送到骨骼微环境中。骨靶向硼替佐米(BP-Btz)是通过将Btz(硼替佐米)与BP残基连接而化学合成的,并且可以靶向骨组织以促进成骨细胞分化并抑制破骨细胞生成。这里,用Btz和BP-Btz处理缝线来源的间充质干细胞(SuSCs)和破骨细胞。将上述药物局部注射到矢状缝线中,以探讨其在TSDO中的作用。Further,通过荧光BP类似物和总泛素化(Ub)蛋白水平评估BP-Btz在缝合线扩增模型中的药理学性质.结果表明,BP-Btz能刺激SuSCs向成骨细胞分化,与骨基质结合并抑制破骨细胞生成。BP-Btz在体外成骨细胞分化和破骨细胞生成抑制中的生物学作用与Btz相似。在矢状缝线扩张模型中14天后检测到激活的骨代谢。类骨面积增加,用BP-Btz治疗后,体内发现破骨细胞表面显着降低,成骨增强。绿色荧光信号检测和药效学研究表明,BP-Btz与缝线边缘结合,在重塑条件下释放了Btz,局部浓度较高,持续时间长于游离Btz。这项研究描述了骨靶向Btz缀合物的临床潜力,作为促进经缝牵引成骨的有效策略。
    The high rate of relapse in craniofacial disharmony treatment via trans-sutural distraction osteogenesis (TSDO) is due to the failure to form a stable bone bridge in the suture gap. Bisphosphonates (BP) have a high propensity to localize to hydroxyapatite in the bone matrix and are commonly used as targeting ligands for local delivery of therapeutics into bone microenvironment. Bone-targeted Bortezomib (BP-Btz) is chemosynthetic by linking Btz (Bortezomib) to a BP residue and could target bone tissue to promote osteoblast differentiation and inhibit osteoclastogenesis. Here, suture-derived mesenchymal stem cells (SuSCs) and osteoclasts were treated with Btz and BP-Btz. Aforesaid drugs were injected locally into the sagittal sutures to explore their effects in TSDO. Further, pharmacological properties of BP-Btz in the suture expansion model were assessed by fluorescent BP analogs and levels of total ubiquitinated (Ub)-proteins. The results showed that BP-Btz could stimulate osteogenic differentiation of SuSCs, bind to bone matrix and inhibit osteoclastogenesis. Biological effects of BP-Btz were similar with those of Btz in osteoblast differentiation and osteoclastogenesis inhibition in vitro. Activated bone metabolism were detected after 14 days in the sagittal suture expansion model. Increased osteoid area, remarkably decreased osteoclast surface and enhanced osteogenesis were detected in vivo after treatment with BP-Btz. Green fluorescence signal detection and pharmacodynamic studies revealed that BP-Btz bound to suture edge, released Btz in remodeling conditions, had a higher local concentration and sustained longer than free Btz. This study delineated the clinical potential of bone-targeted Btz conjugate as an efficacious strategy to promote trans-sutural distraction osteogenesis.
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  • 文章类型: Journal Article
    Trans-sutural distraction osteogenesis has been proposed as an alternative technique of craniofacial remodelling surgery for craniosynostosis correction. Many studies have defined the contribution of a series of biological events to distraction osteogenesis, such as changes in gene expression, changes in suture cell behaviour and changes in suture collagen fibre characteristics. However, few studies have elucidated the systematic molecular and cellular mechanisms of trans-sutural distraction osteogenesis, and no study has highlighted the contribution of cell-cell or cell-matrix interactions with respect to the whole expansion process to date. Therefore, it is difficult to translate largely primary mechanistic insights into clinical applications and optimize the clinical outcome of trans-sutural distraction osteogenesis. In this review, we carefully summarize in detail the literature related to the effects of mechanical stretching on osteoblasts, endothelial cells, fibroblasts, immune cells (macrophages and T cells), mesenchymal stem cells and collagen fibres in sutures during the distraction osteogenesis process. We also briefly review the contribution of cell-cell or cell-matrix interactions to bone regeneration at the osteogenic suture front from a comprehensive viewpoint.
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  • 文章类型: Journal Article
    The underlying mechanism of the trans-sutural distraction osteogenesis (TSDO) technique as an effective treatment that improves the symptoms of midfacial hypoplasia syndromes is not clearly understood. Increasing findings in the orthopedics field indicate that macrophages are mechanically sensitive and their phenotypes can respond to mechanical cues. However, how macrophages respond to mechanical stretching and consequently influence osteoblast differentiation of suture-derived stem cells (SuSCs) remains unclear, particularly during the TSDO process. In the present study, we established a TSDO rat model to determine whether and how macrophages were polarized in response to stretching and consequently affected bone regeneration of the suture frontal edge. Notably, after performing immunofluorescence, RNA-sequencing, and micro-computed tomography, it was demonstrated that macrophages are first recruited by various chemokines factors and polarized to the M2 phenotype upon optimal stretching. The latter in turn regulates SuSC activity and facilitates bone regeneration in sutures. Moreover, when the activated M2 macrophages were suppressed by pharmacological manipulation, new bone microarchitecture could rarely be detected under mechanical stretching and the expansion of the sutures was clear. Additionally, macrophages achieved M2 polarization in response to the optimal mechanical stretching (10%, 0.5 Hz) and strongly facilitated SuSC osteogenic differentiation and human umbilical vein endothelial cell angiogenesis using an indirect co-culture system in vitro. Collectively, this study revealed the mechanical stimulation-immune response-bone regeneration axis and clarified at least in part how sutures achieve bone regeneration in response to mechanical force.
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  • 文章类型: Journal Article
    The purpose of this study was to evaluate the administration of recombinant human bone morphogenetic protein-2 (rhBMP-2) on trans-sutural distraction osteogenesis (TSDO) of the transverse palatal suture in growing dogs.
    A total of 36 growing dogs were used in this study. The experimental animals were treated with different elastic force and rhBMP-2. The bone regeneration was determined with X-ray, histology, and clinical evaluation. The computed values underwent statistical analyses using analysis of variance.
    The maxillary complex was most noticeably advanced with an applied elastic force of 600 g (22.4 ± 5.0 mm) and 800 g + rhBMP-2 (24 ± 5.1 mm). Immunohistochemical staining showed that the expression of bone morphogenetic protein-2 and bone morphogenetic protein-4 varied with different elastic force. These changes were statistically significant when 600 g and 800 g + rhBMP-2 were applied within 2 weeks of distraction when compared with controls (P < .05).
    The results of this study suggest that TSDO in the growing dog should be safe and well tolerated when inducing bony lengthening of the maxilla. rhBMP-2 plays an important role in bone regeneration using TSDO.
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