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Dystrophic spinal deformities in a neurofibromatosis type 1 murine model

机译:1型神经纤维瘤病模型中的营养不良性脊柱畸形

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摘要

Despite the high prevalence and significant morbidity of spinal anomalies in neurofibromatosis type 1 (NF1), the pathogenesis of these defects remains largely unknown. Here, we present two murine models: Nf1flox/-;PeriCre and Nf1flox/-;Col.2.3Cre mice, which recapitulate spinal deformities seen in the human disease. Dynamic histomorphometry and microtomographic studies show recalcitrant bone remodeling and distorted bone microarchitecture within the vertebral spine of Nf1flox/-;PeriCre and Nf1flox/-;Col2.3Cre mice, with analogous histological features present in a human patient with dystrophic scoliosis. Intriguingly, 36-60% of Nf1flox/-;PeriCre and Nf1flox/-;Col2.3Cre mice exhibit segmental vertebral fusion anomalies with boney obliteration of the intervertebral disc (IVD). While analogous findings have not yet been reported in the NF1 patient population, we herein present two case reports of IVD defects and interarticular vertebral fusion in patients with NF1. Collectively, these data provide novel insights regarding the pathophysiology of dystrophic spinal anomalies in NF1, and provide impetus for future radiographic analyses of larger patient cohorts to determine whether IVD and vertebral fusion defects may have been previously overlooked or underreported in the NF1 patient population.
机译:尽管在1型神经纤维瘤病(NF1)中脊椎畸形的高患病率和高发病率,但这些缺陷的发病机理仍然未知。在这里,我们介绍了两种鼠模型:Nf1flox /-; PeriCre和Nf1flox /-; Col.2.3Cre小鼠,它们概括了人类疾病中出现的脊柱畸形。动态组织形态学和显微照相术研究显示,Nf1flox /-; PeriCre和Nf1flox /-; Col2.3Cre小鼠的脊柱内顽固性骨重塑和扭曲的骨微结构,在患有营养不良性脊柱侧凸的人类患者中具有类似的组织学特征。有趣的是,36-60%的Nf1flox /-; PeriCre和Nf1flox /-; Col2.3Cre小鼠表现出节段性椎骨融合异常,并椎间盘骨被骨性liter灭(IVD)。虽然尚未在NF1患者人群中报道类似的发现,但我们在此介绍了NF1患者IVD缺损和关节间椎体融合的两个病例报告。总的来说,这些数据为NF1的营养不良性脊柱异常的病理生理学提供了新颖的见解,并为将来对更大的患者队列进行放射线照相分析提供动力,以确定在NF1的患者人群中IVD和椎骨融合缺陷是否先前被忽视或报道不足。

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