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Recent insights into bone development, homeostasis, and repair in type 1 neurofibromatosis (NF1).

机译:对1型神经纤维瘤病(NF1)的骨骼发育,体内平衡和修复的最新见解。

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Neurofibromatosis type 1 (NF1) is one of the most common single gene syndromes and is typified by a range of characteristic but variably penetrant manifestations. The orthopaedic manifestations of congenital pseudarthrosis of the tibia (CPT) and scoliosis, along with other skeletal defects including sphenoid wing dysplasia, rib penciling, and gracile bones have been classically associated with NF1. Added to this, several recent studies have reported a high prevalence of osteoporosis or osteopenia in NF1 cohorts. Clues to the underlying molecular and cellular deficiencies that cause these bony defects can be gleaned from genetically modified mouse models of Nf1 gene deficiency. These studies suggest that a variety of different cell lineages may be adversely affected by Nf1 haploinsufficiency or by double inactivation of the Nf1 gene. Osteoblasts, osteoclasts, chondrocytes, fibroblasts, and vascular endothelial cells all express the Nf1 gene product, neurofibromin, and may be functionally compromised when levels are decreased or absent. This paper reviews the current literature on NF1 bone development, homeostatic regulation, and repair, and highlights some emerging themes that may have relevance for managing orthopaedic disorders that can arise in individuals with NF1.
机译:1型神经纤维瘤病(NF1)是最常见的单基因综合征之一,其特征是一系列特征性但渗透性不同的表现。先天性胫骨假关节(CPT)和脊柱侧凸的矫形表现与其他骨骼缺陷(包括蝶骨翼发育不良,肋骨铅笔和细骨)均与NF1有关。除此之外,最近的一些研究报道了NF1人群中骨质疏松症或骨质减少的普遍性。可以从Nf1基因缺陷的转基因小鼠模型中找到导致这些骨缺损的潜在分子和细胞缺陷的线索。这些研究表明,Nf1单倍剂量不足或Nf1基因的双重失活可能会对多种不同的细胞谱系产生不利影响。成骨细胞,破骨细胞,软骨细胞,成纤维细胞和血管内皮细胞均表达Nf1基因产物神经纤维蛋白,当水平降低或不存在时,其功能可能受损。本文回顾了有关NF1骨发育,体内稳态调节和修复的最新文献,并重点介绍了一些新兴主题,这些主题可能与管理可能患有NF1的骨科疾病有关。

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