先天性轻度骨脆弱性的新晶状体:一种新的Col1a1敲除小鼠模型的成骨不完全性1型。

IF 5.9 1区 医学 Q1 ENDOCRINOLOGY & METABOLISM
Lidiia Zhytnik, Laura Ventura, Anastasia Sclocco, Matthjis Verhage, Astrid D Bakker, Jae-Hyuck Shim, Wissam Beaino, Pedro M Pereira, Myrthe E Hoogeland, Vivi M Heine, Huub Maas, Richard T Jaspers, Anja Niehoff, Frank Zaucke, Vivian de Waard, E M W Eekhoff, Dimitra Micha
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引用次数: 0

摘要

成骨不全症(OI)是一种以骨脆弱为特征的遗传性疾病。它是最常见的罕见骨骼发育不良之一。最轻微的1型成骨不全,主要是由于COL1A1基因的致病性变异导致I型胶原单倍体不足,导致I型胶原减少。尽管1型成骨不全约占成骨不全人群的一半,但缺乏有效的小鼠模型阻碍了研究和治疗的发展(1)。为了解决这一空白,我们利用CRISPR/Cas系统开发了一种含有Col1a1等位基因杂合缺失的基因工程小鼠模型。在8周龄和24周龄小鼠中表征骨表型,评估骨形成(I型前胶原n端前肽)和吸收(抗酒石酸酸性磷酸酶5b)的转录组学和血清标志物。通过显微计算机断层扫描、组织形态测量和三点弯曲试验评估骨体积、微结构和强度。我们发现Col1a1与Col1a2 mRNA比值的降低决定了成骨不全小鼠骨骼中I型胶原生成的减少,这是单倍体成骨不全的潜在机制。在人成骨不全细胞模型中,包括成纤维细胞和诱导间充质干细胞,以及在编辑携带COL1A1杂合等位基因的诱导多能干细胞和间充质干细胞模型中,COL1A1与COL1A2 mRNA比值的发现支持了这一点。我们的研究结果首次表明,单倍体不全成骨的骨体积减少和骨微结构改变取决于Col1a1与Col1a2 mRNA比值的调节。这种新的小鼠模型忠实地概括了1型成骨不全,为研究这一被忽视的成骨不全患者群体的疾病机制和制定有针对性的治疗策略提供了重要工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New Lens On Congenital Mild Bone Fragility: a Novel Col1a1 Knockout Mouse Model for Osteogenesis Imperfecta Type 1.

Osteogenesis imperfecta (OI) is a genetic disorder characterized by bone fragility. It is one of the most prevalent rare skeletal dysplasias. The mildest form, OI type 1, predominantly results from collagen type I haploinsufficiency due to pathogenic variants in the COL1A1 gene, leading to reduced collagen type I. Despite OI type 1 representing approximately half of the OI population, the lack of an effective mouse model has hindered research and therapy development(1). To address this gap, we developed a genetically engineered mouse model harbouring a heterozygous deletion of the Col1a1 allele using the CRISPR/Cas system. The bone phenotype was characterised in 8- and 24-week-old mice, assessing transcriptomics and serum markers for bone formation (procollagen type I N-terminal propeptide) and resorption (tartrate-resistant acid phosphatase 5b). Bone volume, microarchitecture, and strength were evaluated by micro-computed tomography, histomorphometry and three-point bending test. We showed that the decreased Col1a1 to Col1a2 mRNA ratio determines reduced collagen type I production in OI mice bones as the underlying mechanism of haploinsufficient OI. This was supported by COL1A1 to COL1A2 mRNA ratio findings in human OI cell models, including fibroblasts and induced mesenchymal stem cells, as well as in induced pluripotent and mesenchymal stem cell models that were edited to carry a heterozygous COL1A1 allele. Our findings indicate for the first time that reduced bone volume and altered bone microarchitecture in haploinsufficient OI depends on the Col1a1 to Col1a2 mRNA ratio regulation. This novel mouse model faithfully recapitulates OI type 1 and provides a vital tool for investigating the disease mechanism and developing targeted therapeutic strategies for this large neglected OI patient population.

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来源期刊
Journal of Bone and Mineral Research
Journal of Bone and Mineral Research 医学-内分泌学与代谢
CiteScore
11.30
自引率
6.50%
发文量
257
审稿时长
2 months
期刊介绍: The Journal of Bone and Mineral Research (JBMR) publishes highly impactful original manuscripts, reviews, and special articles on basic, translational and clinical investigations relevant to the musculoskeletal system and mineral metabolism. Specifically, the journal is interested in original research on the biology and physiology of skeletal tissues, interdisciplinary research spanning the musculoskeletal and other systems, including but not limited to immunology, hematology, energy metabolism, cancer biology, and neurology, and systems biology topics using large scale “-omics” approaches. The journal welcomes clinical research on the pathophysiology, treatment and prevention of osteoporosis and fractures, as well as sarcopenia, disorders of bone and mineral metabolism, and rare or genetically determined bone diseases.
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