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The Morphogenesis of Cranial Sutures in Zebrafish

机译:斑马鱼颅骨缝线的形态发生

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摘要

Using morphological, histological, and TEM analyses of the cranium, we provide a detailed description of bone and suture growth in zebrafish. Based on expression patterns and localization, we identified osteoblasts at different degrees of maturation. Our data confirm that, unlike in humans, zebrafish cranial sutures maintain lifelong patency to sustain skull growth. The cranial vault develops in a coordinated manner resulting in a structure that protects the brain. The zebrafish cranial roof parallels that of higher vertebrates and contains five major bones: one pair of frontal bones, one pair of parietal bones, and the supraoccipital bone. Parietal and frontal bones are formed by intramembranous ossification within a layer of mesenchyme positioned between the dermal mesenchyme and meninges surrounding the brain. The supraoccipital bone has an endochondral origin. Cranial bones are separated by connective tissue with a distinctive architecture of osteogenic cells and collagen fibrils. Here we show RNA in situ hybridization for col1a1a, col2a1a, col10a1, bglap/osteocalcin, fgfr1a, fgfr1b, fgfr2, fgfr3, foxq1, twist2, twist3, runx2a, runx2b, sp7/osterix, and spp1/ osteopontin, indicating that the expression of genes involved in suture development in mammals is preserved in zebrafish. We also present methods for examining the cranium and its sutures, which permit the study of the mechanisms involved in suture patency as well as their pathological obliteration. The model we develop has implications for the study of human disorders, including craniosynostosis, which affects 1 in 2,500 live births.
机译:使用颅骨的形态,组织学和TEM分析,我们提供了斑马鱼骨骼和缝线生长的详细描述。基于表达模式和定位,我们鉴定了不同成熟程度的成骨细胞。我们的数据证实,与人类不同,斑马鱼的颅骨缝线保持终生通畅,以维持头骨的生长。颅穹顶以协调的方式发展,形成保护大脑的结构。斑马鱼的颅骨屋顶与高等脊椎动物的颅骨平行,并包含五个主要骨骼:一对额骨,一对顶骨和枕骨上骨。顶骨和额骨是由位于真皮间充质和大脑周围脑膜之间的一层间充质内的膜内骨化形成的。枕骨上骨具有软骨内起源。颅骨由结缔组织隔开,结缔组织具有成骨细胞和胶原原纤维的独特结构。在这里我们显示了col1a1a,col2a1a,col10a1,bglap / osteocalcin,fgfr1a,fgfr1b,fgfr2,fgfr3,foxq1,twist2,twist3,runx2a,runx2b,sp7 / osterix和spp1 /骨桥蛋白表达的RNA原位杂交,表明哺乳动物缝线发育中涉及的基因被保存在斑马鱼中。我们还介绍了检查颅骨及其缝线的方法,这些方法可以研究涉及缝线通畅的机制及其病理消失。我们开发的模型对人类疾病的研究具有重要意义,其中包括颅突神经病,影响2500名活产婴儿中的1名。

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