Department of Orthodontics, Peking University School and Hospital of Stomatology, No. 22 Zhongguancun Avenue South, Haidian District, Beijing, 100081, PR. China.
National Engineering Laboratory for Digital and Material Technology of Stomatology,Beijing Key Laboratory of Digital Stomatology, No. 22 Zhongguancun Avenue South, Haidian District, Beijing, 100081, PR. China.
Int J Biol Sci. 2019 Jan 1;15(2):298-311. doi: 10.7150/ijbs.29183. eCollection 2019.
Craniosynostosis, is the premature fusion of one or more cranial sutures which is the second most common cranial facial anomalies. The premature cranial sutures leads to deformity of skull shape and restricts the growth of brain, which might elicit severe neurologic damage. Craniosynostosis exhibit close correlations with a varieties of syndromes. During the past two decades, as the appliance of high throughput DNA sequencing techniques, steady progresses has been made in identifying gene mutations in both syndromic and nonsyndromic cases, which allow researchers to better understanding the genetic roles in the development of cranial vault. As the enrichment of known mutations involved in the pathogenic of premature sutures fusion, multiple signaling pathways have been investigated to dissect the underlying mechanisms beneath the disease. In addition to genetic etiology, environment factors, especially mechanics, have also been proposed to have vital roles during the pathophysiological of craniosynostosis. However, the influence of mechanics factors in the cranial development remains largely unknown. In this review, we present a brief overview of the updated genetic mutations and environmental factors identified in both syndromic and nonsyndromic craniosynostosis. Furthermore, potential molecular signaling pathways and its relations have been described.
颅缝早闭是一种或多种颅骨缝过早融合的疾病,是仅次于唇腭裂的第二常见颅面畸形。颅缝过早融合会导致颅骨形状畸形和大脑生长受限,从而引发严重的神经损伤。颅缝早闭与多种综合征密切相关。在过去的二十年中,随着高通量 DNA 测序技术的应用,在综合征和非综合征病例中鉴定基因突变方面取得了稳定的进展,这使研究人员能够更好地理解颅穹窿发育过程中的遗传作用。随着涉及早期融合的已知突变的富集,已经研究了多个信号通路来剖析疾病的潜在机制。除了遗传病因外,环境因素,尤其是力学因素,也被提出在颅缝早闭的病理生理学中具有重要作用。然而,力学因素在颅部发育中的影响在很大程度上仍不清楚。在这篇综述中,我们简要概述了在综合征和非综合征性颅缝早闭中发现的最新遗传突变和环境因素。此外,还描述了潜在的分子信号通路及其关系。