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颅面发育世界之旅:从 1968 年到未来。

A journey in the world of craniofacial development: From 1968 to the future.

机构信息

Emeritus Professor of Developmental Anatomy, Department of Physiology, Anatomy and Genetics, University of Oxford, Oxford, UK.

出版信息

J Anat. 2024 Dec;245(6):816-828. doi: 10.1111/joa.14057. Epub 2024 May 18.

Abstract

This article is based on my talk at the meeting "3rd Advances in Craniosynostosis: Basic Science to Clinical Practice", held at University College, London, on 25 August 2023. It describes my contribution, together with that of my research team and external collaborators, to the field of craniofacial development. This began with my PhD research on the effects of excess vitamin A in rat embryos, which led to a study of normal as well as abnormal formation of the cranial neural tube. Many techniques for analysing morphogenetic change became available to me over the years: whole embryo culture, scanning and transmission electron microscopy, cell division analysis, immunohistochemistry and biochemical analysis of the extracellular matrix. The molecular revolution of the 1980s, and key collaborations with international research teams, enabled functional interpretation of some of the earlier morphological observations and required a change of experimental species to the mouse. Interactions between the molecular and experimental analysis of craniofacial morphogenesis in my laboratory with specialists in molecular genetics and clinicians brought my research journey near to my original aim: to contribute to a better understanding of the causes of human congenital anomalies.

摘要

本文基于我在 2023 年 8 月 25 日于伦敦大学学院举行的“颅缝早闭的第三次进展:基础科学到临床实践”会议上的演讲。它描述了我与我的研究团队和外部合作者一起对颅面发育领域的贡献。这始于我在大鼠胚胎中过量维生素 A 影响方面的博士研究,该研究导致了对正常和异常颅神经管形成的研究。多年来,我有许多用于分析形态发生变化的技术:胚胎整体培养、扫描和透射电子显微镜、细胞分裂分析、免疫组织化学和细胞外基质的生化分析。20 世纪 80 年代的分子革命,以及与国际研究团队的关键合作,使我们能够对一些早期形态学观察进行功能解释,并且需要将实验物种改为小鼠。我实验室中颅面形态发生的分子和实验分析与分子遗传学专家和临床医生的合作,使我的研究接近了我最初的目标:为更好地理解人类先天性异常的原因做出贡献。

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