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Collagen fibril formation in vitro and in vivo

机译:胶原纤维在体外和体内形成

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摘要

It is a great honour to be awarded the Fell Muir Prize for 2016 by the British Society of Matrix Biology. As recipient of the prize, I am taking the opportunity to write a minireview on collagen fibrillogenesis, which has been the focus of my research for 33 years. This is the process by which triple helical collagen molecules assemble into centimetre-long fibrils in the extracellular matrix of animals. The fibrils appeared a billion years ago at the dawn of multicellular animal life as the primary scaffold for tissue morphogenesis. The fibrils occur in exquisite three-dimensional architectures that match the physical demands of tissues, for example orthogonal lattices in cornea, basket weaves in skin and blood vessels, and parallel bundles in tendon, ligament and nerves. The question of how collagen fibrils are formed was posed at the end of the nineteenth century. Since then, we have learned about the structure of DNA and the peptide bond, understood how plants capture the sun's energy, cloned animals, discovered antibiotics and found ways of editing our genome in the pursuit of new cures for diseases. However, how cells generate tissues from collagen fibrils remains one of the big unsolved mysteries in biology. In this review, I will give a personal account of the topic and highlight some of the approaches that my research group are taking to find new insights.
机译:非常荣幸被英国矩阵生物学学会授予2016年Fell Muir奖。作为该奖项的获得者,我借此机会撰写有关胶原纤维形成的小型综述,这是我33年来的研究重点。这是三螺旋胶原分子在动物细胞外基质中组装成厘米长的原纤维的过程。十亿年前,原纤维出现在多细胞动物生命的早期,是组织形态发生的主要支架。原纤维以符合组织物理需求的精美三维结构形式出现,例如角膜中的正交格子,皮肤和血管中的篮子编织以及肌腱,韧带和神经中的平行束。在十九世纪末提出了如何形成胶原蛋白原纤维的问题。从那时起,我们了解了DNA和肽键的结构,了解了植物如何捕获太阳的能量,克隆动物,发现抗生素以及寻找编辑基因组的方法以寻求新的疾病治疗方法。然而,细胞如何从胶原纤维中产生组织仍然是生物学中尚未解决的大谜团之一。在这篇评论中,我将对这个话题进行个人介绍,并重点介绍我的研究小组正在采用的一些方法来寻找新的见解。

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    Kadler, Karl;

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  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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