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Col2a1谱系追踪显示,膝关节半月板具有复杂的细胞起源。

Col2a1 lineage tracing reveals that the meniscus of the knee joint has a complex cellular origin.

作者信息

Hyde Gareth, Boot-Handford Raymond P, Wallis Gillian A

机构信息

Wellcome Trust Centre for Cell-Matrix Research, Faculty of Life Sciences, University of Manchester, Manchester, USA.

出版信息

J Anat. 2008 Nov;213(5):531-8. doi: 10.1111/j.1469-7580.2008.00966.x.

Abstract

The knee joint consists of multiple interacting tissues that are prone to injury- and disease-related degeneration. Although much is known about the structure and function of the knee's constituent tissues, relatively little is known about their cellular origin and the mechanisms governing their segregation. To investigate the origin and segregation of knee tissues in vivo we performed lineage tracing using a Col2a1-Cre/R26R mouse model system and compared the data obtained with actual Col2a1 expression. These studies demonstrated that at E13.5 the interzone at the presumptive joint site forms when cells within the Col2a1-expressing anlagen cease expression of Col2a1 and not through cellular invasion into the anlagen. Later in development these interzone cells form the cruciate ligament and inner medial meniscus of the knee. At E14.5, after interzone formation, cells that had never expressed Col2a1 appeared in the joint and formed the lateral meniscus. Furthermore, cells with a Col2a1-positive expression history combined with the negative cells to form the medial meniscus. The invading cells started to express Col2a1 1 week after birth, resulting in all cells within the meniscus synthesizing collagen II. These findings support a model of knee development in which cells present in the original anlagen combine with invading cells in the formation of this complex joint.

摘要

膝关节由多种相互作用的组织组成,这些组织容易发生与损伤和疾病相关的退变。尽管人们对膝关节组成组织的结构和功能了解很多,但对它们的细胞起源以及控制其分离的机制却知之甚少。为了在体内研究膝关节组织的起源和分离,我们使用Col2a1-Cre/R26R小鼠模型系统进行了谱系追踪,并将获得的数据与实际的Col2a1表达进行了比较。这些研究表明,在胚胎第13.5天,当表达Col2a1的原基内的细胞停止表达Col2a1时,而非通过细胞侵入原基,推定关节部位的中间带形成。在发育后期,这些中间带细胞形成膝关节的交叉韧带和内侧半月板内部。在胚胎第14.5天,中间带形成后,从未表达过Col2a1的细胞出现在关节中并形成外侧半月板。此外,具有Col2a1阳性表达历史的细胞与阴性细胞结合形成内侧半月板。侵入细胞在出生后1周开始表达Col2a1,导致半月板内所有细胞合成胶原蛋白II。这些发现支持了一种膝关节发育模型,即原始原基中存在的细胞与侵入细胞结合形成这个复杂的关节。

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