Role of CCN2/CTGF/Hcs24 in bone growth.

Satoshi Kubota, Masaharu Takigawa
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引用次数: 98

Abstract

Our bones mostly develop through a process called endochondral ossification. This process is initiated in the cartilage prototype of each bone and continues through embryonic and postnatal development until the end of skeletal growth. Therefore, the central regulator of endochondral ossification is the director of body construction, which is, in other words, the determinant of skeletal size and shape. We suggest that CCN2/CTGF/Hcs24 (CCN2) is a molecule that conducts all of the procedures of endochondral ossification. CCN2, a member of the CCN family of novel modulator proteins, displays multiple functions by manipulating the local information network, using its conserved modules as an interface with a variety of other biomolecules. Under a precisely designed four-dimensional genetic program, CCN2 is produced from a limited population of chondrocytes and acts on all of the mesenchymal cells inside the bone callus to promote the integrated growth of the bone. Furthermore, the utility of CCN2 as regenerative therapeutics against connective tissue disorders, such as bone and cartilage defects and osteoarthritis, has been suggested. Over the years, the pathological action of CCN2 has been suggested. Nevertheless, it can also be regarded as another aspect of the physiological and regenerative function of CCN2, which is discussed as well.

CCN2/CTGF/Hcs24在骨生长中的作用。
我们的骨骼主要是通过软骨内成骨的过程发育的。这个过程开始于每个骨骼的软骨原型,并通过胚胎和出生后的发育持续到骨骼生长结束。因此,软骨内成骨的中枢调节者是身体构造的主管,换句话说,它决定了骨骼的大小和形状。我们认为CCN2/CTGF/Hcs24 (CCN2)是一个引导软骨内成骨所有过程的分子。CCN2是新型调节蛋白CCN家族的一员,通过操纵局部信息网络,利用其保守模块作为与各种其他生物分子的接口,显示出多种功能。在精确设计的四维遗传程序下,CCN2由有限的软骨细胞产生,并作用于骨痂内的所有间充质细胞,以促进骨的整体生长。此外,已经提出CCN2作为结缔组织疾病(如骨和软骨缺损和骨关节炎)的再生疗法的效用。多年来,CCN2的病理作用已被提出。然而,它也可以被认为是CCN2生理和再生功能的另一个方面,这一点我们也进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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