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首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Expression of Semaphorin-3A and its receptors in endochondral ossification: potential role in skeletal development and innervation.
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Expression of Semaphorin-3A and its receptors in endochondral ossification: potential role in skeletal development and innervation.

机译:Semaphorin-3A及其受体在软骨内骨化中的表达:在骨骼发育和神经支配中的潜在作用。

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摘要

Bone tissue is densely innervated, and there is increasing evidence for a neural control of bone metabolism. Semaphorin-3A is a very important regulator of neuronal targeting in the peripheral nervous system as well as in angiogenesis, and knockout of the Semaphorin-3A gene induces abnormal bone and cartilage development. We analyzed the spatial and temporal expression patterns of Semaphorin-3A signaling molecules during endochondral ossification, in parallel with the establishment of innervation. We show that osteoblasts and chondrocytes differentiated in vitro express most members of the Semaphorin-3A signaling system (Semaphorin-3A, Neuropilin-1, and Plexins-A1 and -A2). In vitro, osteoclasts express most receptor chains but not the ligand. In situ, these molecules are all expressed in the periosteum and by resting, prehypertrophic and hypertrophic chondrocytes in ossification centers before the onset of neurovascular invasion. They are detected later in osteoblasts and also osteoclasts, with differences in intensity and regional distribution. Semaphorin-3A and Neuropilin-1 are also expressed in the bone marrow. Plexin-A3 is not expressed by bone cell lineages in vitro. It is detected early in the periosteum and hypertrophic chondrocytes. After the onset of ossification, this chain is restricted to a network of cell processes in close vicinity to the cells lining the trabeculae, similar to the pattern observed for neural markers at the same stages. After birth, while the density of innervation decreases, Plexin-A3 is strongly expressed by blood vessels on the ossification front. In conclusion, Semaphorin-3A signaling is present in bone and seems to precede or coincide at the temporal but also spatial level with the invasion of bone by blood vessels and nerve fibers. Expression patterns suggest Plexin-A3/Neuropilin-1 as a candidate receptor in target cells for the regulation of bone innervation by Semaphorin-3A.
机译:骨组织被密集地支配,并且越来越多的证据表明神经控制骨代谢。 Semaphorin-3A是外周神经系统以及血管生成中神经元靶向的非常重要的调节剂,Semaphorin-3A基因的敲除会诱导异常的骨骼和软骨发育。我们分析了神经内膜骨化过程中Semaphorin-3A信号分子的时空表达模式,与神经支配的建立同时进行。我们显示体外分化的成骨细胞和软骨细胞表达Semaphorin-3A信号系统的大多数成员(Semaphorin-3A,Neuropilin-1和Plexins-A1和-A2)。在体外,破骨细胞表达大多数受体链,但不表达配体。这些分子全部在骨膜中表达,并在神经血管浸润开始之前通过在骨化中心的静息,肥大和肥大的软骨细胞表达。后来在成骨细胞和破骨细胞中检测到它们,但强度和区域分布有所不同。 Semaphorin-3A和Neuropilin-1在骨髓中也有表达。骨细胞谱系在体外不表达Plexin-A3。在骨膜和肥大软骨细胞中较早发现。在骨化开始后,该链被限制在靠近小梁衬里的细胞的细胞过程网络中,类似于在同一阶段观察到的神经标记物的模式。出生后,虽然神经支配的密度降低,但在骨化前沿的血管中强烈表达Plexin-A3。总之,Semaphorin-3A信号传导存在于骨骼中,似乎在时间和空间水平上先于血管或神经纤维侵入骨骼,甚至在时间上或同时发生。表达模式表明Plexin-A3 / Neuropilin-1作为靶细胞中的候选受体,可通过Semaphorin-3A调节骨神经。

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