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骨骼脉管系统——为骨组织注入生机。

The skeletal vascular system - Breathing life into bone tissue.

机构信息

Laboratory of Clinical and Experimental Endocrinology, Department of Chronic Diseases, Metabolism and Ageing, KU Leuven, 3000 Leuven, Belgium; Prometheus, Division of Skeletal Tissue Engineering, KU Leuven, 3000 Leuven, Belgium.

Laboratory of Clinical and Experimental Endocrinology, Department of Chronic Diseases, Metabolism and Ageing, KU Leuven, 3000 Leuven, Belgium; Prometheus, Division of Skeletal Tissue Engineering, KU Leuven, 3000 Leuven, Belgium.

出版信息

Bone. 2018 Oct;115:50-58. doi: 10.1016/j.bone.2017.08.022. Epub 2017 Aug 26.

Abstract

During bone development, homeostasis and repair, a dense vascular system provides oxygen and nutrients to highly anabolic skeletal cells. Characteristic for the vascular system in bone is the serial organization of two capillary systems, each typified by specific morphological and physiological features. Especially the arterial capillaries mediate the growth of the bone vascular system, serve as a niche for skeletal and hematopoietic progenitors and couple angiogenesis to osteogenesis. Endothelial cells and osteoprogenitor cells interact not only physically, but also communicate to each other by secretion of growth factors. A vital angiogenic growth factor is vascular endothelial growth factor and its expression in skeletal cells is controlled by osteogenic transcription factors and hypoxia signaling, whereas the secretion of angiocrine factors by endothelial cells is regulated by Notch signaling, blood flow and possibly hypoxia. Bone loss and impaired fracture repair are often associated with reduced and disorganized blood vessel network and therapeutic targeting of the angiogenic response may contribute to enhanced bone regeneration.

摘要

在骨骼发育、稳态和修复过程中,密集的血管系统为高度合成代谢的骨骼细胞提供氧气和营养。骨骼中血管系统的特征是两个毛细血管系统的序列组织,每个系统都具有特定的形态和生理特征。特别是动脉毛细血管介导了骨血管系统的生长,作为骨骼和造血祖细胞的龛位,并将血管生成与成骨作用相偶联。内皮细胞和造骨前体细胞不仅通过物理相互作用,还通过分泌生长因子进行交流。一种重要的血管生成生长因子是血管内皮生长因子,其在骨骼细胞中的表达受成骨转录因子和缺氧信号的控制,而内皮细胞分泌血管生成因子则受 Notch 信号、血流和可能的缺氧调节。骨丢失和骨折修复受损常与血管网络减少和紊乱有关,针对血管生成反应的治疗可能有助于增强骨再生。

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