Cardiovascular Research Center and Department of Cellular and Molecular Physiology, Yale University School of Medicine, New Haven, CT 06510, USA.
Department of Natural Sciences, University Bonn-Rhein-Sieg, D-53559 Rheinbach, Germany.
Int J Mol Sci. 2024 May 10;25(10):5204. doi: 10.3390/ijms25105204.
Bone is a metabolically dynamic structure that is generally remodeled throughout the lifetime of an individual but often causes problems with increasing age. A key player for bone development and homeostasis, but also under pathological conditions, is the bone vasculature. This complex system of arteries, veins, and capillaries forms distinct structures where each subset of endothelial cells has important functions. Starting with the basic process of angiogenesis and bone-specific blood vessel formation, coupled with initial bone formation, the importance of different vascular structures is highlighted with respect to how these structures are maintained or changed during homeostasis, aging, and pathological conditions. After exemplifying the current knowledge on bone vasculature, this review will move on to exosomes, a novel hotspot of scientific research. Exosomes will be introduced starting from their discovery via current isolation procedures and state-of-the-art characterization to their role in bone vascular development, homeostasis, and bone regeneration and repair while summarizing the underlying signal transduction pathways. With respect to their role in these processes, especially mesenchymal stem cell-derived extracellular vesicles are of interest, which leads to a discussion on patented applications and an update on ongoing clinical trials. Taken together, this review provides an overview of bone vasculature and bone regeneration, with a major focus on how exosomes influence this intricate system, as they might be useful for therapeutic purposes in the near future.
骨骼是一种代谢活跃的结构,通常在个体的一生中都在不断重塑,但随着年龄的增长,它常常会出现问题。骨骼血管系统是骨骼发育和稳态的关键参与者,但也是在病理条件下的关键参与者。这个复杂的动脉、静脉和毛细血管系统形成了独特的结构,其中每个内皮细胞亚群都具有重要的功能。从血管生成和骨骼特异性血管形成的基本过程开始,加上初始的骨骼形成,不同血管结构的重要性突出了在稳态、衰老和病理条件下这些结构是如何被维持或改变的。在举例说明了骨骼血管系统的现有知识之后,本综述将转向外泌体,这是一个新的科学研究热点。将从它们的发现开始介绍外泌体,包括当前的分离程序和最先进的特征描述,以及它们在骨骼血管发育、稳态、骨骼再生和修复中的作用,同时总结潜在的信号转导途径。鉴于它们在这些过程中的作用,特别是间充质干细胞衍生的细胞外囊泡引起了人们的兴趣,这导致了对专利应用的讨论和正在进行的临床试验的更新。总之,本综述概述了骨骼血管系统和骨骼再生,重点介绍了外泌体如何影响这个复杂的系统,因为它们在不久的将来可能对治疗有帮助。