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骨再生的血管化策略。

Vascularization strategies for bone regeneration.

作者信息

Krishnan Laxminarayanan, Willett Nick J, Guldberg Robert E

机构信息

Parker H. Petit Institute for Bioengineering and Bioscience, George W. Woodruff School of Mechanical Engineering, Georgia Institute of Technology, 315 Ferst Drive, Atlanta, GA, 30332-0363, USA.

出版信息

Ann Biomed Eng. 2014 Feb;42(2):432-44. doi: 10.1007/s10439-014-0969-9. Epub 2014 Jan 28.

Abstract

The functional regeneration of thick vascularized tissues such as bone and muscle is complicated by the large volume of lost tissue, challenging biomechanical environment, and the need to reproduce the highly organized structure of both the native tissue extracellular matrix and its vascular support system. Stem cell or progenitor cell delivery approaches, for example, continue to be plagued by low viability and engraftment in part due to the initial absence of a vascular supply. Recognition of diffusion limitations in thick tissues has prompted regenerative strategies that seek to accelerate establishment of a functional vasculature. The successful design of robust regeneration strategies for these challenging clinical scenarios will rely on a thorough understanding of interactions between construct design parameters and host biological and biomechanical factors. Here, we discuss the critical role of vascularization in normal bone tissue homeostasis and repair, vascular network adaptation to the local biomechanical environment, and the future directions of revascularization approaches being developed and integrated with bone regeneration strategies.

摘要

诸如骨骼和肌肉等厚层血管化组织的功能再生因大量组织缺失、具有挑战性的生物力学环境以及重现天然组织细胞外基质及其血管支持系统的高度组织结构的需求而变得复杂。例如,干细胞或祖细胞递送方法仍然受到低存活率和植入率的困扰,部分原因是最初缺乏血管供应。对厚组织中扩散限制的认识促使了旨在加速功能性脉管系统建立的再生策略的产生。针对这些具有挑战性的临床情况成功设计强大的再生策略将依赖于对构建体设计参数与宿主生物学和生物力学因素之间相互作用的透彻理解。在此,我们讨论血管化在正常骨组织稳态和修复中的关键作用、血管网络对局部生物力学环境的适应性,以及正在开发并与骨再生策略相结合的血管再生方法的未来方向。

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