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外周神经血管联系:相互作用及体外模型概述

Peripheral neurovascular link: an overview of interactions and in vitro models.

作者信息

Malheiro Afonso, Wieringa Paul, Moroni Lorenzo

机构信息

Complex Tissue Regeneration Department, MERLN Institute for Technology-Inspired Regenerative Medicine, Universiteitssingel 40, 6229ER Maastricht, The Netherlands.

Complex Tissue Regeneration Department, MERLN Institute for Technology-Inspired Regenerative Medicine, Universiteitssingel 40, 6229ER Maastricht, The Netherlands.

出版信息

Trends Endocrinol Metab. 2021 Aug;32(8):623-638. doi: 10.1016/j.tem.2021.05.004. Epub 2021 Jun 11.

Abstract

Nerves and blood vessels (BVs) establish extensive arborized networks to innervate tissues and deliver oxygen/metabolic support. Developmental cues direct the formation of these intricate and often overlapping patterns, which reflect close interactions within the peripheral neurovascular system. Besides the mutual dependence to survive and function, nerves and BVs share several receptors and ligands, as well as principles of differentiation, growth and pathfinding. Neurovascular (NV) interactions are maintained in adult life and are essential for certain regenerative mechanisms, such as wound healing. In pathological situations (e.g., type 2 diabetes mellitus), the NV system can be severely perturbed and become dysfunctional. Unwanted neural growth and vascularization are also associated with the progression of some pathologies, such as cancer and endometriosis. In this review, we describe the fundamental NV interactions in development, highlighting the similarities between both networks and wiring mechanisms. We also describe the NV contribution to regenerative processes and potential pathological dysfunctions. Finally, we provide an overview of current in vitro models used to replicate and investigate the NV ecosystem, addressing present limitations and future perspectives.

摘要

神经和血管(BVs)建立广泛的分支网络以支配组织并提供氧气/代谢支持。发育线索指导这些复杂且常常重叠的模式的形成,这反映了周围神经血管系统内的密切相互作用。除了生存和功能上的相互依赖,神经和BVs共享多种受体和配体,以及分化、生长和路径寻找的原则。神经血管(NV)相互作用在成年期得以维持,并且对于某些再生机制(如伤口愈合)至关重要。在病理情况下(例如2型糖尿病),NV系统可能会受到严重干扰并功能失调。不必要的神经生长和血管生成也与某些疾病(如癌症和子宫内膜异位症)的进展有关。在这篇综述中,我们描述了发育过程中基本的NV相互作用,强调了两个网络和布线机制之间的相似性。我们还描述了NV对再生过程的贡献以及潜在的病理功能障碍。最后,我们概述了当前用于复制和研究NV生态系统的体外模型,讨论了当前的局限性和未来的前景。

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