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Notch 在血管内皮生物学中的作用。

Role of Notch in endothelial biology.

机构信息

Molecular Genetics of Angiogenesis Group, Centro Nacional de Investigaciones Cardiovasculares (CNIC), Melchor Fernández Almagro 3, 28029, Madrid, Spain.

Faculty of Experimental Sciences, Universidad Francisco de Vitoria, Madrid, Spain.

出版信息

Angiogenesis. 2021 May;24(2):237-250. doi: 10.1007/s10456-021-09793-7. Epub 2021 May 29.

Abstract

The Notch signalling pathway is one of the main regulators of endothelial biology. In the last 20 years the critical function of Notch has been uncovered in the context of angiogenesis, participating in tip-stalk specification, arterial-venous differentiation, vessel stabilization, and maturation processes. Importantly, pharmacological compounds targeting distinct members of the Notch signalling pathway have been used in the clinics for cancer therapy. However, the underlying mechanisms that support the variety of outcomes triggered by Notch in apparently opposite contexts such as angiogenesis and vascular homeostasis remain unknown. In recent years, advances in -omics technologies together with mosaic analysis and high molecular, cellular and temporal resolution studies have allowed a better understanding of the mechanisms driven by the Notch signalling pathway in different endothelial contexts. In this review we will focus on the main findings that revisit the role of Notch signalling in vascular biology. We will also discuss potential future directions and technologies that will shed light on the puzzling role of Notch during endothelial growth and homeostasis. Addressing these open questions may allow the improvement and development of therapeutic strategies based on modulation of the Notch signalling pathway.

摘要

Notch 信号通路是内皮生物学的主要调节因子之一。在过去的 20 年中, Notch 的关键功能在血管生成中被揭示出来,参与了尖端-干标定、动脉-静脉分化、血管稳定和成熟过程。重要的是,针对 Notch 信号通路不同成员的药理学化合物已在临床上用于癌症治疗。然而,支持 Notch 在血管生成和血管稳态等明显相反的情况下触发多种结果的潜在机制尚不清楚。近年来,-omics 技术的进步以及嵌合体分析和高分子、细胞和时间分辨率研究,使得我们能够更好地理解 Notch 信号通路在不同内皮环境中的驱动机制。在这篇综述中,我们将重点介绍重新审视 Notch 信号在血管生物学中的作用的主要发现。我们还将讨论潜在的未来方向和技术,这些将揭示 Notch 在血管内皮生长和稳态中的令人费解的作用。解决这些悬而未决的问题可能会允许改进和开发基于 Notch 信号通路调节的治疗策略。

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