血管生成的时间动力学:机械调节通路的新作用。

IF 4.3 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Shayan Zarin-Bal, Margot Passier, Katie Bentley, Tommaso Ristori
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引用次数: 0

摘要

控制新血管的形成,即血管生成,是再生医学成功的关键挑战。我们对所涉及的动态机制的不完全理解阻碍了有效策略的发展。在生理性血管生成过程中,内皮细胞通过组织成尖端和柄细胞的表型模式,在细胞间信号交流的介导下,确保了功能性血管网络的形成。虽然基础研究确定了参与茎尖选择过程的主要信号通路,但最近的研究强调了这些信号通路的时间动态在决定最终血管网络拓扑结构中的重要性。在这篇综述中,我们讨论了一些研究,在这些研究中,实验和计算方法之间的协同方法揭示了尖柄选择的新的时间调节因子,从而对血管生成有了新的理解。接下来,我们提出越来越多的证据表明,机械因素,如细胞外基质刚度、循环应变和剪切应力,是茎尖选择和血管生成动力学的潜在时间调节剂。未来的研究集中在这个有希望的方向上,可以开发出利用机械信号的时间变化来引导血管生长的新方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Temporal dynamics of angiogenesis: the emerging role of mechanoregulated pathways.

Temporal dynamics of angiogenesis: the emerging role of mechanoregulated pathways.

Temporal dynamics of angiogenesis: the emerging role of mechanoregulated pathways.

Controlling the formation of new blood vessels, i.e. angiogenesis, is a critical challenge for the success of regenerative medicine. The development of effective strategies is hindered by our incomplete understanding of the dynamic mechanisms involved. During physiological angiogenesis, endothelial cells ensure the formation of a functional vascular network by organizing into phenotypic patterns of tip and stalk cells, as mediated by cell-cell signaling communication. While fundamental research identified the major signaling pathways involved in the tip-stalk selection process, recent studies have highlighted the importance of the temporal dynamics of these signaling pathways in determining the final vascular network topology. In this review, we discuss research studies where synergistic approaches between experimental and computational methods led to a renovated understanding of angiogenesis by revealing new temporal regulators of tip-stalk selection. Next, we present increasing evidence suggesting that mechanical cues, such as extracellular matrix stiffness, cyclic strain, and shear stress, are potential temporal regulators of the dynamics of tip-stalk selection and angiogenesis. Future research focused on this promising direction could enable the development of novel approaches that leverage temporal variations of mechanical cues to steer blood vessel growth.

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来源期刊
Biochemical Society transactions
Biochemical Society transactions 生物-生化与分子生物学
CiteScore
7.80
自引率
0.00%
发文量
351
审稿时长
3-6 weeks
期刊介绍: Biochemical Society Transactions is the reviews journal of the Biochemical Society. Publishing concise reviews written by experts in the field, providing a timely snapshot of the latest developments across all areas of the molecular and cellular biosciences. Elevating our authors’ ideas and expertise, each review includes a perspectives section where authors offer comment on the latest advances, a glimpse of future challenges and highlighting the importance of associated research areas in far broader contexts.
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