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Vascular and Immunobiology of the Circulatory Sphingosine 1-Phosphate Gradient
Annual Review of Physiology ( IF 18.2 ) Pub Date : 2017-02-13 00:00:00 , DOI: 10.1146/annurev-physiol-021014-071635
Keisuke Yanagida 1 , Timothy Hla 1
Affiliation  

Vertebrates are endowed with a closed circulatory system, the evolution of which required novel structural and regulatory changes. Furthermore, immune cell trafficking paradigms adapted to the barriers imposed by the closed circulatory system. How did such changes occur mechanistically? We propose that spatial compartmentalization of the lipid mediator sphingosine 1-phosphate (S1P) may be one such mechanism. In vertebrates, S1P is spatially compartmentalized in the blood and lymphatic circulation, thus comprising a sharp S1P gradient across the endothelial barrier. Circulatory S1P has critical roles in maturation and homeostasis of the vascular system as well as in immune cell trafficking. Physiological functions of S1P are tightly linked to shear stress, the key biophysical stimulus from blood flow. Thus, circulatory S1P confinement could be a primordial strategy of vertebrates in the development of a closed circulatory system. This review discusses the cellular and molecular basis of the S1P gradients and aims to interpret its physiological significance as a key feature of the closed circulatory system.

中文翻译:


循环鞘氨醇1-磷酸盐梯度的血管和免疫生物学

脊椎动物具有封闭的循环系统,其进化需要新的结构和法规变化。此外,免疫细胞运输范例适应于由封闭循环系统施加的障碍。这种变化是如何机械发生的?我们建议脂质介质鞘氨醇1-磷酸(S1P)的空间分隔可能是这种机制之一。在脊椎动物中,S1P在血液和淋巴循环中在空间上是分隔的,因此在整个内皮屏障中都包含一个急剧的S1P梯度。循环S1P在血管系统的成熟和体内平衡以及免疫细胞运输中起着至关重要的作用。S1P的生理功能与剪切应力紧密相关,剪切应力是血流的关键生物物理刺激。因此,在封闭的循环系统的发展过程中,限制S1P循环可能是脊椎动物的原始策略。这篇综述讨论了S1P梯度的细胞和分子基础,旨在解释其生理意义是封闭循环系统的关键特征。

更新日期:2017-02-13
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