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解析控制出生后血管生长和比例的设计原则。

Resolving the design principles that control postnatal vascular growth and scaling.

作者信息

Pi Danielle, Braun Jonas, Dutta Sayantan, Patra Debabrata, Bougaran Pauline, Mompeón Ana, Ma Feiyang, Stock Stuart R, Choi Sharon, García-Ortega Lourdes, Pratama Muhammad Yogi, Pichardo Diomarys, Ramkhelawon Bhama, Benedito Rui, Bautch Victoria L, Ornitz David M, Goyal Yogesh, Iruela-Arispe M Luisa

出版信息

bioRxiv. 2024 Dec 11:2024.12.10.627758. doi: 10.1101/2024.12.10.627758.

Abstract

After birth, tissues grow continuously until reaching adult size, with each organ exhibiting unique cellular dynamics, growth patterns, and (stem or non-stem) cell sources. Using a suite of experimental and computational multiscale approaches, we found that aortic expansion is guided by specific biological principles and scales with the vertebral column rather than animal body weight. Expansion proceeds via two distinct waves of arterial cell proliferation along blood flow that are spatially stochastic, yet temporally coordinated. Each wave exhibits unique cell cycle kinetics and properties, with the first wave exhibiting cell cycle durations as fast as 6 hours. Single-cell RNA sequencing showed changes in fatty acid metabolism concomitant with an increase in cell size. Mathematical modeling and experiments indicated endothelial cell extrusion is essential for homeostatic aortic growth and balancing excess proliferation. In a genetic model of achondroplasia, the aorta achieves proper scaling through enhanced cell extrusion while maintaining normal proliferation dynamics. Collectively, these results provide a blueprint of the principles that orchestrate aortic growth which depends entirely on differentiated cell proliferation rather than resident stem cells.

摘要

出生后,组织持续生长直至达到成年大小,每个器官都表现出独特的细胞动态、生长模式和(干细胞或非干细胞)细胞来源。通过一系列实验和计算多尺度方法,我们发现主动脉扩张受特定生物学原理的引导,并与脊柱成比例,而非与动物体重成比例。扩张通过沿血流的两个不同的动脉细胞增殖波进行,这些增殖波在空间上是随机的,但在时间上是协调的。每个波都表现出独特的细胞周期动力学和特性,第一个波的细胞周期持续时间快至6小时。单细胞RNA测序显示脂肪酸代谢的变化与细胞大小的增加同时出现。数学建模和实验表明,内皮细胞挤出对于主动脉的稳态生长和平衡过度增殖至关重要。在软骨发育不全的遗传模型中,主动脉通过增强细胞挤出实现适当的比例缩放,同时保持正常的增殖动态。总体而言,这些结果提供了一个协调主动脉生长的原理蓝图,主动脉生长完全依赖于分化细胞的增殖,而非驻留干细胞。

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