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在新型体外预处理平台中人体隐静脉对跨壁氧梯度的反应

Human Saphenous Vein Response to Trans-wall Oxygen Gradients in a Novel Ex Vivo Conditioning Platform.

作者信息

Piola Marco, Prandi Francesca, Fiore Gianfranco Beniamino, Agrifoglio Marco, Polvani Gianluca, Pesce Maurizio, Soncini Monica

机构信息

Dipartimento di Elettronica, Informazione e Bioingegneria, Politecnico di Milano, P.zza Leonardo da Vinci 32, 20133, Milan, Italy.

Unità di Ingegneria Tissutale, Centro Cardiologico Monzino-IRCCS, Via Parea 4, 20138, Milan, Italy.

出版信息

Ann Biomed Eng. 2016 May;44(5):1449-61. doi: 10.1007/s10439-015-1434-0. Epub 2015 Aug 29.

DOI:10.1007/s10439-015-1434-0
PMID:26319011
Abstract

Autologous saphenous veins are commonly used for the coronary artery bypass grafting even if they are liable to progressive patency reduction, known as 'vein graft disease'. Although several cellular and molecular causes for vein graft disease have been identified using in vivo models, the metabolic cues induced by sudden interruption of vasa vasorum blood supply have remained unexplored. In the present manuscript, we describe the design of an ex vivo culture system allowing the generation of an oxygen gradient between the luminal and the adventitial sides of the vein. This system featured a separation between the inner and the outer vessel culture circuits, and integrated a purpose-developed de-oxygenator module enabling the trans-wall oxygen distribution (high oxygen level at luminal side and low oxygen level at the adventitial side) existing in arterialized veins. Compared with standard cultures the bypass-specific conditions determined a significant increase in the proliferation of cells around adventitial vasa vasorum and an elevation in the length density of small and large caliber vasa vasorum. These results suggest, for the first time, a cause-effect relationship between the vein adventitial hypoxia and a neo-vascularization process, a factor known to predispose the arterialized vein conduits to restenosis.

摘要

自体隐静脉常用于冠状动脉旁路移植术,即便它们容易出现通畅性逐渐降低的情况,即所谓的“静脉移植物疾病”。尽管利用体内模型已确定了静脉移植物疾病的多种细胞和分子原因,但血管滋养血管血液供应突然中断所引发的代谢信号仍未得到探索。在本论文中,我们描述了一种体外培养系统的设计,该系统能够在静脉的管腔侧和外膜侧之间产生氧梯度。此系统的特点是内外血管培养回路分离,并集成了一个专门开发的脱氧器模块,可实现动脉化静脉中存在的跨壁氧分布(管腔侧高氧水平,外膜侧低氧水平)。与标准培养相比,旁路特异性条件导致外膜血管滋养血管周围细胞增殖显著增加,大小口径血管滋养血管的长度密度升高。这些结果首次表明,静脉外膜缺氧与新生血管形成过程之间存在因果关系,而新生血管形成是已知的使动脉化静脉导管易于发生再狭窄的一个因素。

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Versican is differentially regulated in the adventitial and medial layers of human vein grafts.
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Perfusion Tissue Culture Initiates Differential Remodeling of Internal Thoracic Arteries, Radial Arteries, and Saphenous Veins.灌注组织培养引发胸廓内动脉、桡动脉和大隐静脉的差异性重塑。
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