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器官系统界面的多参数成像

Multiparametric Imaging of Organ System Interfaces.

作者信息

Vandoorne Katrien, Nahrendorf Matthias

机构信息

From the Center for Systems Biology (K.V., M.N.) and Department of Imaging (K.V., M.N.), Massachusetts General Hospital and Harvard Medical School, Boston; and Cardiovascular Research Center, Massachusetts General Hospital and Harvard Medical School, Boston (M.N.).

出版信息

Circ Cardiovasc Imaging. 2017 Apr;10(4). doi: 10.1161/CIRCIMAGING.116.005613.

Abstract

Cardiovascular diseases are a consequence of genetic and environmental risk factors that together generate arterial wall and cardiac pathologies. Blood vessels connect multiple systems throughout the entire body and allow organs to interact via circulating messengers. These same interactions facilitate nervous and metabolic system's influence on cardiovascular health. Multiparametric imaging offers the opportunity to study these interfacing systems' distinct processes, to quantify their interactions, and to explore how these contribute to cardiovascular disease. Noninvasive multiparametric imaging techniques are emerging tools that can further our understanding of this complex and dynamic interplay. Positron emission tomography/magnetic resonance imaging and multichannel optical imaging are particularly promising because they can simultaneously sample multiple biomarkers. Preclinical multiparametric diagnostics could help discover clinically relevant biomarker combinations pivotal for understanding cardiovascular disease. Interfacing systems important to cardiovascular disease include the immune, nervous, and hematopoietic systems. These systems connect with classical cardiovascular organs, such as the heart and vasculature, and with the brain. The dynamic interplay between these systems and organs enables processes, such as hemostasis, inflammation, angiogenesis, matrix remodeling, metabolism, and fibrosis. As the opportunities provided by imaging expand, mapping interconnected systems will help us decipher the complexity of cardiovascular disease and monitor novel therapeutic strategies.

摘要

心血管疾病是遗传和环境风险因素共同作用的结果,这些因素会导致动脉壁和心脏病变。血管连接着全身的多个系统,并通过循环信使使器官相互作用。同样,这些相互作用也促进了神经系统和代谢系统对心血管健康的影响。多参数成像为研究这些相互连接系统的不同过程、量化它们之间的相互作用以及探索这些因素如何导致心血管疾病提供了机会。非侵入性多参数成像技术是新兴工具,可加深我们对这种复杂动态相互作用的理解。正电子发射断层扫描/磁共振成像和多通道光学成像尤其具有前景,因为它们能够同时检测多种生物标志物。临床前多参数诊断有助于发现对于理解心血管疾病至关重要的临床相关生物标志物组合。对心血管疾病重要的相互连接系统包括免疫系统、神经系统和造血系统。这些系统与心脏和血管等经典心血管器官以及大脑相互连接。这些系统与器官之间的动态相互作用促成了止血、炎症、血管生成、基质重塑、代谢和纤维化等过程。随着成像技术提供的机会不断增加,绘制相互连接的系统将有助于我们解读心血管疾病的复杂性并监测新的治疗策略。

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