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首页> 外文期刊>Frontiers in Immunology >Intravital Microscopy of the Beating Murine Heart to Understand Cardiac Leukocyte Dynamics
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Intravital Microscopy of the Beating Murine Heart to Understand Cardiac Leukocyte Dynamics

机译:击败小鼠心脏的脊髓灰色显微镜,了解心脏白细胞动态

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Cardiovascular disease is the leading cause of worldwide mortality. Intravital microscopy has provided unprecedented insight into leukocyte biology by enabling the visualization of dynamic responses within living organ systems at the cell-scale. The heart presents a uniquely dynamic microenvironment driven by periodic, synchronous electrical conduction leading to rhythmic contractions of cardiomyocytes, and phasic coronary blood flow. In addition to functions shared throughout the body, immune cells have specific functions in the heart including tissue-resident macrophage-facilitated electrical conduction and rapid monocyte infiltration upon injury. Leukocyte responses to cardiac pathologies, including myocardial infarction and heart failure, have been well-studied using standard techniques, however, certain questions related to spatiotemporal relationships remain unanswered. Intravital imaging techniques could greatly benefit our understanding of the complexities of in vivo leukocyte behavior within cardiac tissue, but these techniques have been challenging to apply. Different approaches have been developed including high frame rate imaging of the beating heart, explantation models, micro-endoscopy, and mechanical stabilization coupled with various acquisition schemes to overcome challenges specific to the heart. The field of cardiac science has only begun to benefit from intravital microscopy techniques. The current focused review presents an overview of leukocyte responses in the heart, recent developments in intravital microscopy for the murine heart, and a discussion of future developments and applications for cardiovascular immunology.
机译:心血管疾病是全球死亡率的主要原因。流体显微镜通过能够在细胞范围内的活器系统系统中的动态响应可视化来提供前所未有的洞察力。心脏呈现出由周期性,同步电传导驱动的独特动态微环境,导致心肌细胞的节奏收缩和相位冠状动脉血流。除了在整个身体共享的功能之外,免疫细胞在心脏中具有特定的功能,包括组织植物巨噬细胞促进的导电和损伤时的快速单核细胞浸润。使用标准技术研究了对心脏病理的白细胞对心脏病理和心力衰竭的反应,然而,使用标准技术研究了与时尚关系有关的某些问题仍未得到答复。流体性成像技术可以极大地使我们对心脏组织内体内白细胞行为的复杂性的理解,但这些技术是挑战施用。已经开发了不同的方法,包括跳动心脏,脱侧模型,微内窥镜检查和机械稳定的高帧速率成像,以及各种采集方案,以克服心脏特异性特异性的挑战。心脏科学领域仅开始受益于流体显微镜技术。目前的重点综述概述了心脏的核心反应,近期脊柱心脏病的最新发展,以及对心血管免疫学的未来发展和应用的讨论。

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