Department of Surgery, Washington University in St. Louis, New Haven, CT, USA.
Trends Cardiovasc Med. 2013 Nov;23(8):287-93. doi: 10.1016/j.tcm.2013.04.002. Epub 2013 May 22.
Intravital two-photon microscopy allows for the analysis of single-cell dynamics within intact tissues. As it is well recognized that molecular cues that regulate leukocyte trafficking into inflammatory sites differ between various tissues, it is important to study organ-specific responses. Recently, intravital two-photon microscopy has been expanded to moving organs in the mouse such as beating hearts. Unlike previous experimental approaches to image cardiac tissue explants or isolated perfused heart preparations by two-photon microscopy, intravital imaging accounts for the mechanical force transmitted to vessels by the heartbeat and accurately assesses dynamic leukocyte behavior in the coronary vessels and myocardial tissue. Intravital two-photon imaging of beating hearts is a promising experimental tool that will help elucidate cellular and molecular immune processes that contribute to a variety of cardiovascular diseases.
活体双光子显微镜允许分析完整组织内的单细胞动力学。由于众所周知,调节白细胞向炎症部位迁移的分子线索在不同组织之间存在差异,因此研究器官特异性反应非常重要。最近,活体双光子显微镜已扩展到可以对小鼠的移动器官进行成像,如跳动的心脏。与以前通过双光子显微镜对心脏组织外植体或分离灌注心脏制剂成像的实验方法不同,活体成像考虑了心跳传递到血管的机械力,并准确评估了冠状动脉血管和心肌组织中动态白细胞的行为。跳动心脏的活体双光子成像技术是一种很有前途的实验工具,它将有助于阐明导致各种心血管疾病的细胞和分子免疫过程。