首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Time-lapse microscopy of macrophages during embryonic vascular development.
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Time-lapse microscopy of macrophages during embryonic vascular development.

机译:胚胎血管开发期间巨噬细胞的延时显微镜。

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Macrophages are present before the onset of blood flow, but very little is known about their function in vascular development. We have developed a technique to concurrently label both endothelial cells and macrophages for time-lapse microscopy using co-injection of fluorescently conjugated acetylated low-density lipoprotein (AcLDL) and phagocytic dye PKH26-PCL.We characterize double-labeled cells to confirm specific labeling of macrophages. Double-labeled cells circulate, roll along the endothelium, and extravasate from vessels. Most observed macrophages are integrated into the vessel wall, showing an endothelial-like morphology. We used transgenic quail that express a fluorescent protein driven by the endothelial-specific promoter Tie1 in conjugation with the phagocytic dye to analyze these cells. Circulating PKH26-PCL-labeled cells are mostly Tie1-, but those which have integrated into the vessel wall are largely Tie1+. The endothelial-like phagocytic cells were generally stationary during normal vascular development. We, therefore, induced vascular remodeling and found that these cells could be recruited to sites of remodeling.The active interaction of endothelial cells and macrophages support the hypothesis that these cells are involved in vascular remodeling. The presence of phagocytic endothelial-like cells suggests either a myeloid-origin to certain endothelial cells or that circulating endothelial cells/hematopoietic stem cells have phagocytic capacity.
机译:巨噬细胞存在于血液流动前存在,但在血管发育中的功能非常少。我们已经开发了一种技术,用于使用共注射荧光缀合的乙酰化低密度脂蛋白(ACLD1)和吞噬染料PKHH26-PCL.WE表征双标记细胞以确认特定标记巨噬细胞。双标记的细胞循环,沿内皮辊滚动,并从容器外部蒸发。大多数观察到的巨噬细胞被整合到血管壁中,显示出内皮样形态。我们使用转基因鹌鹑,其表达由内皮特异性启动子TiE1驱动的荧光蛋白与吞噬染料缀合以分析这些细胞。循环pKH26-PCL标记的细胞大多是Tie1-,但是整合到容器壁中的那些很大程度上是Tie1 +。在正常血管发育期间,内皮样吞噬细胞通常是静止的。因此,我们诱导血管重塑,发现这些细胞可以募集到重塑部位。内皮细胞和巨噬细胞的活性相互作用支持这些细胞参与血管重塑的假设。吞噬内皮样细胞的存在表明骨髓原源对某些内皮细胞或循环内皮细胞/造血干细胞具有吞噬能力。

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