首页> 美国卫生研究院文献>JARO: Journal of the Association for Research in Otolaryngology >Endothelial Cell Pericyte and Perivascular Resident Macrophage-Type Melanocyte Interactions Regulate Cochlear Intrastrial Fluid–Blood Barrier Permeability
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Endothelial Cell Pericyte and Perivascular Resident Macrophage-Type Melanocyte Interactions Regulate Cochlear Intrastrial Fluid–Blood Barrier Permeability

机译:内皮细胞周细胞和血管周围常存在的巨噬细胞型黑素细胞相互作用调节耳蜗内横液-血液屏障通透性

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摘要

The integrity of the fluid–blood barrier in the stria vascularis is critical for maintaining inner ear homeostasis, especially for sustaining the endocochlear potential, an essential driving force for hearing function. However, the mechanisms that control intrastrial fluid–blood barrier permeability remain largely unknown. At the cellular level, the intrastrial fluid–blood barrier comprises cochlear microvascular endothelial cells connected to each other by tight junctions (TJs), an underlying basement membrane, and a second line of support consisting of cochlear pericytes and perivascular resident macrophage-type melanocytes. In this study, we use a newly established primary cell culture-based in vitro model to show that endothelial cells, pericytes, and perivascular resident macrophage-type melanocytes interact to control intrastrial fluid–blood barrier permeability. When the endothelial cell monolayer was treated with pericyte—or perivascular resident macrophage-type melanocyte—conditioned media, the permeability of the endothelial cell monolayer was significantly reduced relative to an untreated endothelial cell monolayer. Further study has shown the pericytes and perivascular resident macrophage-type melanocytes to regulate TJ expression in the endothelial cell monolayer. The new cell culture-based in vitro model offers a unique opportunity to obtain information on the organ-specific characteristics of the cochlear blood/tissue barrier. Our finding demonstrates the importance of signaling among pericytes, endothelial cells, and perivascular resident macrophage-type melanocytes to the integrity of the intrastrial fluid–blood barrier.
机译:血管纹中的液-血屏障的完整性对于维持内耳动态平衡至关重要,尤其对于维持耳蜗内电位(听力功能的重要驱动力)尤其重要。但是,控制纹状体内液-血屏障通透性的机制仍然未知。在细胞水平上,纹状体内液-血屏障包括通过紧密连接(TJ)相互连接的耳蜗微血管内皮细胞,底层基底膜以及由耳蜗周细胞和血管周常驻巨噬细胞型黑色素细胞组成的第二条支持线。在这项研究中,我们使用新近建立的基于原代细胞培养的体外模型来显示内皮细胞,周细胞和血管周围常驻巨噬细胞型黑色素细胞相互作用,以控制血管内液-血屏障通透性。当用周细胞或血管周围驻留的巨噬细胞型黑素细胞条件培养基处理内皮细胞单层时,相对于未经处理的内皮细胞单层,内皮细胞单层的通透性显着降低。进一步的研究表明,周细胞和血管周常驻巨噬细胞型黑色素细胞可调节内皮细胞单层中的TJ表达。新的基于细胞培养的体外模型提供了独特的机会来获取有关耳蜗血液/组织屏障的器官特异性特征的信息。我们的发现表明,周细胞,内皮细胞和血管周常性巨噬细胞型黑色素细胞之间的信号转导对于血管内血液屏障的完整性至关重要。

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