首页> 外文期刊>American Journal of Physiology >Kupffer cells and activation of endothelial TLR4 coordinate neutrophil adhesion within liver sinusoids during endotoxemia
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Kupffer cells and activation of endothelial TLR4 coordinate neutrophil adhesion within liver sinusoids during endotoxemia

机译:内毒素血症期间,库普弗细胞和内皮TLR4的激活可协调肝窦内嗜中性粒细胞的粘附

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摘要

A key pathological feature of the systemic inflammatory response of sepsis/endotoxemia is the accumulation of neutrophils within the microvasculature of organs such as the liver, where they cause tissue damage and vascular dysfunction. There is emerging evidence that the vascular endothelium is critical to the orchestration of inflammatory responses to blood-borne microbes and microbial products in sepsis/endotoxemia. In this study, we aimed to understand the role of endothelium, and specifically endothelial TLR4 activation, in the regulation of neutrophil recruitment to the liver during endotoxemia. Intravital microscopy of bone marrow chimeric mice revealed that TLR4 expression by non-bone marrow-derived cells was required for neutrophil recruitment to the liver during endotoxemia. Furthermore, LPS-induced neutrophil adhesion in liver sinusoids was equivalent between wildtype mice and transgenic mice that express TLR4 only on endothelium (tlr4-/-Tie2tlr4), revealing that activation of endothelial TLR4 alone was sufficient to initiate neutrophil adhesion. Neutrophil arrest within sinusoids of endotoxemic mice requires adhesive interactions between neutrophil CD44 and endothelial hyaluronan. Intravital immunofluorescence imaging demonstrated that stimulation of endothelial TLR4 alone was sufficient to induce the deposition of serumderived hyaluronan-associated protein (SHAP) within sinusoids, which was required for CD44/hyaluronan-dependent neutrophil adhesion. In addition to endothelial TLR4 activation, Kupffer cells contribute to neutrophil recruitment via a distinct CD44/HA/SHAPindependent mechanism. This study sheds new light on the control of innate immune activation within the liver vasculature during endotoxemia, revealing a key role for endothelial cells as sentinels in the detection of intravascular infections and coordination of neutrophil recruitment to the liver.
机译:败血症/内毒素血症的全身性炎症反应的关键病理特征是嗜中性粒细胞在诸如肝脏的器官的微脉管系统中的积累,它们在其中引起组织损伤和血管功能障碍。越来越多的证据表明,在败血症/内毒素血症中,血管内皮对于协调对血源性微生物和微生物产物的炎症反应至关重要。在这项研究中,我们旨在了解内毒素血症期间内皮,特别是内皮TLR4激活在中性粒细胞向肝脏募集的调节中的作用。骨髓嵌合小鼠的活体内显微镜检查显示,内毒素血症期间嗜中性粒细胞募集到肝脏需要非骨髓来源的细胞TLR4表达。此外,LPS诱导的肝窦中性粒细胞粘附在野生型小鼠和仅在内皮细胞上表达TLR4的转基因小鼠之间是等效的(tlr4-/-Tie2tlr4),这表明单独激活内皮TLR4足以启动中性粒细胞粘附。内毒素血症小鼠正弦曲线内的中性粒细胞停滞需要中性粒细胞CD44与内皮透明质酸之间的粘附相互作用。活体免疫荧光成像表明,单独刺激内皮TLR4足以诱导正弦曲线内血清来源的透明质酸相关蛋白(SHAP)沉积,这是CD44 /透明质酸依赖性中性粒细胞粘附所必需的。除了内皮TLR4激活外,库普弗细胞还通过独特的CD44 / HA / SHAP依赖性机制促进嗜中性白细胞的募集。这项研究为内毒素血症期间肝血管内先天性免疫激活的控制提供了新的思路,揭示了内皮细胞作为前哨在检测血管内感染和中性粒细胞募集到肝脏中的重要作用。

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