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β2-糖蛋白 I、脂多糖和内皮 TLR4:抗磷脂介导的血栓形成“双打击理论”中的三个参与者。

β2-glycoprotein I, lipopolysaccharide and endothelial TLR4: three players in the two hit theory for anti-phospholipid-mediated thrombosis.

机构信息

Immunology Research Laboratory, IRCCS Istituto Auxologico Italiano, Milan, Italy.

Immunology Research Laboratory, IRCCS Istituto Auxologico Italiano, Milan, Italy; Department of Clinical Sciences and Community Health, University of Milan, Milan, Italy.

出版信息

J Autoimmun. 2014 Dec;55:42-50. doi: 10.1016/j.jaut.2014.03.001. Epub 2014 Mar 27.

Abstract

The thrombogenic effect of β2-glycoprotein I (β2GPI)-dependent anti-phospholipid antibodies (aPL) in animal models was found to be LPS dependent. Since β2GPI behaves as LPS scavenger, LPS/β2GPI complex was suggested to account for in vitro cell activation through LPS/TLR4 involvement being LPS the actual bridge ligand between β2GPI and TLR4 at least in monocytes/macrophages. However, no definite information is available on the interaction among β2GPI, LPS and endothelial TLR4 in spite of the main role of endothelial cells (EC) in clotting. To analyse at the endothelial level the need of LPS, we investigated the in vitro interaction of β2GPI with endothelial TLR4 and we assessed the role of LPS in such an interaction. To do this, we evaluated the direct binding and internalization of β2GPI by confocal microscopy in living TLR4-MD2 transfected CHO cells (CHO/TLR4-MD2) and β2GPI binding to CHO/TLR4-MD2 cells and human umbilical cord vein EC (HUVEC) by flow cytometry and cell-ELISA using anti-β2GPI monoclonal antibodies in the absence or presence of various concentrations of exogenous LPS. To further investigate the role of TLR4, we performed anti-β2GPI antibody binding and adhesion molecule up-regulation in TLR4-silenced HUVEC. Confocal microscopy studies show that β2GPI does interact with TLR4 at the cell membrane and is internalized in cytoplasmic granules in CHO/TLR4-MD2 cells. β2GPI binding to CHO/TLR4-MD2 cells and HUVEC is also confirmed by flow cytometry and cell-ELISA, respectively. The interaction between β2GPI and TLR4 is confirmed by the reduction of anti-β2GPI antibody binding and by the up-regulation of E-selectin or ICAM-1 by TLR4 silencing in HUVEC. β2GPI binding is not affected by LPS at concentrations comparable to those found in both β2GPI and antibody preparations. Only higher amount of LPS that can activate EC and up-regulate TLR4 expression are found to increase the binding. Our findings demonstrate that β2GPI interacts directly with TLR4 expressed on EC, and that such interaction may contribute to β2GPI-dependent aPL-mediated EC activation. At variance of monocytic cells, we also showed a threshold effect for the action of LPS, that is able to enhance anti-β2GPI antibody EC binding only at cell activating concentrations, shown to increase TLR4 expression. This in vitro model may explain why LPS behaves as a second hit increasing the expression of β2GPI in vascular tissues and triggering aPL-mediated thrombosis in experimental animals.

摘要

β2-糖蛋白 I(β2GPI)依赖性抗磷脂抗体(aPL)在动物模型中的血栓形成作用被发现依赖于 LPS。由于β2GPI 作为 LPS 清除剂,因此有人提出 LPS/β2GPI 复合物通过 LPS/TLR4 参与来解释体外细胞激活,至少在单核细胞/巨噬细胞中,LPS 是连接 β2GPI 和 TLR4 的实际桥连配体。然而,尽管内皮细胞(EC)在凝血中起着主要作用,但关于β2GPI、LPS 和内皮 TLR4 之间的相互作用,尚无明确信息。为了在血管内皮水平分析 LPS 的必要性,我们研究了β2GPI 与内皮 TLR4 的体外相互作用,并评估了 LPS 在这种相互作用中的作用。为此,我们通过共聚焦显微镜评估了β2GPI 在活 TLR4-MD2 转染 CHO 细胞(CHO/TLR4-MD2)中的直接结合和内化,并用流式细胞术和细胞 ELISA 评估了β2GPI 与 CHO/TLR4-MD2 细胞和人脐静脉内皮细胞(HUVEC)的结合,方法是在存在或不存在各种浓度的外源性 LPS 的情况下使用抗-β2GPI 单克隆抗体。为了进一步研究 TLR4 的作用,我们在 TLR4 沉默的 HUVEC 中进行了抗-β2GPI 抗体结合和粘附分子上调。共聚焦显微镜研究表明,β2GPI 确实与细胞膜上的 TLR4 相互作用,并在 CHO/TLR4-MD2 细胞的细胞质颗粒中内化。β2GPI 与 CHO/TLR4-MD2 细胞和 HUVEC 的结合也分别通过流式细胞术和细胞 ELISA 得到证实。通过 TLR4 沉默,β2GPI 与 TLR4 的相互作用通过降低抗-β2GPI 抗体结合和上调 E-选择素或 ICAM-1 得到证实。β2GPI 结合不受 LPS 浓度的影响,该浓度与在β2GPI 和抗体制剂中发现的浓度相当。仅发现更高量的 LPS 能够激活 EC 并上调 TLR4 表达,从而增加结合。我们的研究结果表明,β2GPI 直接与 EC 上表达的 TLR4 相互作用,并且这种相互作用可能有助于β2GPI 依赖性 aPL 介导的 EC 激活。与单核细胞不同,我们还显示了 LPS 作用的阈值效应,即仅在细胞激活浓度下才能增强抗-β2GPI 抗体与 EC 的结合,该浓度可增加 TLR4 的表达。这种体外模型可以解释为什么 LPS 作为第二击,增加血管组织中β2GPI 的表达,并在实验动物中引发 aPL 介导的血栓形成。

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