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脂联素-2 在缺血再灌注期间作为趋化因子表达和粒细胞浸润的介质。

Lipocalin-2 as mediator of chemokine expression and granulocyte infiltration during ischemia and reperfusion.

机构信息

Department of Visceral, Transplant and Thoracic Surgery, Daniel Swarovski Research Laboratory, Innsbruck Medical University, Innsbruck, Austria.

出版信息

Transpl Int. 2013 Jul;26(7):761-9. doi: 10.1111/tri.12116. Epub 2013 May 23.

Abstract

Lipocalin-2 (Lcn2) expression contributes to ischemia and reperfusion injury (IRI) by enhancing pro-inflammatory responses. The aim of this work was to elucidate the regulation of Lcn2 during hypoxia and its effects on the expression of key chemokines and adhesion molecules. Lcn2 wt and Lcn2(-/-) mice were used in a heterotopic heart transplantation model. Quantitative RT-PCR was applied for chemokine gene expression analysis. Reporter gene studies were used to elucidate the regulation of the Lcn2 promoter by hypoxia. HIF-1β expression led to a 2.4-fold induction of the Lcn2 promoter. Apart from an earlier onset of granulocyte infiltration in the Lcn2 wt setting after 2 h of reperfusion compared with the Lcn2(-/-) setting (P < 0.013), exogenous application of recombinant Lcn2 revealed a trend toward increase of granulocyte infiltration. Analyzed chemokines were expressed significantly higher in the Lcn2 wt setting at 2 h of reperfusion (P ≤ 0.05). The number of apoptotic cells observed in Lcn2(-/-) grafts was significantly higher than in the Lcn2 wt setting. Our results indicate that Lcn2 affects granulocyte infiltration in the reperfused graft by modulating the expression of chemokines, their receptors and the apoptotic rate.

摘要

脂钙素 2(Lcn2)的表达通过增强促炎反应而导致缺血再灌注损伤(IRI)。本工作旨在阐明 Lcn2 在缺氧期间的调节及其对关键趋化因子和粘附分子表达的影响。在异位心脏移植模型中使用了 Lcn2wt 和 Lcn2(-/-) 小鼠。应用定量 RT-PCR 分析趋化因子基因表达。采用报告基因研究阐明了缺氧对 Lcn2 启动子的调节。HIF-1β 的表达导致 Lcn2 启动子的诱导增加了 2.4 倍。与 Lcn2(-/-) 组相比,Lcn2wt 组在再灌注 2 小时后粒细胞浸润的起始时间更早(P < 0.013),外源性应用重组 Lcn2 导致粒细胞浸润呈增加趋势。在再灌注 2 小时时,Lcn2wt 组中分析的趋化因子表达显著更高(P ≤ 0.05)。Lcn2(-/-)移植物中观察到的凋亡细胞数量明显高于 Lcn2wt 组。我们的结果表明,Lcn2 通过调节趋化因子及其受体的表达和凋亡率来影响再灌注移植物中的粒细胞浸润。

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