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氯喹通过抑制中性粒细胞胞外诱捕网减少胰腺癌的高凝状态。

Chloroquine reduces hypercoagulability in pancreatic cancer through inhibition of neutrophil extracellular traps.

机构信息

Department of Surgery, University of Pittsburgh, Pittsburgh, PA, USA.

UPMC Cancer Pavilion, University of Pittsburgh, Suite 417, 5150 Centre Ave, Pittsburgh, PA, 15232, USA.

出版信息

BMC Cancer. 2018 Jun 22;18(1):678. doi: 10.1186/s12885-018-4584-2.

Abstract

BACKGROUND

The hypercoagulable state associated with pancreatic adenocarcinoma (PDA) results in increased risk of venous thromboembolism, leading to substantial morbidity and mortality. Recently, neutrophil extracellular traps (NETs), whereby activated neutrophils release their intracellular contents containing DNA, histones, tissue factor, high mobility group box 1 (HMGB1) and other components have been implicated in PDA and in cancer-associated thrombosis.

METHODS

Utilizing an orthotopic murine PDA model in C57/Bl6 mice and patient correlative samples, we studied the role of NETs in PDA hypercoagulability and targeted this pathway through treatment with the NET inhibitor chloroquine. PAD4 and RAGE knockout mice, deficient in NET formation, were used to study the role of NETs in platelet aggregation, release of tissue factor and hypercoagulability. Platelet aggregation was assessed using collagen-activated impedance aggregometry. Levels of circulating tissue factor, the initiator of extrinsic coagulation, were measured using ELISA. Thromboelastograms (TEGs) were performed to assess hypercoagulability and changes associated with treatment. Correlative data and samples from a randomized clinical trial of preoperative gemcitabine/nab-paclitaxel with and without hydroxychloroquine were studied and the impact of treatment on venous thromboembolism (VTE) rate was evaluated.

RESULTS

The addition of NETs to whole blood stimulated platelet activation and aggregation. DNA and the receptor for advanced glycation end products (RAGE) were necessary for induction of NET associated platelet aggregation. PAD4 knockout tumor-burdened mice, unable to form NETs, had decreased aggregation and decreased circulating tissue factor. The NET inhibitor chloroquine reduces platelet aggregation, reduces circulating tissue factor and decreases hypercoagulability on TEG. Review of correlative data from patients treated on a randomized protocol of preoperative chemotherapy with and without hydroxychloroquine demonstrated a reduction in peri-operative VTE rate from 30 to 9.1% with hydroxychloroquine that neared statistical significance (p = 0.053) despite the trial not being designed to study VTE.

CONCLUSION

NETs promote hypercoagulability in murine PDA through stimulation of platelets and release of tissue factor. Chloroquine inhibits NETs and diminishes hypercoagulability. These findings support clinical study of chloroquine to lower rates of venous thromboembolism in patients with cancer.

TRIAL REGISTRATION

This study reports correlative data from two clinical trials that registered with clinicaltrials.gov, NCT01128296 (May 21, 2010) and NCT01978184 (November 7, 2013).

摘要

背景

与胰腺腺癌(PDA)相关的高凝状态导致静脉血栓栓塞的风险增加,从而导致大量发病率和死亡率。最近,中性粒细胞胞外陷阱(NETs),即激活的中性粒细胞释放其含有 DNA、组蛋白、组织因子、高迁移率族蛋白 B1(HMGB1)和其他成分的细胞内物质,已被牵连到 PDA 和癌症相关的血栓形成中。

方法

我们利用 C57/Bl6 小鼠的原位胰腺腺癌模型和患者相关样本,研究了 NETs 在 PDA 高凝状态中的作用,并通过使用 NET 抑制剂氯喹来靶向该途径。利用缺乏 NET 形成的 PAD4 和 RAGE 基因敲除小鼠来研究 NETs 在血小板聚集、组织因子释放和高凝状态中的作用。使用胶原激活阻抗聚集法评估血小板聚集。使用 ELISA 测量循环组织因子的水平,组织因子是外源性凝血的启动子。进行血栓弹性图(TEG)以评估高凝状态和治疗相关的变化。研究了一项术前吉西他滨/纳布紫杉醇联合和不联合羟氯喹的随机临床试验的相关数据和样本,并评估了治疗对静脉血栓栓塞(VTE)发生率的影响。

结果

向全血中添加 NETs 可刺激血小板激活和聚集。DNA 和晚期糖基化终产物受体(RAGE)是诱导 NET 相关血小板聚集所必需的。不能形成 NETs 的 PAD4 基因敲除肿瘤负荷小鼠的聚集和循环组织因子减少。NET 抑制剂氯喹可降低血小板聚集、降低循环组织因子并降低 TEG 上的高凝状态。对根据术前化疗加用或不加用羟氯喹的随机方案治疗的患者的相关数据进行回顾性分析表明,与羟氯喹组相比,围手术期 VTE 发生率从 30%降至 9.1%,但接近统计学意义(p=0.053),尽管该试验并非旨在研究 VTE。

结论

NETs 通过刺激血小板和释放组织因子促进小鼠 PDA 的高凝状态。氯喹抑制 NETs 并降低高凝状态。这些发现支持氯喹的临床研究,以降低癌症患者的静脉血栓栓塞率。

试验注册

本研究报告了两项临床试验的相关数据,这些试验在 clinicaltrials.gov 上注册,NCT01128296(2010 年 5 月 21 日)和 NCT01978184(2013 年 11 月 7 日)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/34d0/6013899/0f8eb96dc7c8/12885_2018_4584_Fig1_HTML.jpg

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