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本文引用的文献

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A PSGL-1 glycomimetic reduces thrombus burden without affecting hemostasis.一种 PSGL-1 糖模拟物可减少血栓负担而不影响止血。
Blood. 2021 Sep 30;138(13):1182-1193. doi: 10.1182/blood.2020009428.
2
Myeloid Krüppel-like factor 2 is a critical regulator of metabolic inflammation.髓系 Krüppel 样因子 2 是代谢性炎症的关键调节因子。
Nat Commun. 2020 Nov 18;11(1):5872. doi: 10.1038/s41467-020-19760-3.
3
NETosis: Molecular Mechanisms, Role in Physiology and Pathology.中性粒细胞胞外诱捕网形成:分子机制、在生理学和病理学中的作用。
Biochemistry (Mosc). 2020 Oct;85(10):1178-1190. doi: 10.1134/S0006297920100065.
4
Nanoparticles presenting clusters of CD4 expose a universal vulnerability of HIV-1 by mimicking target cells.纳米颗粒呈现簇状的 CD4,通过模拟靶细胞来暴露 HIV-1 的普遍弱点。
Proc Natl Acad Sci U S A. 2020 Aug 4;117(31):18719-18728. doi: 10.1073/pnas.2010320117. Epub 2020 Jul 20.
5
Nanomaterial Interactions with Human Neutrophils.纳米材料与人类中性粒细胞的相互作用
ACS Biomater Sci Eng. 2018 Dec 10;4(12):4255-4265. doi: 10.1021/acsbiomaterials.8b01062. Epub 2018 Nov 5.
6
Therapeutic targeting of trained immunity.训练免疫的治疗靶向。
Nat Rev Drug Discov. 2019 Jul;18(7):553-566. doi: 10.1038/s41573-019-0025-4.
7
Mechanisms of Endothelial Dysfunction in Antiphospholipid Syndrome: Association With Clinical Manifestations.抗磷脂综合征中内皮功能障碍的机制:与临床表现的关联
Front Physiol. 2018 Dec 21;9:1840. doi: 10.3389/fphys.2018.01840. eCollection 2018.
8
The role of neutrophils in thrombosis.中性粒细胞在血栓形成中的作用。
Thromb Res. 2018 Oct;170:87-96. doi: 10.1016/j.thromres.2018.08.005. Epub 2018 Aug 9.
9
Cooperative PSGL-1 and CXCR2 signaling in neutrophils promotes deep vein thrombosis in mice.中性粒细胞中协同的 PSGL-1 和 CXCR2 信号转导促进小鼠深静脉血栓形成。
Blood. 2018 Sep 27;132(13):1426-1437. doi: 10.1182/blood-2018-05-850859. Epub 2018 Aug 1.
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Neutrophil-Based Drug Delivery Systems.基于中性粒细胞的药物传递系统。
Adv Mater. 2018 May;30(22):e1706245. doi: 10.1002/adma.201706245. Epub 2018 Mar 26.

中性粒细胞靶向通路可同时减轻动脉和静脉血栓形成。

A targetable pathway in neutrophils mitigates both arterial and venous thrombosis.

机构信息

Division of Hematology and Oncology, University Hospitals Cleveland Medical Center, Cleveland, OH 44106, USA.

Case Cardiovascular Research Institute, Case Western Reserve University, Cleveland, OH 44106, USA.

出版信息

Sci Transl Med. 2022 Aug 31;14(660):eabj7465. doi: 10.1126/scitranslmed.abj7465.

DOI:10.1126/scitranslmed.abj7465
PMID:36044595
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10318551/
Abstract

Arterial and venous thrombosis constitutes a major source of morbidity and mortality worldwide. Long considered as distinct entities, accumulating evidence indicates that arterial and venous thrombosis can occur in the same populations, suggesting that common mechanisms are likely operative. Although hyperactivation of the immune system is a common forerunner to the genesis of thrombotic events in both vascular systems, the key molecular control points remain poorly understood. Consequently, antithrombotic therapies targeting the immune system for therapeutics gain are lacking. Here, we show that neutrophils are key effectors of both arterial and venous thrombosis and can be targeted through immunoregulatory nanoparticles. Using antiphospholipid antibody syndrome (APS) as a model for arterial and venous thrombosis, we identified the transcription factor Krüppel-like factor 2 (KLF2) as a key regulator of neutrophil activation. Upon activation through genetic loss of KLF2 or administration of antiphospholipid antibodies, neutrophils clustered P-selectin glycoprotein ligand 1 (PSGL-1) by cortical actin remodeling, thereby increasing adhesion potential at sites of thrombosis. Targeting clustered PSGL-1 using nanoparticles attenuated neutrophil-mediated thrombosis in APS and KLF2 knockout models, illustrating the importance and feasibility of targeting activated neutrophils to prevent pathological thrombosis. Together, our results demonstrate a role for activated neutrophils in both arterial and venous thrombosis and identify key molecular events that serve as potential targets for therapeutics against diverse causes of immunothrombosis.

摘要

动脉和静脉血栓形成是全球发病率和死亡率的主要来源。长期以来,人们一直认为动脉血栓形成和静脉血栓形成是两种截然不同的实体,但越来越多的证据表明,这两种血栓形成可以发生在同一人群中,这表明可能存在共同的机制。尽管免疫系统的过度激活是两种血管系统血栓形成发生的共同前兆,但关键的分子控制点仍未得到很好的理解。因此,针对免疫系统的抗血栓治疗缺乏靶向治疗。在这里,我们表明中性粒细胞是动脉和静脉血栓形成的关键效应物,可以通过免疫调节纳米颗粒进行靶向治疗。我们使用抗磷脂抗体综合征(APS)作为动脉和静脉血栓形成的模型,确定转录因子 Krüppel 样因子 2(KLF2)是中性粒细胞激活的关键调节剂。通过基因敲除 KLF2 或给予抗磷脂抗体激活中性粒细胞后,中性粒细胞通过皮质肌动蛋白重塑聚集 P 选择素糖蛋白配体 1(PSGL-1),从而增加血栓形成部位的粘附潜力。使用纳米颗粒靶向聚集的 PSGL-1 可减轻 APS 和 KLF2 敲除模型中的中性粒细胞介导的血栓形成,这说明了针对激活的中性粒细胞以预防病理性血栓形成的重要性和可行性。总之,我们的研究结果表明激活的中性粒细胞在动脉和静脉血栓形成中都起着作用,并确定了关键的分子事件,这些事件可能成为针对不同免疫性血栓形成原因的治疗方法的潜在靶点。