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纳米材料在止血和血栓形成中对血液凝固的影响。

The effects of nanomaterials on blood coagulation in hemostasis and thrombosis.

作者信息

Simak Jan, De Paoli Silvia

机构信息

Center for Biologics Evaluation and Research, Food and Drug Administration, Silver Spring, MD, USA.

出版信息

Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2017 Sep;9(5). doi: 10.1002/wnan.1448. Epub 2017 Jan 11.


DOI:10.1002/wnan.1448
PMID:28078811
Abstract

The blood coagulation balance in the organism is achieved by the interaction of the blood platelets (PLTs) with the plasma coagulation system (PCS) and the vascular endothelial cells. In healthy organism, these systems prevent thrombosis and, in events of vascular damage, enable blood clotting to stop bleeding. The dysregulation of hemostasis may cause serious thrombotic and/or hemorrhagic pathologies. Numerous engineered nanomaterials are being investigated for biomedical purposes and are unavoidably exposed to the blood. Also, nanomaterials may access vascular system after occupational, environmental, or other types of exposure. Thus, it is essential to evaluate the effects of engineered nanomaterials on hemostasis. This review focuses on investigations of nanomaterial interactions with the blood components involved in blood coagulation: the PCS and PLTs. Particular emphases include the pathophysiology of effects of nanomaterials on the PCS, including the kallikrein-kinin system, and on PLTs. Methods for investigating these interactions are briefly described, and a review of the most important studies on the interactions of nanomaterials with plasma coagulation and platelets is provided. WIREs Nanomed Nanobiotechnol 2017, 9:e1448. doi: 10.1002/wnan.1448 For further resources related to this article, please visit the WIREs website.

摘要

机体中的血液凝固平衡是通过血小板(PLT)与血浆凝血系统(PCS)以及血管内皮细胞的相互作用来实现的。在健康机体中,这些系统可防止血栓形成,并且在血管受损时,使血液凝固以止血。止血功能失调可能会导致严重的血栓形成和/或出血性病变。目前正在研究多种用于生物医学目的的工程纳米材料,它们不可避免地会接触到血液。此外,纳米材料在职业暴露、环境暴露或其他类型的暴露后可能进入血管系统。因此,评估工程纳米材料对止血的影响至关重要。本综述重点关注纳米材料与参与血液凝固的血液成分(即PCS和PLT)之间相互作用的研究。特别强调的是纳米材料对PCS(包括激肽释放酶-激肽系统)和PLT影响的病理生理学。简要描述了研究这些相互作用的方法,并提供了关于纳米材料与血浆凝血和血小板相互作用的最重要研究的综述。WIREs Nanomed Nanobiotechnol 2017, 9:e1448. doi: 10.1002/wnan.1448 有关本文的更多资源,请访问WIREs网站。

相似文献

[1]
The effects of nanomaterials on blood coagulation in hemostasis and thrombosis.

Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2017-9

[2]
[Experimental basis for the participation of the kallikrein-kinin system in the mechanisms of normal and pathological hemostasis regulation].

Ter Arkh. 1982

[3]
Platelets are versatile cells: New discoveries in hemostasis, thrombosis, immune responses, tumor metastasis and beyond.

Crit Rev Clin Lab Sci. 2016-7-22

[4]
Regulation of Platelet Activation and Coagulation and Its Role in Vascular Injury and Arterial Thrombosis.

Interv Cardiol Clin. 2017-1

[5]
[Interrelation between immunogenesis and the hemostasis system: a common system of body protection].

Usp Sovrem Biol. 1981

[6]
Global Thrombosis Test (GTT) can detect major determinants of haemostasis including platelet reactivity, endogenous fibrinolytic and thrombin generating potential.

Thromb Res. 2014-5

[7]
Role of platelets in hemostasis and thrombosis.

West J Med. 1976-9

[8]
Dangerous liaisons: complement, coagulation, and kallikrein/kinin cross-talk act as a linchpin in the events leading to thromboinflammation.

Immunol Rev. 2016-11

[9]
Pathophysiology and clinical aspects of fibrinolysis and inhibition of coagulation. Experimental and clinical studies with special reference to women on oral contraceptives and selected groups of thrombosis prone patients.

Dan Med Bull. 1988-2

[10]
Red blood cells: the forgotten player in hemostasis and thrombosis.

J Thromb Haemost. 2019-1-7

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