Atrial fibrillation and the prothrombotic state: revisiting Virchow's triad in 2020

被引:100
作者
Ding, Wern Yew [1 ,2 ]
Gupta, Dhiraj [1 ,2 ]
Lip, Gregory Y. H. [1 ,2 ,3 ]
机构
[1] Univ Liverpool, Liverpool Ctr Cardiovasc Sci, Liverpool L7 8TX, Merseyside, England
[2] Liverpool Heart & Chest Hosp, Liverpool, Merseyside, England
[3] Aalborg Univ, Dept Clin Med, Aalborg Thrombosis Res Unit, Aalborg, Denmark
关键词
VON-WILLEBRAND-FACTOR; SPONTANEOUS ECHO CONTRAST; FIBRIN D-DIMER; PLATELET ACTIVATION; ENDOTHELIAL DYSFUNCTION; THROMBUS FORMATION; STROKE PATIENTS; SELECTIN LEVELS; BLOOD STASIS; P-SELECTIN;
D O I
10.1136/heartjnl-2020-316977
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Atrial fibrillation (AF) is characterised by an increased risk of pathological thrombus formation due to a disruption of physiological haemostatic mechanisms that are better understood by reference to Virchow's triad of 'abnormal blood constituents', 'vessel wall abnormalities' and 'abnormal blood flow'. First, there is increased activation of the coagulation cascade, platelet reactivity and impaired fibrinolysis as a result of AF per se, and these processes are amplified with pre-existing comorbidities. Several prothrombotic biomarkers including platelet factor 4, von Willebrand factor, fibrinogen, beta-thromboglobulin and D-dimer have been implicated in this process. Second, structural changes such as atrial fibrosis and endothelial dysfunction are linked to the development of AF which promote further atrial remodelling, thereby providing a suitable platform for clot formation and subsequent embolisation. Third, these factors are compounded by the presence of reduced blood flow secondary to dilatation of cardiac chambers and loss of atrial systole which have been confirmed using various imaging techniques. Overall, an improved understanding of the various factors involved in thrombus formation will allow better clinical risk stratification and targeted therapies in AF.
引用
收藏
页码:1463 / 1468
页数:6
相关论文
共 50 条
[1]   Thromboembolic Complications After Cardioversion of Acute Atrial Fibrillation The FinCV (Finnish CardioVersion) Study [J].
Airaksinen, K. E. Juhani ;
Gronberg, Toni ;
Nuotio, Ilpo ;
Nikkinen, Marko ;
Ylitalo, Antti ;
Biancari, Fausto ;
Hartikainen, Juha E. K. .
JOURNAL OF THE AMERICAN COLLEGE OF CARDIOLOGY, 2013, 62 (13) :1187-1192
[2]   Acute onset human atrial fibrillation is associated with local cardiac platelet activation and endothelial dysfunction [J].
Akar, Joseph G. ;
Jeske, Walter ;
Wilber, David J. .
JOURNAL OF THE AMERICAN COLLEGE OF CARDIOLOGY, 2008, 51 (18) :1790-1793
[3]   Association of Atrial Fibrosis Quantified Using LGE-MRI with Atrial Appendage Thrombus and Spontaneous Contrast on Transesophageal Echocardiography in Patients with Atrial Fibrillation [J].
Akoum, Nazem ;
Fernandez, Genaro ;
Wilson, Brent ;
Mcgann, Christopher ;
Kholmovski, Eugene ;
Marrouche, Nassir .
JOURNAL OF CARDIOVASCULAR ELECTROPHYSIOLOGY, 2013, 24 (10) :1104-1109
[4]   Left Atrial Blood Stasis and Von Willebrand Factor-ADAMTS13 Homeostasis in Atrial Fibrillation [J].
Ammash, Naser ;
Konik, Ewa A. ;
McBane, Robert D. ;
Chen, Dong ;
Tange, Julie I. ;
Grill, Diane E. ;
Herges, Regina M. ;
McLeod, Thomas G. ;
Friedman, Paul A. ;
Wysokinski, Waldemar E. .
ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2011, 31 (11) :2760-2766
[5]   Intra-cardiac and peripheral levels of biochemical markers of fibrosis in patients undergoing catheter ablation for atrial fibrillation [J].
Begg, Gordon A. ;
Karim, Rashed ;
Oesterlein, Tobias ;
Graham, Lee N. ;
Hogarth, Andrew J. ;
Page, Stephen P. ;
Pepper, Christopher B. ;
Rhode, Kawal ;
Lip, Gregory Y. H. ;
Holden, Arun V. ;
Plein, Sven ;
Tayebjee, Muzahir H. .
EUROPACE, 2017, 19 (12) :1944-1950
[6]   HEMATOLOGIC CORRELATES OF LEFT ATRIAL SPONTANEOUS ECHO CONTRAST AND THROMBOEMBOLISM IN NONVALVULAR ATRIAL-FIBRILLATION [J].
BLACK, IW ;
CHESTERMAN, CN ;
HOPKINS, AP ;
LEE, LCL ;
CHONG, BH ;
WALSH, WF .
JOURNAL OF THE AMERICAN COLLEGE OF CARDIOLOGY, 1993, 21 (02) :451-457
[7]   Fibrosis in left atrial tissue of patients with atrial fibrillation with and without underlying mitral valve disease [J].
Boldt, A ;
Wetzel, U ;
Lauschke, J ;
Weigl, J ;
Gummert, J ;
Hindricks, G ;
Kottkamp, H ;
Dhein, S .
HEART, 2004, 90 (04) :400-405
[8]   Turbulent Flow Promotes Cleavage of VWF (von Willebrand Factor) by ADAMTS13 (A Disintegrin and Metalloproteinase With a Thrombospondin Type-1 Motif, Member 13) [J].
Bortot, Maria ;
Ashworth, Katrina ;
Sharifi, Alireza ;
Walker, Faye ;
Crawford, Nathan C. ;
Neeves, Keith B. ;
Bark, David, Jr. ;
Di Paola, Jorge .
ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2019, 39 (09) :1831-1842
[9]   CREM-transgene mice: An animal model of atrial fibrillation and thrombogenesis [J].
Bukowska, A. ;
Felgendreher, M. ;
Scholz, B. ;
Wolke, C. ;
Schulte, J. S. ;
Fehrmann, E. ;
Wardelmann, E. ;
Seidl, M. D. ;
Lendeckel, U. ;
Himmler, K. ;
Gardemann, A. ;
Goette, A. ;
Mueller, F. U. .
THROMBOSIS RESEARCH, 2018, 163 :172-179
[10]   Downregulation of endocardial nitric oxide synthase expression and nitric oxide production in atrial fibrillation - Potential mechanisms for atrial thrombosis and stroke [J].
Cai, H ;
Li, ZM ;
Goette, A ;
Mera, F ;
Honeycutt, C ;
Feterik, K ;
Wilcox, JN ;
Dudley, SC ;
Harrison, DG ;
Langberg, JJ .
CIRCULATION, 2002, 106 (22) :2854-2858