Page 273 - 2020_02-Haematologica-web
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Structural hallmarks of stroke thrombi
retriever thrombectomy after intravenous t-PA vs. t-PA alone in stroke. N Engl J Med. 2015;372(24):2285-2295.
7. Campbell BC, Mitchell PJ, Kleinig TJ, et al. Endovascular therapy for ischemic stroke with perfusion-imaging selection. N Engl J Med. 2015;372(11):1009-1018.
8. Jovin TG, Chamorro A, Cobo E, et al. Thrombectomy within 8 Hours after Symptom Onset in Ischemic Stroke. N Engl J Med. 2015;372(24):2296-2306.
9. Goyal M, Demchuk AM, Menon BK, et al. Randomized assessment of rapid endovas- cular treatment of ischemic stroke. N Engl J Med. 2015;372(11):1019-1030.
10. Yoo AJ, Andersson T. Thrombectomy in Acute Ischemic Stroke: Challenges to Procedural Success. J Stroke. 2017; 19(2):121-130.
11. De Meyer SF, Andersson T, Baxter B, et al. Analyses of thrombi in acute ischemic stroke: A consensus statement on current knowledge and future directions. Int J Stroke. 2017;12(6):606-614.
12. Staessens S, Fitzgerald S, Andersson T, et al. Histological stroke clot analysis after thrombectomy: technical aspects and rec- ommendations. Int J Stroke. 2019. doi 10.1177/1747493019884527
13. Brinjikji W, Duffy S, Burrows A, et al. Correlation of imaging and histopathology of thrombi in acute ischemic stroke with etiology and outcome: a systematic review. J Neurointerv Surg. 2017;9(6):529-534.
14. Laridan E, Denorme F, Desender L, et al. Neutrophil extracellular traps in ischemic stroke thrombi. Ann Neurol. 2017;82(2):223-232.
15. Ducroux C, Di Meglio L, Loyau S, et al. Thrombus Neutrophil Extracellular Traps Content Impair tPA-Induced Thrombolysis in Acute Ischemic Stroke. Stroke. 2018;49(3):754-757.
16. Cines DB, Lebedeva T, Nagaswami C, et al. Clot contraction: compression of erythro- cytes into tightly packed polyhedra and redistribution of platelets and fibrin. Blood. 2014;123(10):1596-1603.
17. Tutwiler V, Mukhitov AR, Peshkova AD, et al. Shape changes of erythrocytes during blood clot contraction and the structure of polyhedrocytes. Sci Rep. 2018;8(1):17907.
18. Tutwiler V, Peshkova AD, Andrianova IA, Khasanova DR, Weisel JW, Litvinov RI. Contraction of Blood Clots Is Impaired in Acute Ischemic Stroke. Arter Thromb Vasc Biol. 2017;37(2):271-279.
19. Denorme F, Langhauser F, Desender L, et al. ADAMTS13-mediated thrombolysis of t- PA-resistant occlusions in ischemic stroke in mice. Blood. 2016;127(19):2337–2345.
20. Niesten JM, van der Schaaf IC, van der Graaf Y, et al. Predictive value of thrombus attenuation on thin-slice non-contrast CT for persistent occlusion after intravenous thrombolysis. Cerebrovasc Dis. 2014; 37(2):116-122.
21. Moftakhar P, English JD, Cooke DL, et al. Density of thrombus on admission CT pre- dicts revascularization efficacy in large ves- sel occlusion acute ischemic stroke. Stroke. 2013;44(1):243-245.
22. Nam HS, Kim EY, Kim SH, et al. Prediction of thrombus resolution after intravenous thrombolysis assessed by CT-based throm- bus imaging. Thromb Haemost. 2012; 107(04):786-794.
23. Puig J, Pedraza S, Demchuk A, et al. Quantification of thrombus Hounsfield units on noncontrast CT predicts stroke subtype and early recanalization after intra- venous recombinant tissue plasminogen activator. Am J Neuroradiol. 2012;33(1):90- 96.
24. Shin JW, Jeong HS, Kwon H-JJ, Song KS, Kim J. High red blood cell composition in clots is associated with successful recanal- ization during intra-arterial thrombectomy. PLoS One. 2018;13(5):e0197492.
25. Choi M, Park G, Lee J, et al. Erythrocyte Fraction Within Retrieved Thrombi Contributes to Thrombolytic Response in Acute Ischemic Stroke. Stroke. 2018; 49(3):652-659.
26. Jang IK, Gold HK, Ziskind AA, et al. Differential sensitivity of erythrocyte-rich and platelet-rich arterial thrombi to lysis with recombinant tissue-type plasminogen activator. A possible explanation for resist- ance to coronary thrombolysis. Circulation. 1989;79(4):920-928.
27. Tomkins AJ, Schleicher N, Murtha L, et al. Platelet rich clots are resistant to lysis by thrombolytic therapy in a rat model of embolic stroke. Exp Transl Stroke Med. 2015;7(1):2.
28. Longstaff C, Varjú I, Sótonyi P, et al. Mechanical stability and fibrinolytic resist- ance of clots containing fibrin, DNA, and histones. J Biol Chem. 2013;288(10):6946- 6956.
29. Fuchs TA, Brill A, Duerschmied D, et al. Extracellular DNA traps promote thrombo- sis. Proc Natl Acad Sci U S A. 2010; 107(36):15880-15885.
30. Fuchs TA, Brill A, Wagner DD. Neutrophil extracellular trap (NET) impact on deep vein thrombosis. Arter Thromb Vasc Biol. 2012;32(8):1777-1783.
31. Grässle S, Huck V, Pappelbaum KI, et al. von Willebrand factor directly interacts with DNA from neutrophil extracellular
traps. Arter Thromb Vasc Biol. 2014;
34(7):1382-1389.
32. Miszta A, Pelkmans L, Lindhout T, et al.
Thrombin-dependent Incorporation of von Willebrand Factor into a Fibrin Network. J Biol Chem. 2014;289(52):35979-35986.
33. Hada M, Kaminski M, Bockenstedt P, et al. Covalent crosslinking of von Willebrand factor to fibrin. Blood. 1986;68(1):95–101.
34. Keuren JFW, Baruch D, Legendre P, et al. Von Willebrand factor C1C2 domain is involved in platelet adhesion to polymer- ized fibrin at high shear rate. Blood. 2004;103(5):1741-1746.
35. de Lizarrondo S, Gakuba C, Herbig BA, et al. Potent Thrombolytic Effect of N- Acetylcysteine on Arterial Thrombi. Circulation. 2017;136(7):646-660.
36. Tersteeg C, de Maat S, De Meyer SF, et al. Plasmin cleavage of von Willebrand Factor as an emergency bypass for ADAMTS13 deficiency in thrombotic microangiopathy. Circulation. 2014; 129(12):1320-1331.
37. Clark CC, Mebius MM, de Maat S, et al. Truncation of ADAMTS13 by Plasmin Enhances Its Activity in Plasma. Thromb Haemost. 2018;118(3):471-479.
38. Crawley JTB, Lam JK, Rance JB, Mollica LR, O’Donnell JS, Lane DA. Proteolytic inacti- vation of ADAMTS13 by thrombin and plasmin. Blood. 2005;105(3):1085-93.
39. Maekawa K, Shibata M, Nakajima H, et al. Erythrocyte-rich thrombus is associated with reduced number of maneuvers and procedure time in patients with acute ischemic stroke undergoing mechanical thrombectomy. Cerebrovasc Dis Extra. 2018;8(1):39-49.
40. Weafer FM, Duffy S, Machado I, et al. Characterization of strut indentation dur- ing mechanical thrombectomy in acute ischemic stroke clot analogs. J Neurointerv Surg. 2019 Jan 19. [Epub ahead of print]
41. Gunning GM, Kevin M, Mirza M, Duffy S, Gilvarry M, Brouwer PA. Clot friction vari- ation with fibrin content; implications for resistance to thrombectomy. J Neurointerv Surg. 2018;10(1):34-38.
42. Ryan EA, Mockros LF, Weisel JW, Lorand L. Structural origins of fibrin clot rheology. Biophys J. 1999;77(5):2813-2826.
43. Liebeskind DS, Sanossian N, Yong WH, et al. CT and MRI early vessel signs reflect clot composition in acute stroke. Stroke. 2011;42(5):1237-1243.
44. Kim SK, Yoon W, Kim TS, Kim HS, Heo TW, Park MS. Histologic analysis of retrieved clots in acute ischemic stroke: cor- relation with stroke etiology and gradient- echo MRI. Am J Neuroradiol. 2015; 36(9):1756-1762.
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