Population-wide persistent hemostatic changes after vaccination with ChAdOx1-S

被引:16
作者
de Laat, Bas [1 ,2 ]
Stragier, Hendrik [3 ,4 ]
de Laat-Kremers, Romy [2 ]
Ninivaggi, Marisa [1 ]
Mesotten, Dieter [3 ,5 ]
Thiessen, Steven [3 ]
Van Pelt, Kristien [6 ]
Roest, Mark [7 ]
Penders, Joris [5 ,6 ]
Vanelderen, Pascal [3 ,5 ]
Huskens, Dana [7 ]
De Jongh, Raf [3 ]
Vander Laenen, Margot [3 ]
Fivez, Tom [3 ]
ten Cate, Hugo [1 ,8 ]
Heylen, Rene [3 ,9 ]
Heylen, Line [5 ,10 ]
Steensels, Deborah [6 ,11 ]
机构
[1] Synapse Res Inst, Dept Funct Coagulat, Maastricht, Netherlands
[2] Synapse Res Inst, Dept Data Anal & Artificial Intelligence, Maastricht, Netherlands
[3] Hosp Oost Limburg, Dept Anesthesiol Intens Care Med Emergency Med & P, Genk, Belgium
[4] Maastricht Univ, Fac Hlth Med & Life Sci, CARIM Sch Cardiovasc Dis, Maastricht, Netherlands
[5] UHasselt, Fac Med & Life Sci, Diepenbeek, Belgium
[6] Ziekenhuis Oost Limburg, Dept Lab Med, Genk, Belgium
[7] Synapse Res Inst, Dept Platelet Pathophysiol, Maastricht, Netherlands
[8] Maastricht Univ, Thrombosis Expertise Ctr, Dept Internal Med, Med Ctr, Maastricht, Netherlands
[9] KULeuven, Dept Cardiovasc Sci, Sect Anesthesiol & Algol, Leuven, Belgium
[10] Ziekenhuis Oost Limburg, Dept Nephrol, Genk, Belgium
[11] Univ Libre Bruxelles, Fac Med, Brussels, Belgium
关键词
ChAdOx1-S; COVID-19; thrombin generation; vaccination; hemostasis; ACTIVATION; VACCINES; NCOV-19;
D O I
10.3389/fcvm.2022.966028
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Various vaccines were developed to reduce the spread of the Severe Acute Respiratory Syndrome Cov-2 (SARS-CoV-2) virus. Quickly after the start of vaccination, reports emerged that anti-SARS-CoV-2 vaccines, including ChAdOx1-S, could be associated with an increased risk of thrombosis. We investigated the hemostatic changes after ChAdOx1-S vaccination in 631 health care workers. Blood samples were collected 32 days on average after the second ChAdOx1-S vaccination, to evaluate hemostatic markers such as D-dimer, fibrinogen, alpha 2-macroglobulin, FVIII and thrombin generation. Endothelial function was assessed by measuring Von Willebrand Factor (VWF) and active VWF. IL-6 and IL-10 were measured to study the activation of the immune system. Additionally, SARS-CoV-2 anti-nucleoside and anti-spike protein antibody titers were determined. Prothrombin and fibrinogen levels were significantly reduced after vaccination (-7.5% and -16.9%, p < 0.0001). Significantly more vaccinated subjects were outside the normal range compared to controls for prothrombin (42.1% vs. 26.4%, p = 0.026) and antithrombin (23.9% vs. 3.6%, p = 0.0010). Thrombin generation indicated a more procoagulant profile, characterized by a significantly shortened lag time (-11.3%, p < 0.0001) and time-to-peak (-13.0% and p < 0.0001) and an increased peak height (32.6%, p = 0.0015) in vaccinated subjects compared to unvaccinated controls. Increased VWF (+39.5%, p < 0.0001) and active VWF levels (+24.1 %, p < 0.0001) pointed toward endothelial activation, and IL-10 levels were significantly increased (9.29 pg/mL vs. 2.43 pg/mL, p = 0.032). The persistent increase of IL-10 indicates that the immune system remains active after ChAdOx1-S vaccination. This could trigger a pathophysiological mechanism causing an increased thrombin generation profile and vascular endothelial activation, which could subsequently result in and increased risk of thrombotic events.
引用
收藏
页数:11
相关论文
共 30 条
[11]   Endothelial dysfunction in COVID-19: a position paper of the ESC Working Group for Atherosclerosis and Vascular Biology, and the ESC Council of Basic Cardiovascular Science [J].
Evans, Paul C. ;
Rainger, G. Ed ;
Mason, Justin C. ;
Guzik, Tomasz J. ;
Osto, Elena ;
Stamataki, Zania ;
Neil, Desley ;
Hoefer, Imo E. ;
Fragiadaki, Maria ;
Waltenberger, Johannes ;
Weber, Christian ;
Bochaton-Piallat, Marie-Luce ;
Back, Magnus .
CARDIOVASCULAR RESEARCH, 2020, 116 (14) :2177-2184
[12]   Phase 3 Safety and Efficacy of AZD1222 (ChAdOx1 nCoV-19) Covid-19 Vaccine [J].
Falsey, Ann R. ;
Sobieszczyk, Magdalena E. ;
Hirsch, Ian ;
Sproule, Stephanie ;
Robb, Merlin L. ;
Corey, Lawrence ;
Neuzil, Kathleen M. ;
Hahn, William ;
Hunt, Julie ;
Mulligan, Mark J. ;
McEvoy, Charlene ;
DeJesus, Edwin ;
Hassman, Michael ;
Little, Susan J. ;
Pahud, Barbara A. ;
Durbin, Anna ;
Pickrell, Paul ;
Daar, Eric S. ;
Bush, Larry ;
Solis, Joel ;
Carr, Quito Osuna ;
Oyedele, Temitope ;
Buchbinder, Susan ;
Cowden, Jessica ;
Vargas, Sergio L. ;
Benavides, Alfredo Guerreros ;
Call, Robert ;
Keefer, Michael C. ;
Kirkpatrick, Beth D. ;
Pullman, John ;
Tong, Tina ;
Isaacs, Margaret Brewinski ;
Benkeser, David ;
Janes, Holly E. ;
Nason, Martha C. ;
Green, Justin A. ;
Kelly, Elizabeth J. ;
Maaske, Jill ;
Mueller, Nancy ;
Shoemaker, Kathryn ;
Takas, Therese ;
Marshall, Richard P. ;
Pangalos, Menelas N. ;
Villafana, Tonya ;
Gonzalez-Lopez, Antonio .
NEW ENGLAND JOURNAL OF MEDICINE, 2021, 385 (25) :2348-2360
[13]   Safety and immunogenicity of the ChAdOx1 nCoV-19 vaccine against SARS-CoV-2: a preliminary report of a phase 1/2, single-blind, randomised controlled trial [J].
Folegatti, Pedro M. ;
Ewer, Katie J. ;
Aley, Parvinder K. ;
Angus, Brian ;
Becker, Stephan ;
Belij-Rammerstorfer, Sandra ;
Bellamy, Duncan ;
Bibi, Sagida ;
Bittaye, Mustapha ;
Clutterbuck, Elizabeth A. ;
Dold, Christina ;
Faust, Saul N. ;
Finn, Adam ;
Flaxman, Amy L. ;
Hallis, Bassam ;
Heath, Paul ;
Jenkin, Daniel ;
Lazarus, Rajeka ;
Makinson, Rebecca ;
Minassian, Angela M. ;
Pollock, Katrina M. ;
Ramasamy, Maheshi ;
Robinson, Hannah ;
Snape, Matthew ;
Tarrant, Richard ;
Voysey, Merryn ;
Green, Catherine ;
Douglas, Alexander D. ;
Hill, Adrian V. S. ;
Lambe, Teresa ;
Gilbert, Sarah C. ;
Pollard, Andrew J. .
LANCET, 2020, 396 (10249) :467-478
[14]   Acute activation of the endothelium results in increased levels of active von Willebrand factor in hemolysis, elevated liver enzymes and low platelets (HELLP) syndrome [J].
Hulstein, J. J. J. ;
Heimel, P. J. . Van Runnard ;
Franx, A. ;
Lenting, P. J. ;
Bruinse, H. W. ;
Silence, K. ;
De Groot, Ph. G. ;
Fijnheer, R. .
JOURNAL OF THROMBOSIS AND HAEMOSTASIS, 2006, 4 (12) :2569-2575
[15]   Comparison of the Results of Five SARS-CoV-2 Antibody Assays before and after the First and Second ChAdOx1 nCoV-19 Vaccinations among Health Care Workers: a Prospective Multicenter Study [J].
Jeong, Seri ;
Lee, Nuri ;
Lee, Su Kyung ;
Cho, Eun-Jung ;
Hyun, Jungwon ;
Park, Min-Jeong ;
Song, Wonkeun ;
Jung, Eun Ju ;
Woo, Heungjeong ;
Seo, Yu Bin ;
Park, Jin Ju ;
Kim, Hyun Soo .
JOURNAL OF CLINICAL MICROBIOLOGY, 2021, 59 (12)
[16]  
JHU (JHU), 2020, COVID 19 DASHB CTR S
[17]   The balance of pro- and anticoagulant processes underlying thrombin generation [J].
Kremers, R. M. W. ;
Peters, T. C. ;
Wagenvoord, R. J. ;
Hemker, H. C. .
JOURNAL OF THROMBOSIS AND HAEMOSTASIS, 2015, 13 (03) :437-447
[18]   The effect of fibrin(ogen) on thrombin generation and decay [J].
Kremers, Romy M. W. ;
Wagenvoord, Rob J. ;
Hemker, H. Coenraad .
THROMBOSIS AND HAEMOSTASIS, 2014, 112 (03) :486-494
[19]   COVID-19-associated coagulopathy and antithrombotic agents-lessons after 1 year [J].
Leentjens, Jenneke ;
van Haaps, Thijs F. ;
Wessels, Pieter F. ;
Schutgens, Roger E. G. ;
Middeldorp, Saskia .
LANCET HAEMATOLOGY, 2021, 8 (07) :e524-e533
[20]   Comprehensive investigations revealed consistent pathophysiological alterations after vaccination with COVID-19 vaccines [J].
Liu, Jiping ;
Wang, Junbang ;
Xu, Jinfang ;
Xia, Han ;
Wang, Yue ;
Zhang, Chunxue ;
Chen, Wei ;
Zhang, Huina ;
Liu, Qi ;
Zhu, Rong ;
Shi, Yiqi ;
Shen, Zihao ;
Xing, Zhonggang ;
Gao, Wenxia ;
Zhou, Liqiang ;
Shao, Jinliang ;
Shi, Jiayu ;
Yang, Xuejiao ;
Deng, Yaxuan ;
Wu, Li ;
Lin, Quan ;
Zheng, Changhong ;
Zhu, Wenmin ;
Wang, Congrong ;
Sun, Yi E. ;
Liu, Zhongmin .
CELL DISCOVERY, 2021, 7 (01)