Safety and Efficacy of Cangrelor in Acute Stroke Treated with Mechanical Thrombectomy: Endovascular Treatment of Ischemic Stroke Registry and Meta-analysis.
[en] [en] BACKGROUND AND PURPOSE: Rescue therapies are increasingly used in the setting of endovascular therapy for large-vessel occlusion strokes. Among these, cangrelor, a new P2Y12 inhibitor, offers promising pharmacologic properties to join the reperfusion strategies in acute stroke. We assessed the safety and efficacy profiles of cangrelor combined with endovascular therapy in patients with large-vessel-occlusion stroke.
MATERIALS AND METHODS: We performed a retrospective patient data analysis in the ongoing prospective multicenter observational Endovascular Treatment in Ischemic Stroke Registry in France from July 2018 to December 2020 and conducted a systematic review and meta-analysis using several data bases. Indications for cangrelor administration were rescue strategy in case of refractory intracranial occlusion with or without intracranial rescue stent placement, and cervical carotid artery stent placement in case of cervical occlusion (tandem occlusion or isolated cervical carotid occlusion).
RESULTS: In the clinical registry, 44 patients were included (median initial NIHSS score, 12; prior intravenous thrombolysis, 29.5%). Intracranial stent placement was performed in 54.5% (n = 24/44), and cervical stent placement, in 27.3% (n = 12/44). Adjunctive aspirin and heparin were administered in 75% (n = 33/44) and 40.9% (n = 18/44), respectively. Rates of symptomatic intracerebral hemorrhage, parenchymal hematoma, and 90-day mortality were 9.5% (n = 4/42), 9.5% (n = 4/42), and 24.4% (n = 10/41). Favorable outcome (90-day mRS, 0-2) was reached in 51.2% (n = 21/41), and successful reperfusion, in 90.9% (n = 40/44). The literature search identified 6 studies involving a total of 171 subjects. In the meta-analysis, including our series data, symptomatic intracerebral hemorrhage occurred in 8.6% of patients (95% CI, 5.0%-14.3%) and favorable outcome was reached in 47.6% of patients (95% CI, 27.4%-68.7%). The 90-day mortality rate was 22.6% (95% CI, 13.6%-35.2%). Day 1 artery patency was observed in 89.7% (95% CI, 81.4%-94.6%).
CONCLUSIONS: Cangrelor offers promising safety and efficacy profiles, especially considering the complex endovascular reperfusion procedures in which it is usually applied. Further large prospective data are required to confirm these findings.
Disciplines :
Neurology
Author, co-author :
Marnat, G ; From the Department of Diagnostic and Interventional Neuroradiology (G.M., F.G.), University Hospital of Bordeaux, Bordeaux, France gaultier.marnat@chu-bordeaux.fr
Finistis, S ; Aristotle University of Thessaloniki (S.F.), AhepaHospital, Thessaloniki, Greece
Delvoye, François ; Université de Liège - ULiège > Département des sciences cliniques ; Department of Interventional Neuroradiology (F.D., J.-P.D., M.M.), Rothschild Foundation, Paris, France
Sibon, I ; Department of Neurology (I.S.), Stroke Center, University Hospital of Bordeaux, Bordeaux, France
Desilles, J-P ; Department of Interventional Neuroradiology (F.D., J.-P.D., M.M.), Rothschild Foundation, Paris, France
Mazighi, M ; Department of Interventional Neuroradiology (F.D., J.-P.D., M.M.), Rothschild Foundation, Paris, France
Gariel, F ; From the Department of Diagnostic and Interventional Neuroradiology (G.M., F.G.), University Hospital of Bordeaux, Bordeaux, France
Consoli, A ; Department of Diagnostic and Interventional Neuroradiology (A.C.), Foch Hospital, Versailles Saint-Quentin en Yvelines University, Suresnes, France
Rosso, C ; Department of Neurology (C.R
Clarençon, F ; Neuroradiology (F.C., M.E.), Centre Hospitalier Universitaire Pitié Salpétrière Hospital, Paris, France
Elhorany, M ; Neuroradiology (F.C., M.E.), Centre Hospitalier Universitaire Pitié Salpétrière Hospital, Paris, France
Denier, C ; Department of Neurology (C. Denier
Chalumeau, V ; Neuroradiolology (V.C., J.C.) Centre Hospitalier Universitaire Kremlin Bicêtre, Le Kremlin Bicêtre, France
Caroff, J ; Neuroradiolology (V.C., J.C.) Centre Hospitalier Universitaire Kremlin Bicêtre, Le Kremlin Bicêtre, France
Veunac, L ; Neuroradiolology (L.V.), Centre Hospitalier Cõte Basque, Bayonne, France
Bourdain, F ; Department of Neurology (F.B
Darcourt, J ; Neuroradiolology (J.D.), Centre Hospitalier Universitaire de Toulouse, Toulouse, France
Olivot, J-M ; Departments of Neurology (J.-M.O
Bourcier, R ; Department of Neuroradiology (R.B.), University Hospital of Nantes, Nantes, France
Dargazanli, C ; Departments of Interventional Neuroradiology (C. Dargazanli
Arquizan, C ; Neurology (C.A.), Centre Hospitalier Regional Universitaire Gui de Chauliac, Montpellier, France
Richard, S ; Department of Neurology (S.R.), Université de Lorraine, Centre Hospitalier Regional Universitaire Nancy, Nancy, France
Lapergue, B ; Department of Neurology (B.L.), Foch Hospital, Versailles Saint-Quentin en Yvelines University, Suresnes, France
Gory, B ; Department of Diagnostic and Therapeutic Neuroradiology (B.G.), Université de Lorraine, Centre Hospitalier Regional Universitaire Nancy, Nancy, France ; Université de Lorraine (B.G.), Imagerie Adaptative Diagnostique et Interventionnelle, Institut National de la Santé et de la Recherche Médicale U1254, Nancy, France
Safety and Efficacy of Cangrelor in Acute Stroke Treated with Mechanical Thrombectomy: Endovascular Treatment of Ischemic Stroke Registry and Meta-analysis.
scite shows how a scientific paper has been cited by providing the context of the citation, a classification describing whether it supports, mentions, or contrasts the cited claim, and a label indicating in which section the citation was made.
Bibliography
Goyal M, Menon BK, Van Zwam WH, et al. Endovascular thrombectomy after large-vessel ischaemic stroke: a meta-analysis of individual patient data from five randomised trials. Lancet 2016;387:1723–31 CrossRef Medline
Baek JH, Kim BM, Kim DJ, et al. Stenting as a rescue treatment after failure of mechanical thrombectomy for anterior circulation large artery occlusion. Stroke 2016;47:2360–63 CrossRef Medline
Jia B, Feng L, Liebeskind DS, et al; EAST Study Group. Mechanical thrombectomy and rescue therapy for intracranial large artery occlusion with underlying atherosclerosis. J Neurointerv Surg 2018;10:746–50 CrossRef Medline
Yang J, Wu Y, Gao X, et al. Intraarterial versus intravenous tirofiban as an adjunct to endovascular thrombectomy for acute ischemic stroke. Stroke 2020;51:2925–33 CrossRef Medline
Premat K, Dechartres A, Lenck S, et al. Rescue stenting versus medical care alone in refractory large vessel occlusions: a systematic review and meta-analysis. Neuroradiology 2020;62:629–37 CrossRef Medline
Chang Y, Kim BM, Bang OY, et al. Rescue stenting for failed mechanical thrombectomy in acute ischemic stroke: a multicenter experience. Stroke 2018;49:958–64 CrossRef Medline
Peng F, Wan J, Liu W, et al. Efficacy and safety of rescue stenting following failed mechanical thrombectomy for anterior circulation large vessel occlusion: propensity score analysis. J Neurointerv Surg 2020;12:271–73 CrossRef Medline
Linfante I, Ravipati K, Starosciak AK, et al. Intravenous cangrelor and oral ticagrelor as an alternative to clopidogrel in acute intervention. J Neurointerv Surg 2021;13:30–32 CrossRef Medline
Cervo A, Ferrari F, Barchetti G, et al. Use of cangrelor in cervical and intracranial stenting for the treatment of acute ischemic stroke: a “real life” single-center experience. AJNR Am J Neuroradiol 2020;41:2094–99 CrossRef Medline
Elhorany M, Lenck S, Degos V, et al. Cangrelor and stenting in acute ischemic stroke: monocentric case series. Clin Neuroradiol 2021;31:439–48 CrossRef Medline
Entezami P, Holden DN, Boulos AS, et al. Cangrelor dose titration using platelet function testing during cerebrovascular stent placement. Interv Neuroradiol 2021;27:88–98 CrossRef Medline
Aguilar-Salinas P, Agnoletto GJ, Brasiliense LB, et al. Safety and efficacy of cangrelor in acute stenting for the treatment of cerebrovascular pathology: preliminary experience in a single-center pilot study. J Neuronterv Surg 2019;11:347–51 CrossRef Medline
Abdennour L, Sourour N, Drir M, et al. Preliminary experience with cangrelor for endovascular treatment of challenging intracranial aneurysms. Clin Neuroradiol 2020;30:453–61 CrossRef Medline
Cortez GM, Monteiro A, Sourour N, et al. The use of cangrelor in neurovascular interventions: a multicenter experience. Neuroradiology 2021;63:925–34 CrossRef Medline
Paul AR, Entezami P, Holden D, et al. Use of intravenous cangrelor and stenting in acute ischemic stroke interventions: a new single center analysis and pooled-analysis of current studies. Interv Neuroradiol 2021;27:837–42 CrossRef Medline
Salahuddin H, Dawod G, Zaidi SF, et al. Safety of low dose intravenous cangrelor in acute ischemic stroke: a case series. Front Neurol 2021;12:636682 CrossRef Medline
Sible AM, Nawarskas JJ. Cangrelor: a new route for P2Y12 inhibition. Cardiol Rev 2017;25:133–39 CrossRef Medline
Kaesmacher J, Gralla J, Mosimann PJ, et al. Reasons for reperfusion failures in stent-retriever-based thrombectomy: registry analysis and proposal of a classification system. AJNR Am J Neuroradiol 2018;39:1848–53 CrossRef Medline
Kim BM. Causes and solutions of endovascular treatment failure. J Stroke 2017;19:131–42 CrossRef Medline
Yeo LL, Bhogal P, Gopinathan A, et al. Why does mechanical thrombectomy in large vessel occlusion sometimes fail? A review of the literature. Clin Neuroradiol 2019;29:401–14 CrossRef Medline
Marnat G, Delvoye F, Finitsis S, et al; ETIS Investigators. A multicenter preliminary study of cangrelor following thrombectomy failure for refractory proximal intracranial occlusions. AJNR Am J Neuroradiol 2021;42:1452–57 CrossRef Medline
Maingard J, Phan K, Lamanna A, et al. Rescue intracranial stenting after failed mechanical thrombectomy for acute ischemic stroke: a systematic review and meta-analysis. World Neurosurg 2019;132: e235–45 CrossRef Medline
Delvoye F, Maier B, Escalard S, et al. Antiplatelet therapy during emergent extracranial internal carotid artery stenting: comparison of three intravenous antiplatelet perioperative strategies. J Stroke Cerebrovasc Dis 2021;30:105521 CrossRef Medline
Boisseau W, Fahed R, Lapergue B, et al; ETIS Investigators. Predictors of parenchymal hematoma after mechanical thrombectomy: a multicenter study. Stroke 2020;51:2364–70 CrossRef Medline
Hao Y, Yang D, Wang H, et al; ACTUAL Investigators (Endovascular Treatment for Acute Anterior Circulation Ischemic Stroke Registry). Predictors for symptomatic intracranial hemorrhage after endovascular treatment of acute ischemic stroke. Stroke 2017;48:1203–09 CrossRef Medline
Holden DN, Entezami P, Bush MC, et al. Characterization of antiplatelet response to low-dose cangrelor utilizing platelet function testing in neuroendovascular patients. Pharmacotherapy 2021;41:811–19 CrossRef Medline
Godier A, Mesnil M, De Mesmay M, et al. Bridging antiplatelet therapy with cangrelor in patients with recent intracranial stenting undergoing invasive procedures: a prospective case series. Br J Anaesth 2019;123:e2–e5 CrossRef Medline
Abdalla RN, Cantrell DR, Shaibani A, et al. Refractory stroke thrombectomy: prevalence, etiology, and adjunctive treatment in a North American cohort. AJNR Am J Neuroradiol 2021;42:1258–63 CrossRef Medline
Tsang AC, Orru E, Klostranec JM, et al. Thrombectomy outcomes of intracranial atherosclerosis-related occlusions. Stroke 2019;50:1460–66 CrossRef Medline
Similar publications
Sorry the service is unavailable at the moment. Please try again later.
This website uses cookies to improve user experience. Read more
Save & Close
Accept all
Decline all
Show detailsHide details
Cookie declaration
About cookies
Strictly necessary
Performance
Strictly necessary cookies allow core website functionality such as user login and account management. The website cannot be used properly without strictly necessary cookies.
This cookie is used by Cookie-Script.com service to remember visitor cookie consent preferences. It is necessary for Cookie-Script.com cookie banner to work properly.
Performance cookies are used to see how visitors use the website, eg. analytics cookies. Those cookies cannot be used to directly identify a certain visitor.
Used to store the attribution information, the referrer initially used to visit the website
Cookies are small text files that are placed on your computer by websites that you visit. Websites use cookies to help users navigate efficiently and perform certain functions. Cookies that are required for the website to operate properly are allowed to be set without your permission. All other cookies need to be approved before they can be set in the browser.
You can change your consent to cookie usage at any time on our Privacy Policy page.