Literature DB >> 29262841

Statistical analysis plan for the 'Tranexamic acid for hyperacute primary IntraCerebral Haemorrhage' (TICH-2) trial.

Katie Flaherty1, Philip M Bath1, Robert Dineen2, Zhe Law1,3, Polly Scutt1, Stuart Pocock4, Nikola Sprigg5.   

Abstract

RATIONALE: Aside from blood pressure lowering, treatment options for intracerebral haemorrhage remain limited and a proportion of patients will undergo early haematoma expansion with resultant significant morbidity and mortality. Tranexamic acid (TXA), an anti-fibrinolytic drug, has been shown to significantly reduce mortality in patients, who are bleeding following trauma, when given rapidly. TICH-2 is testing whether TXA is effective at improving outcome in spontaneous intracerebral haemorrhage (SICH). METHODS AND
DESIGN: TICH-2 is a pragmatic, phase III, prospective, double-blind, randomised placebo-controlled trial. Two thousand adult (aged ≥ 18 years) patients with an acute SICH, within 8 h of stroke onset, will be randomised to receive TXA or the placebo control. The primary outcome is ordinal shift of modified Rankin Scale score at day 90. Analyses will be performed using intention-to-treat.
RESULTS: This paper and its attached appendices describe the statistical analysis plan (SAP) for the trial and were developed and published prior to database lock and unblinding to treatment allocation. The SAP includes details of analyses to be undertaken and unpopulated tables which will be reported in the primary and key secondary publications. The database will be locked in early 2018, ready for publication of the results later in the same year. DISCUSSION: The SAP details the analyses that will be done to avoid bias arising from prior knowledge of the study findings. The trial will determine whether TXA can improve outcome after SICH, which currently has no definitive therapy. TRIAL REGISTRATION: ISRCTN registry, ID: ISRCTN93732214 . Registered on 17 January 2013.

Entities:  

Keywords:  Hyperacute; Placebo-controlled; Randomised trial; Spontaneous intracerebral haemorrhage; Tranexamic acid

Mesh:

Substances:

Year:  2017        PMID: 29262841      PMCID: PMC5738041          DOI: 10.1186/s13063-017-2341-5

Source DB:  PubMed          Journal:  Trials        ISSN: 1745-6215            Impact factor:   2.279


Background

Haemorrhagic stroke or intracerebral haemorrhage (ICH), caused by bleeding in the brain, can be devastating and is a common cause of death and disability, both in the UK and worldwide. Despite development of effective treatments for ischaemic stroke (thrombolysis, aspirin, hemicraniectomy, thrombectomy) there is no proven effective treatment for ICH. Outcome after ICH is closely related to whether brain bleeding expands after onset, so-called haematoma expansion, or whether re-bleeding occurs; both are associated with a poor outcome (death and disability) [1]. Haematoma expansion is related to both haemostatic factors and blood pressure; furthermore, haematoma volume can be reduced surgically. For ICH, aside from intensive blood pressure lowering, treatment options remain limited and a proportion of patients will undergo early haematoma expansion with resultant significant morbidity and mortality. An ICH that occurs in the absence of a known underlying cause, e.g. aneurysm, arteriovenous malformation (AVM) or tumour, is referred to as a spontaneous intracerebral haemorrhage (SICH). Tranexamic acid (TXA) is a licensed anti-fibrinolytic drug that can be administered intravenously or orally and is used in a number of bleeding conditions to reduce bleeding [2, 3]. It has been tested in aneurysmal subarachnoid haemorrhage, where it reduced the risk of re-bleeding at the expense of increased risk of cerebral ischaemia [4]; however, administration was for a week, conferring prolonged exposure to risk of ischaemic events. In a recent mega-trial (CRASH-2) in 20,000 patients, with major bleeding following trauma, TXA significantly reduced mortality, odds ratio (OR) 0.91 (0.85, 0.97), with no increase in vascular occlusive events [5]. Treatment was most effective when given rapidly; delayed administration was associated with lack of efficacy and potential harm [6]. In another randomised controlled trial in traumatic ICH, TXA showed trends towards reduced death: OR 0.69 (0.35, 1.39), and death or dependency: OR 0.76 (0.46, 1.27), without increased thromboembolic events [7]. Additionally, TXA has been found to restrict haematoma expansion in acute SICH in a small non-randomised study, although this did not report on safety [8]. In another small study (n = 156), rapid administration of a bolus of TXA within 24 h of stroke was observed to reduce haematoma expansion (17.5% vs. 4.3%) [9]. In this study, TXA was given in combination with intensive blood pressure control, suggesting that it may be possible to combine haemostatic and haemodynamic approaches. There have been recent calls in the academic literature for large clinical trials to examine the use of TXA in ICH [10]. The on-going TICH-2 trial is a phase III, prospective, double-blind, randomised placebo-controlled trial, which will assess whether TXA (intravenous 1 g bolus, 1 g infusion/8 h) in acute (<8 h) SICH is safe and reduces death or dependency (measured as a shift in the modified Rankin Scale (mRS) score). TICH-2 is pragmatic in design, with minimal inclusion and exclusion criteria. Further information regarding randomisation can be found in the protocol [11]. TICH-2 followed a two-phase design: the 12-month start-up phase (to assess feasibility) aimed to recruit a minimum of 300 participants from 30 centres, then the main phase is continuing to recruit to a target of 2000 participants from 120 centres over 43 months. The Independent Data Monitoring Committee (iDMC) assessed the trial every 6 months and recommended that the trial should continue on each occasion. Whilst recruitment in the UK was ahead of schedule, recruitment internationally was delayed by prolonged approval processes. Therefore, a 12-month, no-cost extension was sought and approved in April 2016 to allow additional time to enable the trial to reach 2000 participants. Recruitment rate subsequently increased, with recruitment likely to exceed the original 2000 participant target. The Trial Steering Committee recommended that recruitment continues until the end of the allotted funding in order to maximise recruitment, international participants, recruitment into the magnetic resonance imaging (MRI) sub-study and statistical power.

Methods and design

The statistical analysis plan (SAP), detailed in Additional file 1, will ensure that the analyses are not data driven or selectively reported. Presentation of primary analyses is expected in spring 2018, after all participants have been followed up to day 90. Additional file 1 will detail tables to be included in the primary publication, as well as brief descriptions of other planned publications. The primary outcome, death or dependency (ordinal shift on mRS) at day 90, will be analysed by intention-to-treat using ordinal logistic regression (OLR), with adjustment for minimisation factors. Whilst there are limitations to using an ordinal analysis of the mRS score (for example, moving from a 6 to a 5 may not be perceived as clinically useful and distances between points are not always equivalent), this approach is widely accepted across stroke trials and recommended by the European Stroke Organisation (ESO) Outcomes Working Party [12]. A number of secondary and sub-group analyses will be undertaken; time to randomisation is likely to be the most important sub-group and so will be examined in more detail. The results will determine whether TXA can improve outcome after SICH, which currently has no proven therapy. Three sub-studies are being run in conjunction with the trial; one for a telephone follow-up at day 365, one which takes two MRI scans at days 5 and 90 and the third one is a single-centre sub-study that explores plasma biomarkers at baseline, day 2, and day 7. A number of secondary publications are also planned, including; a paper giving further details on randomisation and baseline characteristics and a number of papers addressing secondary outcomes. An individual patient data meta-analysis is planned; using data from studies that looked at using TXA for ICH.

Data sharing

Once completed, data from TICH-2 will be added to summary and individual patient data meta-analyses in acute stroke. IPD will be made available to the ‘Virtual International Stroke Trials Archive’ (VISTA) [13], and subsequently over the web, as with the International Stroke Trial [14]. Similarly, anonymised baseline and on-treatment neuroimaging data will be published [15].

Supporting information

Additional supporting information may be found in the online version of this article. Additional file 1 shows the SAP (TICH-2).

Trial status

At the time of first submission the TICH-2 trial was ongoing with recruitment due to finish on 30 September 2017 and with follow-up of the primary outcome ongoing until 30 December 2017.
  12 in total

Review 1.  Options to restrict hematoma expansion after spontaneous intracerebral hemorrhage.

Authors:  Thorsten Steiner; Julian Bösel
Journal:  Stroke       Date:  2009-12-31       Impact factor: 7.914

2.  Effects of tranexamic acid on death, vascular occlusive events, and blood transfusion in trauma patients with significant haemorrhage (CRASH-2) A randomised, placebo-controlled trial.

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Journal:  West Indian Med J       Date:  2010-12       Impact factor: 0.171

3.  Rapid administration of antifibrinolytics and strict blood pressure control for intracerebral hemorrhage.

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Journal:  Neurosurgery       Date:  2005-11       Impact factor: 4.654

Review 4.  Tranexamic acid: a review of its use in surgery and other indications.

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Journal:  Drugs       Date:  1999-06       Impact factor: 9.546

Review 5.  Antifibrinolytic drugs for acute traumatic injury.

Authors:  Ian Roberts; Haleema Shakur; Katharine Ker; Tim Coats
Journal:  Cochrane Database Syst Rev       Date:  2011-01-19

6.  The NeuroGrid stroke exemplar clinical trial protocol.

Authors:  J M Wardlaw; Philip Bath; Peter Sandercock; David Perry; Jeb Palmer; Graham Watson; Sharon Lloyd; John Geddes; Andrew Farrall
Journal:  Int J Stroke       Date:  2007-02       Impact factor: 5.266

Review 7.  Antifibrinolytic therapy for aneurysmal subarachnoid haemorrhage.

Authors:  Merih I Baharoglu; Menno R Germans; Gabriel J E Rinkel; Ale Algra; Marinus Vermeulen; Jan van Gijn; Yvo B W E M Roos
Journal:  Cochrane Database Syst Rev       Date:  2013-08-30

8.  The International Stroke Trial database.

Authors:  Peter A G Sandercock; Maciej Niewada; Anna Członkowska
Journal:  Trials       Date:  2011-04-21       Impact factor: 2.279

9.  Effect of tranexamic acid in traumatic brain injury: a nested randomised, placebo controlled trial (CRASH-2 Intracranial Bleeding Study).

Authors: 
Journal:  BMJ       Date:  2011-07-01

10.  The Virtual International Stroke Trials Archive.

Authors:  Myzoon Ali; Philip M W Bath; John Curram; Stephen M Davis; Hans-Christoph Diener; Geoffrey A Donnan; Marc Fisher; Barbara A Gregson; James Grotta; Werner Hacke; Michael G Hennerici; Marc Hommel; Markku Kaste; John R Marler; Ralph L Sacco; Philip Teal; Nils-Gunnar Wahlgren; Steven Warach; Christopher J Weir; Kennedy R Lees
Journal:  Stroke       Date:  2007-04-19       Impact factor: 7.914

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1.  Brief Consent Methods Enable Rapid Enrollment in Acute Stroke Trial: Results From the TICH-2 Randomized Controlled Trial.

Authors:  Zhe Kang Law; Jason P Appleton; Polly Scutt; Ian Roberts; Rustam Al-Shahi Salman; Timothy J England; David J Werring; Thompson Robinson; Kailash Krishnan; Robert A Dineen; Ann Charlotte Laska; Philippe A Lyrer; Juan Jose Egea-Guerrero; Michal Karlinski; Hanne Christensen; Christine Roffe; Daniel Bereczki; Serefnur Ozturk; Jegan Thanabalan; Ronan Collins; Maia Beridze; Alfonso Ciccone; Lelia Duley; Angela Shone; Philip M Bath; Nikola Sprigg
Journal:  Stroke       Date:  2021-12-01       Impact factor: 7.914

2.  Outcomes in Antiplatelet-Associated Intracerebral Hemorrhage in the TICH-2 Randomized Controlled Trial.

Authors:  Zhe Kang Law; Michael Desborough; Ian Roberts; Rustam Al-Shahi Salman; Timothy J England; David J Werring; Thompson Robinson; Kailash Krishnan; Robert Dineen; Ann Charlotte Laska; Nils Peters; Juan Jose Egea-Guerrero; Michal Karlinski; Hanne Christensen; Christine Roffe; Daniel Bereczki; Serefnur Ozturk; Jegan Thanabalan; Rónán Collins; Maia Beridze; Philip M Bath; Nikola Sprigg
Journal:  J Am Heart Assoc       Date:  2021-02-15       Impact factor: 5.501

3.  Tranexamic acid for hyperacute primary IntraCerebral Haemorrhage (TICH-2): an international randomised, placebo-controlled, phase 3 superiority trial.

Authors:  Nikola Sprigg; Katie Flaherty; Jason P Appleton; Rustam Al-Shahi Salman; Daniel Bereczki; Maia Beridze; Hanne Christensen; Alfonso Ciccone; Ronan Collins; Anna Czlonkowska; Robert A Dineen; Lelia Duley; Juan Jose Egea-Guerrero; Timothy J England; Kailash Krishnan; Ann Charlotte Laska; Zhe Kang Law; Serefnur Ozturk; Stuart J Pocock; Ian Roberts; Thompson G Robinson; Christine Roffe; David Seiffge; Polly Scutt; Jegan Thanabalan; David Werring; David Whynes; Philip M Bath
Journal:  Lancet       Date:  2018-05-16       Impact factor: 79.321

4.  Predictors and Outcomes of Neurological Deterioration in Intracerebral Hemorrhage: Results from the TICH-2 Randomized Controlled Trial.

Authors:  Zhe Kang Law; Rob Dineen; Timothy J England; Lesley Cala; Amit K Mistri; Jason P Appleton; Serefnur Ozturk; Daniel Bereczki; Alfonso Ciccone; Philip M Bath; Nikola Sprigg
Journal:  Transl Stroke Res       Date:  2020-09-09       Impact factor: 6.829

5.  Prevention of haematoma progression by tranexamic acid in intracerebral haemorrhage patients with and without spot sign on admission scan: a statistical analysis plan of a pre-specified sub-study of the TICH-2 trial.

Authors:  Christian Ovesen; Janus Christian Jakobsen; Christian Gluud; Thorsten Steiner; Zhe Law; Katie Flaherty; Rob A Dineen; Philip M Bath; Nikola Sprigg; Hanne Christensen
Journal:  BMC Res Notes       Date:  2018-06-13
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