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Completed

NCT Number: NCT04174261

Ticagrelor in Remote Ischemic Preconditioning Study

Remote ischemic preconditioning (RIPC) reduces periprocedural myocardial injury (PMI) after percutaneous coronary intervention (PCI) through various pathways, including an adenosine-triggered pathway. Ticagrelor inhibits adenosine uptake, thus may potentiate the effects of RIPC.

This randomized trial tested the hypothesis that ticagrelor potentiates the effect of RIPC and reduces PMI, as assessed by post-procedural troponin release

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Key information

Age range

18 year and older

Sex eligibility

All sexes

Study type

Interventional

Phase

Phase 4

Primary location

Athens Red Cross Hospital

Athens, Attica, 11526, Greece

About this study

Percutaneous coronary intervention (PCI) is often complicated by peri-procedural myocardial injury, with widespread adoption of sensitive cardiac biomarkers assays allowing detection of smaller amounts of myocardial necrosis (1, 2). Peri-procedural cardiac troponin elevation has been associated with new irreversible myocardial injury, detected by delayed-enhancement magnetic resonance imaging (3), and even though the prognostic significance of peri-procedural cardiac troponin elevation has been highly debated (4), several studies have reported that peri-procedural injury is associated with worse prognosis (5, 6).

Peri-procedural myocardial injury attenuation is expected to improve cardiovascular outcomes following PCI, and this could be achieved through such cardioprotective interventions as ischemic preconditioning (IPC) (2). Converging experimental and clinical evidence suggests that the long-established therapeutic potential of remote IPC or ischemic perconditioning may find clinical use in the setting of elective PCI or ST-elevation myocardial infarction (MI)(7-9). Nevertheless, recent clinical trials suggest that the cardioprotective effect of remote IPC is moderate (10, 11), thus demonstrating the need to explore methods to augment it.

The ischemic conditioning signal is considered a summation of signals derived from multiple disparate receptor-ligand interactions, which reaches a threshold once sufficient combined signals are generated (12, 13). Adenosine, with its plasma levels increasing after cellular stresses and ischemia, is a crucial trigger of the preconditioning cascade (14), however it is rapidly taken up by cells through sodium-independent equilibrative nucleoside transporters (ENT 1/2) and sodium-dependent concentrative nucleoside transporters (CNT 2/3) (15).

Experimental data suggest that ticagrelor inhibits cellular reuptake of adenosine, thereby increasing systemic and tissue adenosine levels (15-17). Moreover, the antiplatelet effects of ticagrelor have been shown to be partly mediated by increased extracellular adenosine levels and ticagrelor enhances the hyperemic response to adenosine (16, 18). Clinical evidence suggests that in patients with acute coronary syndromes (ACS) ticagrelor treatment is associated with higher adenosine levels and an augmentation of coronary blood flow velocity in response to adenosine (19, 20). The investigators hypothesized that ticagrelor treatment would potentiate the effects of remote IPC and would thereby reduce peri-procedural myocardial injury and the incidence of post-PCI MI.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Provision of informed consent prior to any study specific procedures
  • Patients (Female and male) ≥ 18 of age
  • Patients with NSTE-ACS undergoing coronary angiography, eligible for PCI

Exclusion criteria

  • Women of childbearing potential
  • Severe comorbidity (estimated life expectancy <6 months)
  • Baseline cTnI before PCI that is not stable or falling or is > 5 ×99th percentile URL.
  • End-stage renal disease(eGFR<15 ml/min/1.73 m2)
  • CRUSADE Bleeding Score >50
  • Patients with an indication for oral anticoagulation
  • On maintenance therapy with ticagrelor or those that have received clopidogrel for less than 3 days
  • Use of nicorandil or glibenclamide
  • Concomitant theophylline/aminophylline use
  • Known contraindications to the use of ticagrelor Hypersensitivity to the active substance or to any of the excipients
  • Active pathological bleeding
  • History of intracranial haemorrhage
  • Moderate to severe hepatic impairment
  • Co-administration of ticagrelor with strong CYP3A4 inhibitors (e.g., ketoconazole, clarithromycin, nefazodone, ritonavir, and atazanavir).
  • Patients meeting criteria for immediate or early (<24h) invasive strategy based on the current relevant European Society of Cardiology guidelines

Treatment and study plan

Ticagrelor

Drug

Preprocedural ticagrelor loading and standard dose thereafter

Remote ischemic preconditioning

Procedure

Preprocedural remote ischemic preconditioning on the non-dominant arm

clopidogrel

Drug

Preprocedural clopidogrel loading and standard dose thereafter

Primary outcomes

  1. deltaTnI

    Time frame: At the time of PCI / 24 hours post-PCI

    The primary outcome measure of the study was deltaTnI, defined as the difference between cardiac troponin I (cTnI) levels at 24 hours post-PCI and cTnI levels before the procedure.

Secondary outcomes

  1. Peri-procedural MI (type 4a MI)

    Time frame: 24 hours post-PCI

    The prevalence of peri-procedural MI (type 4a MI) according to the third universal definition of MI (5xULN) was a secondary endpoint.

  2. Chest pain during PCI: analog 10-point scale

    Time frame: During the PCI procedure

    Chest pain during PCI was assessed at the post-PCI clinical examination of the subject by an appropriately qualified person, who was unaware of patient's treatment allocation. An analog 10-point scale was used (0: no pain, 10: most severe discomfort ever experienced).

  3. ST-segment deviation during PCI

    Time frame: During the PCI procedure

    ST-segment deviation during PCI was monitored by an appropriately qualified person, who was unaware of patient's treatment allocation. It was defined as the absolute value of ST-segment deviation at 60-80ms after the J-point in mm at the beginning of coronary angiography minus ST-segment deviation at 60-80ms after the J-point in mm during balloon occlusion.

Other outcomes

  1. Bleeding

    Time frame: At the time of PCI / 24 hours post-PCI

    Bleeding, according to the Thrombolysis In Myocardial Infarction (TIMI) criteria, was considered as a safety outcome.

Sponsors and collaborators

Lead sponsor

Hellenic Society of Interventional Cardiology

Other

Registry information

Acronym: TRIP

Important dates

Study start
2017
Primary completion
2017
Study completion
2018
First posted
Nov 22, 2019
Registry last updated
Nov 22, 2019

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.