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NCT Number: NCT05492110

Coronary Sinus Reducer Implantation in Patients With Ischaemia and Non-obstructed Coronary Arteries and Coronary Microvascular Dysfunction.

To demonstrate the feasibility and efficacy of the CS Reducer for the treatment of patients with ischaemia and non-obstructed coronary arteries (INOCA) and coronary microvascular dysfunction (CMD) and through a nested mechanistic substudy investigate the physiological responses in the coronary microcirculation responsible for changes in myocardial perfusion.

Recruiting

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Key information

Age range

18 year and older

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

National Heart and Lung Institute (Brompton Campus), Imperial College London

London, SW36NP, United Kingdom

Location status: Recruiting

Location contact

Kevin Cheng, BM BCh, MRCP

CONTACT

[email protected]

Ranil de Silva, FRCP, PhD

CONTACT

[email protected]

About this study

Symptomatic angina in patients with ischaemia and non-obstructed coronary arteries (INOCA) is common and associated with increased morbidity and adverse outcomes. Myocardial ischaemia often arises from coronary microvascular dysfunction (CMD). Current treatments are limited, and novel evidence-based therapies are needed to address this large unmet clinical need. The Coronary Sinus Reducer (CS Reducer) is a new treatment for refractory angina, which creates a focal narrowing in the coronary sinus that increases back pressure and redistributes blood into ischaemic myocardium at the level of the microcirculation. However the precise mechanism remains unknown. This study will be a randomised double-blinded sham-controlled pilot study (REMEDY-PILOT) to confirm acceptability of CS Reducer implantation, demonstrate feasibility to recruit and quantify its effect on myocardial perfusion. A nested mechanistic substudy within REMEDY-PILOT will test the hypothesis that CS Reducer implantation alters measures of invasive coronary microcirculatory physiology as the mechanistic basis for observed changes in quantitative CMR stress perfusion, symptoms and quality of life.

Who can participate

Healthy volunteers accepted: No

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

Inclusion criteria

  • Age >18 years
  • Ongoing symptomatic angina, CCS Class II-IV, for ≥3 months despite background treatment with at least two anti-anginal drug at the maximal tolerated dose.
  • Patients willing to consider no change in anti-anginal drug treatment for the duration of their participation in the trial.
  • Unobstructed coronary arteries with ≤50% epicardial stenoses demonstrated on coronary angiography.
  • Stress-induced hypoperfusion on CMR (Global MPR ≤ 2.2).
  • Willingness to comply with the specified follow-up evaluation and to be contactable during the period of the trial.
  • Understands the nature of the trial procedures and provides written informed consent.

Exclusion criteria

  • Epicardial CAD in a main coronary artery (stenoses >50%, RFR≤0.92 or FFR≤0.80), coronary artery bypass grafting, or myocardial infarction (MI).
  • Previous PCI within 6 months
  • PCI with stent insertion for acute MI or chronic total occlusion (CTO)
  • Abnormal coronary sinus anatomy (tortuosity, aberrant branch, persistent left superior vena cava)
  • Coronary sinus diameter at site of implant <9.5mm or >13mm
  • Mean right atrial pressure <15mmHg at time of implantation
  • Any structural heart disease including left ventricular hypertrophy; cardiomyopathy; severe valvular heart disease; previous valve replacement; myocardial bridge on angiography; LVEF<45% by CMR.
  • Clinically or angiographically diagnosed coronary vasospasm
  • Previous hospitalisation for decompensated heart failure
  • Pacemaker or defibrillator electrode in the right atrium, right ventricle or coronary sinus
  • Documented arrhythmia requiring planned implantation of a permanent pacemaker or defibrillator
  • Chronic kidney disease (creatinine >200 micromol/L; established on renal replacement therapy; functioning renal transplant)
  • Haemoglobin <80g/L
  • Contraindications to receiving dual antiplatelet therapy
  • Severe chronic obstructive pulmonary disease (FEV1 <55% predicted)
  • Moribund patients with life expectancy < 1year
  • Known allergy to nickel or steel
  • Current enrolment in another investigational device or drug trial
  • Contraindications to CMR or receiving intravenous adenosine
  • Pregnancy

Treatment and study plan

Coronary Sinus Reducer

Device

The Neovasc coronary sinus reducer is an hourglass-shaped stainless steel device inserted percutaneously into the coronary sinus and currently indicated for the treatment of refractory angina.

Sham-procedure

Other

Implantation procedure with no device implanted

Invasive coronary physiology

Diagnostic Test

Invasive coronary physiology assessment as part of REMEDY-MECH mechanistic substudy

Primary outcomes

  1. number of patients consenting to participate in the study.

    Time frame: 6 months

    Consent rate

  2. Premature withdrawal rate including reasons for withdrawal

    Time frame: 6 months

    Registry of patients either failing screening or unwilling to consent to full trial

  3. Change in myocardial perfusion

    Time frame: 6 months

    Change at 6 months post randomisation, compared to baseline, in quantitative myocardial perfusion (global myocardial perfusion reserve [MPR]) assessed by cardiac MRI.

Secondary outcomes

  1. Canadian Cardiovascular Society (CCS) Angina Score

    Time frame: 6 months

    Change in CCS class from baseline to 6 months post-randomisation. The CCS grading system for angina is a clinical tool used by doctors to assess the degree of severity of a patient's angina. Possible scores range from Class 0 (asymptomatic angina) to Class IV (angina at rest).

  2. Seattle Angina Questionnaire (SAQ) score

    Time frame: 6 months

    Change in SAQ score from baseline to 6 months. The Seattle Angina Questionnaire (SAQ) is a disease-specific questionnaire used to quantify patients' symptoms of angina and the extent to which their angina affects their functioning and quality of life. Possible scores range from 0 (daily angina) to 100 (no angina). Lower scores indicate worse angina symptoms.

  3. Short-form 36 (SF-36)

    Time frame: 6 months

    Change in SF-36 scores from baseline to 6 months. Validated questionnaire to assess quality of life. 36 items each scored from 0-100 with higher scores indicating a more favourable health state.

  4. Hospital Anxiety and Depression Scale (HADS)

    Time frame: 6 months

    Change in HADS score from baseline to 6 months. Scores range from 0 to 21. Normal results are indicated by lower scores. Validated questionnaire to assess psychological wellbeing.

  5. 6-minute walk test (6MWT)

    Time frame: 6 months

    Change in exercise capacity from baseline to 6 months. Distance in metres walked in 6 minutes.

  6. BORG scale of perceived exertion

    Time frame: 6 months

    Change in BORG scale from baseline to 6 months. Scores range from 0 to 20 (BORG scale) or 0 to 10 (Modified BORG scale). The higher the self-reported score, the greater perceived exertion.

  7. Safety events - rate of major adverse events

    Time frame: 6 months

    The rate of occurrence of a composite of death, myocardial infarction (MI), pericardial effusion requiring surgical or percutaneous intervention, device embolisation, or BARC 3 or 5 bleeding evaluation in the CS Reducer arm compared to the sham-procedure arm.

Other outcomes

  1. Change in absolute global myocardial perfusion (ml/min/g) at rest and during adenosine stress (transmural, endocardial, epicardial) from baseline to 6 months post-randomisation

    Time frame: 6 months

  2. Change in absolute myocardial perfusion (ml/min/g) at rest and during adenosine stress (transmural, endocardial, epicardial) from baseline to 6 months post-randomisation in the distribution territory of the left coronary circulation.

    Time frame: 6 months

  3. Change in global endocardial:epicardial perfusion ratio at rest and after adenosine stress from baseline to 6 months post-randomisation

    Time frame: 6 months

  4. Change in endocardial:epicardial perfusion ratio at rest and after adenosine stress from baseline to 6 months post-randomisation in the distribution territory of the left coronary circulation.

    Time frame: 6 months

Study contacts

Contact information is provided by the study sponsor or research team.

Kevin Cheng, BM BCh, MRCP

CONTACT

[email protected]

+44 2073518626

Ranil de Silva, FRCP, PhD

CONTACT

[email protected]

+44 2073518626

Sponsors and collaborators

Lead sponsor

Imperial College London

Other

Collaborators

  • Bradford Teaching Hospitals NHS Foundation Trust
  • East and North Hertfordshire NHS Trust
  • Epsom and St Helier University Hospitals NHS Trust
  • Guy's and St Thomas' NHS Foundation Trust
  • Imperial College Healthcare NHS Trust
  • Kingston Hospital NHS Trust
  • Liverpool University Hospitals NHS Foundation Trust
  • London North West Healthcare NHS Trust
  • Oxford University Hospitals NHS Trust
  • Royal Brompton & Harefield NHS Foundation Trust
  • St George's University Hospitals NHS Foundation Trust

Registry information

Official study title

REducing Microvascular Dysfunction in Patients With Angina, Ischaemia and unobstructED coronarY Arteries - a PILOT Study

Acronym: REMEDY-PILOT

Important dates

Study start
2023
Primary completion
2026
Study completion
2026
First posted
Aug 8, 2022
Registry last updated
Apr 3, 2025

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.

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