Multimodal Biomarkers in Coronary Artery Disease Pathogenesis: The Oxford Acute Myocardial Infarction Study (OXAMI Study) (OXAMI)
Coronary artery disease is one of the most common causes of illness and death. It develops when fatty deposits, known as plaques, build up in the arteries that supply blood to the heart. These plaques can gradually narrow the arteries and reduce blood flow, causing symptoms such as chest pain (angina). Sometimes a plaque can suddenly break open, causing a blood clot to form and block the artery. This can lead to a heart attack and permanent damage to the heart muscle.
Although much has been learned about coronary artery disease, important questions remain about why some plaques suddenly become unstable, how this affects blood flow through the smallest blood vessels of the heart, and why some patients develop more heart muscle damage than others.
The Oxford Acute Myocardial Infarction (OxAMI) research programme aims to improve our understanding of these processes. The investigators will study both the disease within the coronary arteries (the "upstream" problem) and its effects on the heart muscle (the "downstream" damage). By examining these together, the investigators hope to understand more clearly how changes in coronary plaques lead to heart injury and how this differs between patients.
Participants undergoing procedures to investigate or treat coronary artery disease provide an important opportunity to study these processes. During coronary angioplasty (also called percutaneous coronary intervention or PCI), a narrow or blocked artery is opened, usually using a small balloon and a stent. This procedure can disturb the underlying plaque in a similar way to the plaque disruption that occurs during a heart attack. Where appropriate, the investigators may therefore collect blood and material released from the plaque during these procedures. Blood may be collected from different locations in the circulation, allowing the investigators to study substances released by the plaque and heart muscle. Material that would otherwise be discarded during treatment may also be collected for laboratory analysis.
The investigators will use several established and newer techniques to examine the coronary arteries, the small blood vessels within the heart, and the heart muscle. These may include detailed imaging from inside the coronary arteries using intravascular ultrasound (IVUS) or optical coherence tomography (OCT). The investigators may also measure blood pressure and flow within the coronary arteries to assess how well the small blood vessels supplying the heart are working.
Non-invasive heart scans may include cardiovascular magnetic resonance (CMR/MRI), cardiac computed tomography (CT) and echocardiography (ultrasound). These techniques can provide detailed information about the structure and function of the heart, blood supply to the heart muscle, areas of injury or permanent scarring, and changes that occur following a heart attack. In particular, MRI may help distinguish heart muscle that has been permanently damaged from muscle that is injured but could potentially recover after blood flow is restored. This may be especially important for participants who arrive at hospital several hours after their heart attack began.
Other measurements may include electrocardiograms (ECGs), which record the electrical activity of the heart, and measurements of heart pressure, volume and function. Some participants may also have longer-term ECG monitoring.
Blood and tissue samples may be analysed using a range of laboratory techniques. These studies will investigate inflammation, blood clotting and other biological processes involved in coronary artery disease and heart attacks. Newer laboratory methods may allow us to measure large numbers of proteins and small molecules in the blood. Material collected from plaques may also be examined under a microscope to identify its cells and structural components.
With additional consent, blood samples may be stored for genetic research. This could help us understand whether differences in people's genes influence their risk of coronary artery disease, their response to a heart attack, or the amount of heart damage that occurs.
By combining information about coronary plaques, blood flow through the heart's circulation, heart muscle injury, imaging, blood and tissue markers, and genetic factors, the OxAMI study aims to build a detailed picture of coronary artery disease and heart attacks. The programme will establish a carefully characterised group of research participants who may contribute to future OxAMI studies conducted under separate research protocols.
Ultimately, this research aims to identify better ways to predict, diagnose and understand coronary artery disease and heart attacks, and to identify new approaches that could improve treatment and outcomes for future patients.
Studienübersicht
Status
Status
Bedingungen
Bedingungen
Intervention / Behandlung
Intervention / Behandlung
Studientyp
Studientyp
Einschreibung (Geschätzt)
Einschreibung
Kontakte und Standorte
Studienkontakt
Studienkontakt
- Name: Keith M Channon, MD
- Telefonnummer: +44 1865 287581
- E-Mail: keith.channon@cardiov.ox.ac.uk
Studienorte
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Oxford, Vereinigtes Königreich
- Rekrutierung
- Oxford Heart Centre, John Radcliffe Hospital
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Teilnahmekriterien
Zulassungskriterien
Zulassungskriterien
Studienberechtigtes Alter
- Erwachsene
- Älterer Erwachsener
Akzeptiert gesunde Freiwillige
Probenahmeverfahren
Studienpopulation
Beschreibung
Inclusion Criteria:
- Evidence of myocardial injury (e.g. elevation of troponin or other cardiac biomarkers, ECG changes, wall motion abnormalities on cardiac imaging) AND/OR referred for coronary angiography with view to proceed to PCI as indicated in either non-emergency or emergency settings.
Exclusion Criteria:
- Patients in whom safety or clinical concerns preclude participation.
- Anaemia (Hb <9).
- Pregnant or breast feeding females.
Additional exclusion criteria for patients undergoing MRI
- claustrophobia which limits / prevents participants from remaining in MRI scanner.
- patients who cannot lie flat on the scan table.
- patients with metallic implants, pacemakers, implantable defibrillators etc, unless known to be MRI compatible.
- patients with known allergy to medium of contrast (gadolinium)
Additional exclusion criteria for patients undergoing coronary CT angiography
- patients with a known allergy to iodinated contrast media
- eGFR< 30 ml/min (stage 3-5 renal disease)
Studienplan
Wie ist die Studie aufgebaut?
Designdetails
Anzahl der Gruppen / Kohorten
Kohorten und Interventionen
Gruppe / KohorteGruppe / Kohorte |
Intervention / BehandlungIntervention / Behandlung |
|---|---|
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Acute Coronary Syndrome
Patients presenting with Acute Coronary syndrome (ST-segment elevation or non-ST-Segment Elevation
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Blood sampling across different periprocedural and follow-up timepoints.
Intracoronary Imaging with approved devices
Cardiovascular Magnetic Resonance Imaging (Multiparametric Phenotyping)
Photon-counting CT
Angiography derived, Bolus Thermodilution, Continuous Thermodilution, Doppler Flow
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Stable ischemic heart disease
Patients presenting with suspicion of stable ischemic heart disease
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Blood sampling across different periprocedural and follow-up timepoints.
Intracoronary Imaging with approved devices
Cardiovascular Magnetic Resonance Imaging (Multiparametric Phenotyping)
Photon-counting CT
Angiography derived, Bolus Thermodilution, Continuous Thermodilution, Doppler Flow
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Myocardial Injury
Patients presenting with objective evidence of myocardial injury
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Blood sampling across different periprocedural and follow-up timepoints.
Intracoronary Imaging with approved devices
Cardiovascular Magnetic Resonance Imaging (Multiparametric Phenotyping)
Photon-counting CT
Angiography derived, Bolus Thermodilution, Continuous Thermodilution, Doppler Flow
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Healthy Controls
Healthy controls
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Blood sampling across different periprocedural and follow-up timepoints.
Cardiovascular Magnetic Resonance Imaging (Multiparametric Phenotyping)
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Was misst die Studie?
Primäre Ergebnismessungen
Primäre Ergebnismessungen
Ergebnis Maßnahme |
Maßnahmenbeschreibung |
Zeitfenster |
|---|---|---|
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Major adverse cardiovascular events
Zeitfenster: 20 years
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Composite of cardiac mortality, heart failure, recurrent myocardial infarction, target vessel/lesion revascularization, life threatening arrhythmia
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20 years
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Mitarbeiter und Ermittler
Sponsor
Sponsor
Ermittler
Ermittler
- Hauptermittler: Keith M Channon, University of Oxford
Studienaufzeichnungsdaten
Haupttermine studieren
Studienbeginn (Tatsächlich)
Studienbeginn
Primärer Abschluss (Geschätzt)
Primärer Abschluss
Studienabschluss (Geschätzt)
Studienabschluss
Studienanmeldedaten
Zuerst eingereicht
Zuerst eingereicht
Zuerst eingereicht, das die QC-Kriterien erfüllt hat
Zuerst eingereicht, das die QC-Kriterien erfüllt hat
Zuerst gepostet (Tatsächlich)
Zuerst gepostet
Studienaufzeichnungsaktualisierungen
Letztes Update gepostet (Tatsächlich)
Letztes Update gepostet
Letztes eingereichtes Update, das die QC-Kriterien erfüllt
Letztes eingereichtes Update, das die QC-Kriterien erfüllt
Zuletzt verifiziert
Zuletzt verifiziert
Mehr Informationen
Begriffe im Zusammenhang mit dieser Studie
Zusätzliche relevante MeSH-Bedingungen
Andere Studien-ID-Nummern
Andere Studien-ID-Nummern
- 10120 (DAIDS ES Registry Number)
Plan für individuelle Teilnehmerdaten (IPD)
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Beschreibung des IPD-Plans
Arzneimittel- und Geräteinformationen, Studienunterlagen
Studiert ein von der US-amerikanischen FDA reguliertes Arzneimittelprodukt
Studiert ein von der US-amerikanischen FDA reguliertes Geräteprodukt
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