Cardiac Mitochondrial Function After Heart Transplantation
试验速览
- 阶段
- 不适用
- 入组人数
- 64
- 试验地点
- 1
- 主要终点
- Study 1+3: Differences in Mitochondrial oxidative capacity
研究概览
简要总结
Studies have shown that cardiac function is affected immediately after heart transplantation (HTx), but seems to recover to some extent over the first year. This immediate effect is associated with lack of oxygen in the tissue and reperfusion injury causing cellular energy depletion, mitochondrial failure and cellular damage. This condition may progress into full blown primary graft failure (PGF), characterized as deterioration of the transplanted heart, which is seen in 3-30 % of HTx patients. In addition to PGF, chronic rejection owing to cardiac allograft vasculopathy (CAV) may develop.
PGF and CAV remain the major heart related mortality causes, and additional assessment and treatments are therefore needed.
Acute cellular rejection (ACR) is diagnosed based on endomyocardial biopsies (EMB), which are routinely performed to ensure prober immunosuppression in HTx patients. ACR occur in approximately 25% of HTx patients, and is associated with PGF and CAV. However, mitochondrial function and integrity may prove to be a more sensitive marker of allograft rejection than endomyocardial biopsies. Therefore, assessment of mitochondrial function may allow for earlier detection of allograft rejection and dysfunction. This may be of particular importance as emerging treatments are targeting both energy substrate supply for adenosine-triphosphate generation produced by the mitochondria and mitochondrial function in the failing heart.
Despite the association between graft rejection and mitochondrial function, it remains unsettled whether mitochondrial function associate with PGF, ACR and CAV. Such findings may be of prognostic importance and even elucidate new treatment targets. Hence, we evaluate the mitochondrial status in HTx patients through four studies designed to assess different aspects of the interplay between cardiac function and mitochondrial integrity and function.
Hypotheses:
Study 1: Primary graft pump function is correlated to mitochondrial function in the first myocardial biopsy taken from the donor heart during the operation.
Study 2: Cardiac mitochondrial function improves over the first 3 months after a heart transplantation.
Study 3: Heart transplant patients with moderate to severe coronary graft vasculopathy has impaired mitochondrial function.
Study 4: Myocardial external energy efficiency by positron-emission tomography can be used as a marker of mitochondrial function and chronic rejection in HTx patients.
详细描述
Background
The prognosis after heart transplantation (HTx) has improved considerably since the first HTx was performed in 1967. Studies from our group have shown both left and right ventricular function is affected immediately after heart transplantation, but this seems to recover to some extent over the first year. This immediate effect on the graft organ following HTx is associated with tissue ischemia and reperfusion injury causing cellular energy depletion, mitochondrial failure and subsequent apoptosis. The condition may progress into full blown primary graft failure (PGF) with a need for mechanical cardiovascular support or inotropes which is seen in 3-30 % of HTx patients. The cardiac injury will consequently increase the risk of morbidity as well as mortality. In addition to acute PGF, a chronic rejection owing to coronary arterial vasculopathy (CAV) may develop. Hence, despite advances in peritransplantation treatment and immunosuppression, PGF and CAV remain the major heart related mortality causes following HTx and additional assessment and treatments are therefore needed.
Graft rejection is diagnosed, and the severity graded based on endomyocardial biopsies (EMB) taken percutaneously through the jugular or femoral veins. These biopsies are routinely performed at our institution to ensure prober immunosuppression following HTx.1 Acute cellular rejection (ACR) may occur in approximately 25% of the patients which is associated with PGF, CAV and later chronic rejection. However, mitochondrial function and integrity may prove to be a more sensitive marker of allograft rejection. In heart failure, mitochondria density changes while function and integrity is impaired linking the failing heart to energy deprivation. Animal studies demonstrate that deterioration in total mitochondrial function precedes histopathological changes during cardiac graft rejection following HTx. Therefore, assessment of mitochondrial function following HTx may allow for earlier detection of rejection and allograft dysfunction. This may be of particular importance as emerging treatments are targeting both energy substrate supply for adenosine-triphosphate (ATP) generation produced by the mitochondria as well as mitochondrial function in the failing heart. At our institution, we have established methods to evaluate mitochondrial function in myocardial tissue, and pilot studies have demonstrated feasibility with the use of EMB. In addition, by use of non-invasive 11C-acetate positron-emission tomography (PET), we can assess myocardial external energy efficiency (MEE) calculated by the ratio of myocardial external work (EW) and oxidative metabolism (MVO2). Thus, enabling quantification of coupling between mitochondrial energy production and mechanical work.
Despite the overt association between graft dysfunction/rejection and mitochondrial function, it remains unsettled whether mitochondrial content and function associate with PGF, ACR and CAV. Such findings may be of prognostic importance and even elucidate a new treatment target.
Hypotheses
研究设计
- 研究类型
- Observational
- 观察模型
- Case Control
- 时间视角
- Prospective
入排标准
- 年龄范围
- 18 Years 至 —(Adult, Older Adult)
- 性别
- All
- 接受健康志愿者
- 否
入选标准
- •Informed consent from participants
排除标准
- •Under 18 years of age
- •Endomyocardial biopsy not feasible assessed by surgeon
- •Pregnancy (Study 4 only)
- •Myocardial infarction, or hospitalization within 1 month due to any cardiac cause (Study 4 only)
结局指标
主要结局
Study 1+3: Differences in Mitochondrial oxidative capacity
时间窗: unpaired comparison differences between groups through study completion, an average of 2 years)
Mitochondrial respiratory capacity evaluated with high resolution respirometry,
Study 2: Changes in mitochondrial oxidative capacity
时间窗: unpaired comparison differences between groups (through study completion, an average of 2 years)
Changes in mitochondrial respiratory capacity evaluated with high resolution respirometry,
Study 4: Changes in myocardial external energy efficiency
时间窗: Changes from baseline (following HTX) to 6-month post-HTX (paired data)
Changes Myocardial external energy efficiency evaluated by PET-scans with 11C-acetate tracer. Calculated by the ratio of myocardial external work (EW) and oxidative metabolism (MVO2).
次要结局
- Biochemistry(Through study completion, an average of 2 years.)
- Invasive hemodynamics(Through study completion, an average of 2 years.)
- Cardiac function(Through study completion, an average of 2 years.)
- Cellular function(Through study completion, an average of 2 years.)
- Mitochondrial structure(Through study completion, an average of 2 years.)
