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临床试验/NCT02697669
NCT02697669Unknown不适用

The Role of Nuclear Imaging in Heart Failure: Correlation With Cardiac Function and Metabolism, Biomarkers and Clinical Prognosis

Far Eastern Memorial Hospital1 个研究点 分布在 1 个国家目标入组 200 人开始时间: 2012年8月最近更新:
适应症

试验速览

阶段
不适用
入组人数
200
试验地点
1
主要终点
LV function

研究概览

简要总结

Heart failure is a clinical syndrome of exercise intolerance and/or congestion. The potential roles of myocardial perfusion and metabolic abnormalities in subjects with cardiovascular risks, metabolic disease and heart failure assessed by nuclear dynamic imaging warrant further investigations. The study investigators propose that microvascular dysfunction and abnormal metabolic substrate shift precedes and triggers the onset of diastolic dysfunctions. The aims are (1) to develop and validate the noninvasive measurement of absolute myocardial blood flow (MBF) and myocardial flow reserve (MFR) by using dynamic imaging with a CZT camera, (2) to assess myocardial glucose metabolism by using 18F-FDG dynamic PET, and MBF, MFR and LV systolic and diastolic function by dynamic SPECT comprehensively in subjects at cardiovascular risks and metabolic disease, HFrEF and HFpEF, (3) to correlate with peripheral serum markers and blood mononuclear cells subsets with myocardial perfusion and metabolic abnormalities, and (4) to test the hypothesis of these imaging and blood markers in diagnosis and prognostic implications. The study investigators also assess myocardial metabolic utilization in healthy and mice model of different metabolic disorders (obesity, diabetes mellitus and hypertension) by using 18F-FDG dynamic micro PET/CT, as an in-vivo measures which could be used to better understanding the disease mechanism and evaluating therapeutic strategies.

详细描述

Heart failure (HF) is a clinical syndrome of exercise intolerance and/or congestion. The management of heart failure with reduced ejection fraction (HFrEF) has improved over the last decades. In contrast, little progress has been made in identifying evidence-based, effective treatments for heart failure with preserved ejection fraction (HFpEF, LVEF >50%). Treatments proven effective in HFrEF have failed to show significant benefit in patients with HFpEF. Potential contributors include an incomplete understanding of pathophysiology and poor matching of therapeutic mechanisms. The challenges of the use of diagnostic criteria, prognostic evaluation and treatment highlight the need for more research in this field.

This portion of HFpEF consists predominantly older age and high prevalence of co-morbidity such as overweight/obesity, diabetes mellitus, hyperlipidemia, metabolic syndrome and hypertension. The systemic pro-inflammatory state may induce coronary endothelial inflammation, microvasular dysfunction, myocardial substrate shift, myocardial and interstitial fibrosis that contribute to high diastolic left ventricular stiffness and HF development. Myocardial metabolic and perfusion imaging is a vital tool for understanding the physiologic consequences of HF. Absolute myocardial blood flow (MBF) and myocardial flow reserve (MFR) provide incremental diagnostic and prognostic information over relative perfusion alone. Recent development of dedicated cardiac SPECT cameras with better sensitivity and temporal resolution make dynamic SPECT imaging more practical. Quantitative 18F-FDG PET could be used as a means to measure myocardial metabolic changes. The study investigators propose that microvasular dysfunction and abnormal metabolic substrate shift precedes and triggers the onset of diastolic dysfunctions. The potential roles of myocardial perfusion and metabolic abnormalities in subjects with cardiovascular risks, metabolic disease and HFpEF assessed by nuclear dynamic imaging warrant further investigations.

The present project aims (1) to develop and validate the noninvasive measurement of absolute myocardial blood flow (MBF) and myocardial flow reserve (MFR) by using dynamic imaging with a CZT camera, (2) to assess myocardial glucose metabolism by using 18F-FDG dynamic PET, and MBF, MFR and LV systolic and diastolic function by dynamic SPECT comprehensively in participants at cardiovascular risks and metabolic disease, HFrEF and HFpEF, (3) to correlate with peripheral serum markers and blood mononuclear cells subsets with myocardial perfusion and metabolic abnormalities, and (4) to test the hypothesis of these imaging and blood markers in diagnosis and prognostic implications. The study investigators also assess myocardial metabolic utilization in healthy and mice model of different metabolic disorders (obesity, diabetes mellitus and hypertension) by using 18F-FDG dynamic micro PET/CT, as an in-vivo measures which could be used to better understanding the disease mechanism and evaluating therapeutic strategies.

研究设计

研究类型
Observational
观察模型
Case Only
时间视角
Prospective

入排标准

年龄范围
20 Years 至 80 Years(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Had a clinical diagnosis of heart failure and left ventricular systolic function (LVEF≤50%) or diastolic dysfunction who,
  • Clinical diagnosis of metabolic diseases (such as metabolic syndrome, obesity, diabetes, hyperlipidemia, microvascular diseases etc.), heart failure and high-risk groups.

排除标准

  • Important systemic disease (except for heart disease) such as cirrhosis, end-stage renal disease or active malignancy were estimated life expectancy of less than three months.
  • pregnant or lactating women.

结局指标

主要结局

LV function

时间窗: 12mo

LVEF

次要结局

  • MACE(5 years)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Yen-Wen Wu

Chief of Cardiology Division of Cardiovascular Medical Center, Far Eastern Memorial Hospital

Far Eastern Memorial Hospital

研究点 (1)

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