Cardiovascular Research Unit, OUH Svendborg Hospital
Svendborg, DK:5700, Denmark
NCT Number: NCT04525508
Cardiovascular disease (CVD) is one of the leading causes of death in the Western Society. Patients with type 2 diabetes mellitus (T2DM) or dysglycemia have an increased risk of developing CVD. Furthermore, T2DM have an increased risk of developing heart failure, especially non-systolic, whether or not this is correlated to stepwise abnormal glycemic status is not fully investigated.
The aims of this study are to investigate association between 1) Coronary plaque burden and morphology to glycemic status (normal glucose tolerance (NGT), dysglycemia (impaired fasting glucose (IFG) or impaired glucose tolerance (IGT)) and diabetic oral glucose tolerance test (OGTT) in participants without known T2DM), 2) Coronary plaque burden and morphology to diastolic and systolic function of the left ventricle including 2D speckle-tracking assessments, 3) Glycemic status to diastolic and systolic function of the left ventricle including 2D speckle-tracking assessments
In this descriptive study, 500-800 asymptomatic men aged 65-75 without known diabetes will be included and divided into three subpopulations according to glycemic status. Blood sample, oral glucose tolerance test (OGTT), echocardiography and Coronary CT Angiography (CCTA) will be performed at inclusion
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Notify Me65 year–75 year
Male
Observational
Svendborg, DK:5700, Denmark
Background
Cardiovascular disease: Cardiovascular disease (CVD) is still one of the leading causes of death in the Western Society. Despite extensive research, risk estimation based on traditional risk factors predicts risk in the general population but may not give an adequate individual risk, and can thereby under- or overestimate the risk of future cardiovascular event and therefore lead to either over- or undertreatment of a not ignorable part of the population.
T2DM/dysglycemia and atherosclerosis: The prevalence of type 2 diabetes mellitus (T2DM) is rising rapidly. Furthermore, one study has reported that the prevalence of dysglycemia or undiagnosed diabetes were as high as 43.8% among 60-year-old men. T2DM is known to be strongly associated with an increased risk of CVD, but also dysglycemia has been associated with an increased risk of CVD. Thus, it is possible that there is a linear relationship between stepwise dysregulated glycemic status and increased coronary plaque burden, but the relationship has not been fully explored.
CCTA: Coronary CT Angiography (CCTA) can be performed with or without contrast. Contrast enhanced CCTA has been found to be a valid and reproducible method of evaluation of both extent and characteristics of atherosclerotic plaques. Motoyama et al. reported spotty calcification, positive remodeling, and LAP (non-calcified plaque) to be associated with an increased risk of development of AMI, especially when two or more patterns were co-localized in the plaques. Thus, it might be possible that this type of plaque morphology is associated with vulnerable plaques.
Echocardiography and T2DM/Dysglycemia: T2DM is correlated to a higher incidence of diastolic dysfunction, which is thought to predispose to diabetic cardiomyopathy. In addition, subtle left ventricular systolic dysfunction assessed by 2D speckle-tracking (also termed impaired strain) was found in patients with diabetes and normal systolic function. To our knowledge only few studies have investigated diastolic dysfunction and 2D speckle-tracking in patients with dysglycemia and their results were mostly diverging.
To our knowledge no studies have investigated coronary artery plaque burden and morphology in asymptomatic men aged 65-75 years with focus on the influence of glycemic status in individuals without known T2DM. Due to the expectance of increasing number of patients with T2DM and dysglycemia the coming years, it must be foreseen that the number of patients with CVD will increase in this group of patients. It is mandatory that we increase our knowledge, especially about the development of coronary atherosclerosis and left ventricular function. We expect that this study will bring further light on these important aspects of dysglycemia and hopefully give information to improve treatment and prophylaxis.
Methods
Study population: We plan to recruit 500-800 participants from the DANCAVAS study. More detailed description of the Study population can bee read in "Eligibility". Based on one oral glucose tolerance test (OGTT) per participant, this population will be divided into three groups; normal glucose tolerance (NGT), dysglycemia (impaired fasting glucose (IFG) or impaired glucose tolerance (IGT)) and diabetic OGTT without known T2DM. We use the WHO definitions in dividing the participants into the mentioned three groups of different glycemic status. To date the use of OGTT in diagnosing T2DM, demands two measurements at two separate days. Because of the measurement of only one OGTT in this study, the participants with diabetic OGTT does not per se fulfil the criteria for diabetes.
Data acquisition
Global left ventricular longitudinal strain (GLS):
CCTA analysis:
Plaque burden The major proximal coronary segments; 1,2,3-5,6,7-11,12,13 are analyzed.
Per vessel analysis of:
Plaque morphology
Per plaque analysis of:
All CTTA scans will be assessed by an observer blinded to patient characteristics. Semi quantitative method using dedicated plaque software (QAngioCT Research Edition version 2.0, Medis Medical Imaging Systems, Leiden, Holland) will be used to assess the plaque analysis.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Time frame: Baseline
To evaluate the correlation between glycemic status (NGT, dysglycemia or Diabetic OGTT in patients without known T2DM) to plaque burden and morphology in asymptomatic men, aged 65-75 years. Plaque burden analyzed per vessel is defined as either percent atheroma volume (PAV), total atheroma volume (TAV) or normalized atheroma volume (NAV). Plaque morphology will include per plaque analysis of LAP (noncalcified plaque), remodeling indices (RI), spotty calcification and degree of stenosis where a significant stenosis is defined as >70 % of the luminal area. Above mentioned definitions of plaque burden and morphology is further explained in detail in Study Description above.
Time frame: Baseline
To evaluate the correlation between coronary artery plaque burden and morphology to diastolic and systolic function of the left ventricle in asymptomatic men, aged 65-75 years without known T2DM. We will use EF and 2D speckle-tracking to asses the systolic function of the left ventricle.
Time frame: Baseline
To evaluate the correlation between glycemic status to diastolic and systolic function of the left ventricle in a population of asymptomatic men, aged 65-75 years without known T2DM.
Time frame: Baseline
To evaluate the possible association between insulin resistance to coronary artery plaque burden and morphology in asymptomatic men, age 65-75 years without known T2DM. We will use HOMA-IR to asses the insulin resistance.
Time frame: Baseline
To evaluate the relation between insulin resistance to diastolic and systolic function of the left ventricle in asymptomatic men, aged 65-75 years without known T2DM.
Time frame: Baseline
To evaluate the correlation between inflammatory biomarkers eg. TNF-alpha and Hs-CRP to coronary artery plaque burden and morphology in a population consisting of asymptomatic men, aged 65-75 years, without known T2DM.
Time frame: Baseline
To evaluate the association between glycemic status to left ventricular hypertrophy in asymptomatic men, aged 65-75 years, without known T2DM.
Time frame: Baseline
To evaluate the correlation between risk factors for ischemic heart disease to coronary artery plaque burden and morphology in asymptomatic men, aged 65-75 years, without known T2DM
Time frame: Baseline - 5 years
To evaluate the correlation between plaque burden and morphology to future cardiovascular events during five years of follow up, in a population of asymptomatic men aged 65-75 years without known T2DM.
Time frame: Baseline - 5 years
To evaluate the impact of glycemic status to future cardiovascular events during five years of follow up, in a population of asymptomatic men aged 65-75 years without known T2DM.
Time frame: Baseline
To evaluate the impact of coronary plaque burden and morphology to post-systolic shortening in asymptomatic men, aged 65-75 years without known T2DM.
Svendborg Hospital
Other
Coronary Artery Plaque Burden in Asymptomatic Danish Men Aged 65-75 Years and the Relation to Glycemic Status. A Coronary CT Angiography (CCTA) Study.
Acronym: DANCAP
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