Microvascular Complications

5

Review clinical trials related to Microvascular Complications. Use filters to narrow results by trial status, phase, treatment, biological sex and sponsor.

Condition / disease
Location
Status: Recruiting

Non-invasive Microvascular Assessment in Individuals at High Risk of Cardiovascular Disease From the SCAPIS2 Study

Microvascular dysfunction, particularly endothelial dysfunction, is increasingly recognized as a key mechanism underlying various cardiovascular diseases (CVD), including heart failure, ischemic heart disease, atherosclerosis, stroke, dementia, and kidney failure. Chronic low-grade inflammation linked to metabolic syndrome may further drive systemic microvascular impairment. Early detection of these subclinical processes using non-invasive assessments could facilitate timely interventions to prevent disease progression. SCAPIS 2 Spectrum is a prospective observational sub-study of the Swedish Cardiopulmonary Bioimage Study (SCAPIS-2), recruiting approximately 900 subjects aged 60-75 years. The study is organized into five arms-obstructive coronary artery disease (O-CAD), angina with nonobstructive coronary arteries (ANOCA), metabolic syndrome with diabetes, left ventricular systolic dysfunction, and left ventricular diastolic dysfunction-each defined by specific inclusion and exclusion criteria. Participants will undergo a comprehensive microvascular assessment using investigational devices (including Perimed Periflux EPOS, PeriCam MultiFlow, and TCI P4) alongside stress cardiac magnetic resonance imaging (stress-CMR) for cardiac-specific evaluation.

Participants needed: 900
Trial details
Biological sex: AllType: ObservationalSponsor: HJN Sverige AB/Neko HealthUpdated: Jan 22, 2026Locations: 1
Eligibility criteria

Participated in the SCAPIS baseline (SCAPIS 1 study, 10 years ago) [+2]

Scarring, tattoos, or amputations that preclude device examination [+1]

Status: Recruiting

Brain Health in Youth With Normal Weight, Overweight and Obesity at Risk for Type 2 Diabetes (T2D)

Investigators propose to study youth across the spectrum of body mass index (BMI) and dysglycemia. This approach will allow investigators to disentangle the relationship of key features of type 2 diabetes (T2D) risk (e.g. obesity) with intermediary physiologic changes (e.g. insulin resistance, inflammation, β-cell dysfunction and dysglycemia) that pose a risk for the brain. Investigators will determine which of these factors are most associated with differences in brain structure and function among groups, over time, and how these effects differ from normal neurodevelopment.

Participants needed: 117
Trial details
Age: 12-17Biological sex: AllType: ObservationalSponsor: Washington University School of MedicineUpdated: Dec 18, 2025Locations: 2
Eligibility criteria

12-17 yrs. old at visit 1, 12-19 yrs. old at visit 2, Tanner II or above (determ...

Syndromic obesity, history of bariatric surgery, insulin treatment (metformin al...

Status: Recruiting

Microangiopathy in Diabetes

This clinical trial aims to evaluate the use of a contactless and non-invasive technique to measure the properties of the skin's microcirculation and its regulatory functions in both healthy individuals and patients with microvascular disease associated with type 1 diabetes. It is hoped that the study results will lead to the development of a useful method for detecting diabetic complications at an early stage, thereby enabling treatment and preventive measures before the onset of severe microangiopathy.

Participants needed: 400
Trial details
Age: 18-60Biological sex: AllType: ObservationalSponsor: Karolinska InstitutetUpdated: Aug 28, 2025Locations: 1
Eligibility criteria

Diabetes mellitus type 1. [+1]

Patients unable to understand patient information due to cognitive impairment. [+4]

Status: Not yet recruiting

Test of Reproducibility of [15O]H20-PET Assessment of Brain Perfusion

In the aging population, ischemic heart disease, stroke and dementia are increasingly prevalent. Diagnosis and treatment of the former two i.e., large-vessel coronary heart disease and endovascular thrombectomy of the brain in relation to stroke have improved significantly. Yet, the majority of elderly patients with ischemic heart disease do not have large-vessel heart disease and it seems that small vessel disease (SVD) may explain a large fraction of these cases as well as the cardiovascular morbidity in the elderly. Hence, the current development in diagnostics and treatments of ischemic heart disease does not address the most common subtype of ischemic disease seen in elderly patients. It has been suggested that SVD is part of a multisystem disorder and several systematic reviews have addressed the hypothesis of a potential link between small vessel disease of the heart, brain, and kidneys. Cerebral SVD is prevalent in the aging population causing cognitive impairment, dementia, and an increased risk of stroke, and cerebral hypoperfusion is an acknowledged cause of vascular dementia and a possible cause of Alzheimer's disease. Further, cognitive impairment within multiple cognitive domains is highly prevalent in heart failure and is associated to an increased risk of dementia. The link between heart failure and dementia may be due to multisystem SVD, although a direct link between the two is possible. Among other known risk factors such as age, hypertension, and female sex, diabetes is a major cause of SVD and is linked to coronary heart disease as well as cognitive impairment. The diagnosis of cerebral SVD relies on MRI detecting infarctions, haemorrhages, microbleeds and ischemic white matter changes, i.e. Fazekas score. In contrast, perfusion PET is used to image myocardial perfusion in patients with coronary SVD; and coronary SVD is recognized as a part of the pathophysiology in angina, coronary artery disease, and heart failure. Perfusion PET before and after adenosine-induced vasodilation allows for measuring, the myocardial flow reserve (MFR), i.e. perfusion capacity, which in the absence of regional perfusion defects, is a measure of coronary SVD. Prof. Eva Prescott have recently shown that reduced MFR obtained by 82Rb PET is a strong predictor of future microvascular events and all-cause mortality. Exercise is well known to improve cognitive health but professor Carl-Johan Boraxbekk has shown that the effect on cognitive performance may be dependent on the initial cerebrovascular status, as patients with moderate to severe white matter changes did not improve after a 6 months physical activation intervention in contrast to patients with mild changes. Yet, it is possible to improve brain function in diabetic patients through either dietary or exercise interventions. Systemic SVD is measured as cerebral SVD (reduced brain perfusion during acetazolamide-induced vasodilation) and coronary SVD (reduced heart perfusion during adenosine-induced vasodilation). The researchers anticipate that patients with type 2 dabetes have reduced perfusion capacity of the brain and heart correlating to reduced cognition and cardiorespiratory fitness (VO2-max).

Participants needed: 8
Trial details
Age: 60+Biological sex: AllType: ObservationalSponsor: University Hospital Bispebjerg and FrederiksbergUpdated: Oct 4, 2024Locations: 1
Eligibility criteria

Age > 60 years [+3]

Moderate to high intensity training >2 times/week. [+5]

Status: Not yet recruiting

Comparison of Differencens in VO2-max, Perfusion of the Heart and Brain and Cognitive Performance Between Patients with Type 2 Diabetes and Healthy Age Matched Controls.

In the aging population, ischemic heart disease, stroke and dementia are increasingly prevalent. Diagnosis and treatment of the former two i.e., large-vessel coronary heart disease and endovascular thrombectomy of the brain in relation to stroke have improved significantly. Yet, the majority of elderly patients with ischemic heart disease do not have large-vessel heart disease and it seems that small vessel disease (SVD) may explain a large fraction of these cases as well as the cardiovascular morbidity in the elderly. Hence, the current development in diagnostics and treatments of ischemic heart disease does not address the most common subtype of ischemic disease seen in elderly patients. It has been suggested that SVD is part of a multisystem disorder and several systematic reviews have addressed the hypothesis of a potential link between small vessel disease of the heart, brain, and kidneys. Cerebral SVD is prevalent in the aging population causing cognitive impairment, dementia, and an increased risk of stroke, and cerebral hypoperfusion is an acknowledged cause of vascular dementia and a possible cause of Alzheimer's disease. Further, cognitive impairment within multiple cognitive domains is highly prevalent in heart failure and is associated to an increased risk of dementia. The link between heart failure and dementia may be due to multisystem SVD, although a direct link between the two is possible. Among other known risk factors such as age, hypertension, and female sex, diabetes is a major cause of SVD and is linked to coronary heart disease as well as cognitive impairment. The diagnosis of cerebral SVD relies on MRI detecting infarctions, haemorrhages, microbleeds and ischemic white matter changes, i.e. Fazekas score. In contrast, perfusion PET is used to image myocardial perfusion in patients with coronary SVD; and coronary SVD is recognized as a part of the pathophysiology in angina, coronary artery disease, and heart failure. Perfusion PET before and after adenosine-induced vasodilation allows for measuring, the myocardial flow reserve (MFR), i.e. perfusion capacity, which in the absence of regional perfusion defects, is a measure of coronary SVD. Prof. Eva Prescott have recently shown that reduced MFR obtained by 82Rb PET is a strong predictor of future microvascular events and all-cause mortality. Exercise is well known to improve cognitive health but professor Carl-Johan Boraxbekk has shown that the effect on cognitive performance may be dependent on the initial cerebrovascular status, as patients with moderate to severe white matter changes did not improve after a 6 months physical activation intervention in contrast to patients with mild changes. Yet, it is possible to improve brain function in diabetic patients through either dietary or exercise interventions. Systemic SVD is measured as cerebral SVD (reduced brain perfusion during acetazolamide-induced vasodilation) and coronary SVD (reduced heart perfusion during adenosine-induced vasodilation). The researchers anticipate that patients with type 2 dabetes have reduced perfusion capacity of the brain and heart correlating to reduced cognition and cardiorespiratory fitness (VO2-max).

Participants needed: 72
Trial details
Age: 60+Biological sex: AllType: ObservationalSponsor: University Hospital Bispebjerg and FrederiksbergUpdated: Oct 4, 2024Locations: 1
Eligibility criteria

Duration over 5 years [+4]

Previous AMI, atrial fibrillation, significant cardiac valve disease, HFrEF (LVE... [+14]