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Diagnosis, Prognosis, and Mechanisms in Panvascular Disease

A Prospective Research on Diagnosis, Prognosis, and Mechanisms of Panvascular Disease

Status
Recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT07151183
Acronym
PRO-PVD
Enrollment
1000
Registered
2025-09-03
Start date
2024-12-01
Completion date
2030-12-31
Last updated
2025-09-03

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Cardiovascular Diseases, Panvascular Diseases

Keywords

Panvascular disease, Cardiovascular Diseases

Brief summary

This study aims to establish a standardized cohort for panvascular diseases, encompassing biological materials such as DNA samples, along with extensive patient medical records and follow-up information. The design of this database will enable it to serve as a comprehensive resource for future medical research. Upon data collection, researchers will conduct various statistical analyses to enhance our understanding of the factors and mechanisms contributing to various panvascular diseases, including coronary heart disease, myocardial infarction, stroke, and peripheral vascular disease. These statistical analyses will also aid in identifying more effective treatment strategies for these conditions. By amassing a large volume of data from a significant number of patients with panvascular diseases, researchers will be able to perform highly precise analyses of the factors influencing the onset, progression, and treatment of these diseases. The results of these precise analyses can then be utilized to optimize clinical practices for the prevention and treatment of panvascular diseases.

Detailed description

Panvascular diseases are a group of complex disorders affecting the entire vascular system, with their development influenced by multiple risk factors, including genetic susceptibility, metabolic abnormalities (such as hypertension, hyperlipidemia, and diabetes), inflammatory responses, oxidative stress, and unhealthy lifestyle habits (such as smoking and physical inactivity). In-depth research into the mechanisms of these factors can help uncover the core drivers of the disease, providing a theoretical foundation for early prevention and intervention. Additionally, elucidating specific molecular pathways (such as inflammatory signaling, lipid metabolism, and endothelial dysfunction-related pathways) and molecular regulatory mechanisms (such as non-coding RNAs and epigenetic modifications) can offer new targets for precise diagnosis and treatment. By integrating multi-omics data and high-throughput technologies, the molecular networks of panvascular diseases can be systematically clarified, advancing the development of personalized medicine. This will significantly improve patient outcomes, reduce disease burden, and hold substantial scientific value and clinical application prospects. This study aims to establish a standardized cohort for panvascular diseases, encompassing various biological materials such as DNA samples, as well as comprehensive patient medical records and long-term follow-up information. The database will systematically collect multidimensional data, including patient questionnaire data (e.g., lifestyle, family history, dietary habits), imaging examination results (e.g., ultrasound, CT, MRI), DNA and other biochemical indicators extracted from blood samples, as well as non-invasive physiological parameters such as blood pressure and heart rate, and examinations related to arterial health assessment (e.g., pulse wave velocity, ankle-brachial index). By integrating these multi-source data, researchers will be able to conduct in-depth analyses of the genetic, metabolic, and clinical characteristics of panvascular diseases, identify disease-related biomarkers and predictive factors, and thereby provide a valuable resource for investigating the mechanisms of panvascular diseases. Based on this database, researchers can systematically explore the risk factors of panvascular diseases and their dynamic evolution patterns, uncovering the key driving mechanisms behind disease development. Furthermore, through high-throughput sequencing, multi-omics analysis, and machine learning technologies, researchers can identify potential molecular targets and therapeutic strategies, advancing the field of precision medicine. These research outcomes will not only contribute to the development of novel diagnostic methods and personalized treatment plans but also provide a scientific basis for the early prevention and intervention of panvascular diseases, ultimately improving patient prognosis and reducing disease burden. The establishment of this resource platform will provide critical support for research and clinical practice in panvascular diseases, holding profound scientific significance and practical value.

Interventions

OTHERNo intervention

No intervention

Sponsors

Jinwei Tian
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to 80 Years
Healthy volunteers
Yes

Inclusion criteria

1. Male or female aged 18 to 80 years old; 2. Diagnosed or suspected panvascular disease, defined as the presence of atherosclerotic lesions in at least two or more vascular regions, such as intracranial arteries, carotid arteries, coronary arteries, aorta, and peripheral arteries; 3. Voluntary participation in this study and provision of signed informed consent.

Exclusion criteria

1. Severe hemodynamic instability; 2. Severe cardiac dysfunction (EF \< 30%); 3. Severe arrhythmias; 4. Severe valvular heart disease; 5. Cardiomyopathy caused by non-coronary artery diseases; 6. Non-atherosclerotic coronary artery disease (e.g., coronary artery dissection, embolism, etc.); 7. Severe non-cardiovascular diseases; 8. Women who are pregnant or breastfeeding; 9. Individuals who refuse to provide signed informed consent.

Design outcomes

Primary

MeasureTime frameDescription
Number of participants with Cardiovascular mortality, Nonfatal myocardial Infarction, Ischemic stroke, Arteriosclerosis ObliteransUp to 5 years from baselineCardiovascular mortality, Nonfatal myocardial Infarction, Ischemic stroke, Arteriosclerosis Obliterans

Secondary

MeasureTime frame
All-cause deathUp to 5 years from baseline
Rate of receiving vascular revascularizationUp to 5 years from baseline
Readmission rate for vascular reasonsUp to 5 years from baseline

Countries

China

Contacts

Primary ContactTian J Jinwei Tian, MD, PhD
tianjinweidr2009@163.com+86-0451-86605180
Backup ContactWang Y Yan Wang, MD, PhD
wangyandr2022@hrbmu.edu.cn+86-13936462066

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026