跳至主要内容
临床试验/NCT05775445
NCT05775445招募中不适用

Extremes of Coronary Artery Disease and Normality: Understanding Novel Causative and Protective Factors in the Development of Coronary Artery Disease (CAD Extremes)

National Heart Centre Singapore1 个研究点 分布在 1 个国家目标入组 1,500 人开始时间: 2023年5月30日最近更新:
适应症

试验速览

阶段
不适用
状态
招募中
入组人数
1,500
试验地点
1
主要终点
Using sequencing analysis to develop treatment to protect against Coronary artery disease

研究概览

简要总结

In the field of cardiovascular medicine, there are two differing groups of patients that remain puzzling to clinicians: patients who are not expected to have coronary artery disease (CAD) yet are diagnosed with significant CAD; and those who are have multiple risk factors for CAD but do not have CAD. Bats exhibit unique phenotypes including long lifespans and likely reduced atherosclerosis. Prior work has identified multiple molecular mechanisms of suppressing the activation of inflammasomes, causally linked to atherosclerosis. The investigators hypothesize there are different molecular markers that confer protection or increased risk for CAD, some of which may be similar to bats. Thus, the aim of this study is to identify molecular markers that contribute to or are protective against acute coronary syndrome (ACS) through analyzing the genetics, peripheral blood and atherosclerotic samples from both extreme patient groups using single-cell RNA sequencing and multi-omics approach. In addition, novel anti-atherosclerotic mechanisms and factors from bat studies will be assessed in the human samples. Identification of novel targets that prevent or cause CAD has the potential to aid in the early identification of high-risk patients and development of new therapeutics to combat this growing epidemic. To conduct this study, patients who have undergone a coronary angiogram or a CT coronary angiogram that fall into the both extremes will be recruited and blood samples will be taken for the above analysis. These will be compared to a group of controls (low risk without disease and high risk with disease).

详细描述

Cardiovascular disease (CVD) imposes much mortality and morbidity worldwide. Large population-based studies in Western cohorts (eg. Framingham Heart Study) have formed the foundations of knowledge on the traditional risk factors of cardiovascular disease. Despite this, large gaps in the knowledge of CVD still exist. The clinical conundrum of the extremes of spectrums of CVD continues to baffle clinicians and researchers alike. These include patients without any major cardiovascular risk factors developing acute coronary syndromes (ACS) at a young age. At the other end of the spectrum, there are not uncommonly patients with "full-house" cardiovascular risk factors with minor or no coronary artery disease.

Similar to the phenotype observed in patients with risk factors with little coronary artery disease, the animal bats exhibit unique phenotypes including long lifespans and likely reduced atherosclerosis. A study has shown that the animal bats are able to have plaque-free arteries despite being on a high-fat diet with high plasma cholesterol, which are associated to the development of atherosclerosis. The pathogenesis of atherosclerosis has been linked to inflammasome activation, an intracellular multi-protein complexes that engage in innate immune defenses. An inflammasome typically consists of a sensor that detects pathogens or danger signals, an adaptor, and an effector that initiates pro-inflammatory responses. Aberrations in inflammasomes have been causally linked to numerous diseases, including viral infections, autoimmune, metabolic, and neurodegenerative diseases. However, no effective treatment options have been established thus far. Importantly, multiple molecular mechanisms of suppressing the activation of inflammasomes, causally linked to atherosclerosis, have already been identified in bats. These include dampened sensors and complementary regulation of the effector and downstream cytokine , which could be protective factors of atherosclerosis. These make bats excellent model for anti-atherosclerosis research.

Recent advancements in technology have led to exciting developments in our understanding of the development and prevention of CVD. The use of "big data" and "deep learning", advancements in genomics, metabolomics, proteomics have the possibility of transforming this field. Recent modern prospective population-based studies (eg. The MURDOCK study) aim to reclassify cardiovascular risk using integrated clinical and molecular biosignatures. However, these studies are based primarily in Western populations. Ethnic differences in CVD exist and currently in Asia, there is a dearth of such advanced data. The aim of this study is thus to identify molecular and inflammasome markers that contribute or are protective against ACS using single-cell sequencing and multi-omics approach, and on top of that, using animal models of bats and mice as comparison to humans. Genomic, metabolomics, proteomics, and scRNA-seq may seek to help answer some of this questions and better improve understanding of the development of CVD, potentially developing novel preventive and management strategies.

The specific aims of the project are as follows:

To use advanced genomic, metabolomics, proteomic and single-cell RNA sequencing (scRNA-seq) analysis to understand novel factors influencing the development of coronary artery disease, as well as protection against coronary artery disease

研究设计

研究类型
Observational
观察模型
Case Control
时间视角
Other

入排标准

年龄范围
21 Years 至 99 Years(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Evidence of significant CAD a. Coronary angiogram or CT coronary angiogram with documented stenosis >=50% in left main or >=70% in major epicardial vessel or major branches (LAD, LCX, RCA)
  • AND all of the following
  • Age </= 45 for males and </= 50 for females
  • Absence of diabetes mellitus
  • Absence of tobacco use
  • No prior CVA or PAD
  • Evidence of significant CAD
  • Coronary angiogram or CT coronary angiogram with documented stenosis >=50% in left main or >=70% in major epicardial vessel or major branches (LAD, LCX, RCA)
  • AND all of the following
  • Age </= 45 for males and </= 50 for females
  • Absence of diabetes mellitus
  • Absence of tobacco use
  • No prior CVA or PAD
  • Evidence of significant CAD with one of the following:
  • Diabetes mellitus
  • End Stage Renal Failure (ESRF)
  • Framingham risk score >10%
  • No evidence of significant CAD and all of the following
  • Age <55 for males, <65 for females
  • Absence of diabetes mellitus
  • Absence of CKD
  • Absence of tobacco use

排除标准

  • Prior history of cancer (excludes pre-cancerous lesions)
  • Expected life expectancy less than 1 year
  • Known autoimmune disease
  • Psychiatric illness
  • Chronic lung disease requiring long term medications or oxygen
  • Chronic infective disease, including tuberculosis, hepatitis B and C; and HIV
  • Inability to comply with study protocol
  • Any other acute or chronic medical or physical condition deemed by the investigator to affect study outcomes

结局指标

主要结局

Using sequencing analysis to develop treatment to protect against Coronary artery disease

时间窗: 5 years

To use advanced genomic, metabolomics, proteomic and single-cell RNA sequencing (scRNA-seq) analysis to understand novel factors influencing the development of coronary artery disease, as well as protection against coronary artery disease

Develop treatment for Coronary artery disease

时间窗: 5 years

To aid in the development of novel preventive and treatment strategies for coronary artery disease

次要结局

未报告次要终点

研究者

申办方类型
Other
责任方
Sponsor

研究点 (1)

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