Related Experiment Video
Updated: Jun 12, 2026

Isolation and Identification of Extravascular Immune Cells of the Heart
Published on: August 23, 2018
[Dendritic cells and coronary collateral circulation in coronary heart disease]
Chuanchang Li1, Wei Liu, Jun Yi
1Department of Cardiology, Xiangya Hospital, Central South University, Changsha 410008, China.
Insights
Patients with coronary heart disease and coronary collateral circulation (CCC) have a higher number of dendritic cells (DCs) and enhanced T-lymphocyte stimulation potential. This finding highlights the role of DCs in cardiovascular health and disease progression.
Area of Science:
- Immunology
- Cardiology
- Cell Biology
Context:
- Coronary heart disease (CHD) involves complex immune system interactions.
- Coronary collateral circulation (CCC) plays a crucial role in mitigating ischemic damage in CHD.
- Dendritic cells (DCs) are key immune regulators with potential involvement in cardiovascular disease.
Purpose:
- To investigate the relationship between dendritic cell (DC) characteristics and coronary collateral circulation (CCC) in patients with coronary heart disease (CHD).
- To compare the number, phenotype, and functional status of DCs between patients with and without CCC formation.
Summary:
- Dendritic cells (DCs) were successfully cultured from mononuclear cells in coronary artery blood samples.
- Patients with CCC formation exhibited a significantly higher number of mononuclear cells and DCs compared to those without CCC.
- While DC phenotype markers (CD1a, CD80, CD83, CD86) did not differ, DCs from the CCC group showed a significantly stronger capacity to stimulate T-lymphocyte proliferation (higher Stimulation Index).
Impact:
- This study reveals a correlation between an increased number of functional dendritic cells and the presence of coronary collateral circulation in CHD patients.
- The findings suggest that dendritic cells may play a protective role in CHD by promoting collateral vessel development.
- Understanding the role of DCs in CCC could lead to novel therapeutic strategies for improving outcomes in coronary heart disease.
Objective:
To determine the relationship between the number,phenotype and functional status of dendritic cells (DCs) and coronary collateral circulation (CCC) in coronary heart disease (CHD).
Methods:
Forty patients with severe coronary stenosis were recruited and divided into a CCC formation group (Group A, n=22) and a non-CCC formation group (Group B, n=18). Density gradient centrifugation was applied to separate the mononuclear cells (MNCs) from coronary artery blood samples, and MNCs were cultured and proliferated in vitro. The morphology of DCs was observed under converted microscope. The number of harvested cells and DCs was counted by hematocytometer. Flow cytometry was applied to investigate the phenotype and the mean fluorescence intensity (MFI). Mixed lymphocyte reaction was used to test the function of DCs to stimulate the proliferation of T lymphocytes. Stimulation index (SI) was calculated and compared.
Results:
(1) After in vitro proliferation, DCs were cultured successfully from the mononuclear cells from coronary artery blood samples and the morphology of DCs was not different in the 2 groups. (2) The number of mononuclear cells (MNC no) was (3.95+/-1.41)*10(6), in the CCC group and (2.76+/-0.92)*10(6) in the non-CCC group. The MNC number was significantly increased in the CCC group (P=0.003). (3) The number of DCs was (1.54+/-0.96)*10(6) in the CCC group, and (0.99+/-0.46)*10(6) in the non-CCC group (P=0.033). (4)There was no statistical significance in the percent of CD1a+, CD1a+CD80+, CD1a+CD83+, CD1a+CD86+ cells, and MFI in the 2 groups (P>0.05). (5) SI was 4.96+/-2.30 in the CCC group, whereas 2.66+/-1.04 in the non-CCC group. The SI in the CCC group increased significantly(P=0.0003).
Conclusion:
In CHD patients with severe coronary stenosis, patients with CCC formation have higher number of DCs and stronger potential of T lymphocyte stimulation.
Related Concept Videos
Coronary Artery Disease II: Pathophysiology
Coronary Circulation
Coronary circulation begins at the base of the aorta, where two main arteries arise—the left and right coronary arteries. These arteries encircle the heart in the coronary sulcus and supply the...
Coronary Artery Disease I: Introduction
Myocarditis I: Introduction
