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Updated: Jan 24, 2026

Myocardial Infarction and Functional Outcome Assessment in Pigs
Published on: April 25, 2014
[Dynamics of brain CD68+ and stabilin-1+ macrophage infiltration in patients with myocardial infarction]
M S Rebenkova1, A E Gombozhapova1, Yu V Rogovskaya1
1Tomsk National Research Medical Center of the Russian Academy of Science; National Research Tomsk State University.
Insights
Brain macrophage infiltration increases significantly within 72 hours of myocardial infarction (MI). CD68+ macrophage levels in the brain correlate with those in the heart, but M2-like stabilin-1+ macrophages do not change.
Area of Science:
- Neuroimmunology
- Cardiovascular Pathology
- Inflammatory Response
Background:
- Myocardial infarction (MI) is a critical cardiovascular event.
- The role of brain immune cell dynamics in MI pathogenesis is not fully understood.
- Macrophage infiltration in the brain may influence outcomes post-MI.
Purpose of the Study:
- To investigate the temporal changes in brain macrophage populations following fatal Type 1 MI.
- To differentiate between general macrophage markers (CD68+) and M2-like macrophages (stabilin-1+) in the brain post-MI.
- To explore correlations between brain and myocardial macrophage infiltration.
Main Methods:
- Immunohistochemical analysis of brain tissue from 31 fatal MI patients and 10 controls.
- Patients were grouped based on time of death: within 72 hours (Group 1) or 4-28 days (Group 2) post-MI.
- CD68 used as a pan-macrophage marker; stabilin-1 as an M2-like macrophage marker.
Main Results:
- CD68+ macrophage infiltration in the brain was significantly elevated in Group 1 compared to controls.
- Brain CD68+ cells were lower in Group 2 than Group 1 but higher than controls.
- Stabilin-1+ macrophages showed minimal presence and no significant difference between MI groups and controls.
- Positive correlation found between CD68+ macrophages in the brain and myocardium.
Conclusions:
- Brain CD68+ macrophage numbers significantly increase within the initial 72 hours of Type 1 MI.
- Stabilin-1+ macrophage levels in the brain remain unchanged and do not differ from controls.
- A direct correlation exists between CD68+ macrophage infiltration in the brain and myocardium post-MI.
Abstract:
Te aim of the study was to evaluate the temporal dynamics of brain CD68+ and stabilin-1+ macrophage infltration in patients with fatal myocardial infarction (MI) type 1.
Materials And Methods:
Te study included 31 patients with fatal MI type I. Te control group comprised 10 patients of 18-40 age group who died from injuries incompatible with life. Patients with MI were divided into two groups. Group 1 comprised patients who died during the frst 72 hours of MI, group 2 comprised patients who died on days 4‒28. Macrophage infltration in the brain was assessed by immunohistochemical analysis. We used CD68 as a marker for the cells of the macrophage lineage and stabilin-1 as an M2-like macrophage biomarker.
Results:
In group 1 the number of brain CD68+ macrophages was signifcantly higher than in the control group. In group 2 the intensity of brain CD68+ cells infltration was lower than in group 1 and higher than in the control group. Tere was a small amount of stabilin-1+ macrophages in the brain of healthy people, as well as of patients who died from MI. Tere were no signifcant differences in the number of stabilin-1+ cells between group 1 and group 2. Correlation analysis revealed the presence of positive correlation between the number of CD68 + macrophages in the infarct, peri-infarct, and non-infarct areas of the myocardium and the number of CD68+ macrophages in the brain in patients with MI. Tere were not correlations between the number of CD68 + and stabilin-1+ cells and the presence of diabetes mellitus, history of stroke, history of MI, and pre-infarction angina.
Conclusion:
Te number of brain CD68+ macrophages signifcantly increased during the frst three days of MI. Te number of brain stabilin-1+ macrophages did not increase and did not differ from the control values. We observed a positive correlation between the number of CD68+ macrophages in the brain and myocardium.
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