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Updated: Nov 8, 2025

Calcification of Vascular Smooth Muscle Cells and Imaging of Aortic Calcification and Inflammation
Published on: May 31, 2016
Colocalization of Erythrocytes and Vascular Calcification in Human Atherosclerosis: A Systematic Histomorphometric
Elsa Wilma Böhm1, Maria Pavlaki2, Georgios Chalikias2
1Department of Cardiology, University Medical Center, Mainz, Germany.
Insights
Erythrocytes, or red blood cells, and their components are present in vascular lesions and associated with calcification. This suggests erythrocytes play a role in the progression of vascular diseases like atherosclerosis.
Area of Science:
- Cardiovascular Biology
- Vascular Pathology
- Biomaterials Science
Background:
- Intimal calcification is typical in advanced atherosclerosis and may worsen plaque instability.
- Intraplaque hemorrhage and erythrocyte extravasation can stimulate calcification within vascular lesions.
- The role of erythrocytes and their components in vascular calcification has not been systematically studied.
Purpose of the Study:
- To investigate the presence and colocalization of erythrocytes and their components with calcification in various vascular diseases.
- To determine if extravasated erythrocytes contribute to osteoblastic differentiation and calcium deposition in diseased vessels.
Main Methods:
- Analysis of diseased vascular tissue: aortic valve stenosis, carotid artery plaques, and abdominal aortic aneurysms.
- Histological staining for erythrocytes, extracellular matrix, osteoid, calcium, iron, and hemosiderin.
- Immunohistochemistry for erythrocyte membranes (CD235a), hemoglobin, CD163, CD31, SMA, osteopontin, and periostin.
Main Results:
- Intraplaque hemorrhage and lysed erythrocytes were frequently observed in all examined vascular tissues.
- Erythrocyte membranes were significantly more prevalent in calcified areas.
- While CD163-positive cells (scavenging hemoglobin) were present in some areas with erythrocytes and calcification, calcification also occurred independently of CD163.
Conclusions:
- Extravasated erythrocytes and their membranes are present in diverse vascular lesions.
- The association of erythrocyte components with calcification suggests a significant role for erythrocytes in vascular disease progression and calcification processes.
Abstract:
Background Intimal calcification typically develops in advanced atherosclerosis, and microcalcification may promote plaque progression and instability. Conversely, intraplaque hemorrhage and erythrocyte extravasation may stimulate osteoblastic differentiation and intralesional calcium phosphate deposition. The presence of erythrocytes and their main cellular components (membranes, hemoglobin, and iron) and colocalization with calcification has never been systematically studied. Methods and Results We examined three types of diseased vascular tissue specimens, namely, degenerative aortic valve stenosis ( n = 46), atherosclerotic carotid artery plaques ( n = 9), and abdominal aortic aneurysms ( n = 14). Biomaterial was obtained from symptomatic patients undergoing elective aortic valve replacement, carotid artery endatherectomy, or aortic aneurysm repair, respectively. Serial sections were stained using Masson-Goldner trichrome, Alizarin red S, and Perl's iron stain to visualize erythrocytes, extracelluar matrix and osteoid, calcium phosphate deposition, or the presence of iron and hemosiderin, respectively. Immunohistochemistry was employed to detect erythrocyte membranes (CD235a), hemoglobin or the hemoglobin scavenger receptor (CD163), endothelial cells (CD31), myofibroblasts (SMA), mesenchymal cells (osteopontin), or osteoblasts (periostin). Our analyses revealed a varying degree of intraplaque hemorrhage and that the majority of extravasated erythrocytes were lysed. Osteoid and calcifications also were frequently present, and erythrocyte membranes were significantly more prevalent in areas with calcification. Areas with extravasated erythrocytes frequently contained CD163-positive cells, although calcification also occurred in areas without CD163 immunosignals. Conclusion Our findings underline the presence of extravasated erythrocytes and their membranes in different types of vascular lesions, and their association with areas of calcification suggests an active role of erythrocytes in vascular disease processes.
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