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Updated: Jun 20, 2026

Quantitative Analysis of Cellular Composition in Advanced Atherosclerotic Lesions of Smooth Muscle Cell Lineage-Tracing Mice
Published on: February 20, 2019
[Comparative transcriptome analysis of human aorta atherosclerotic lesions and peripheral blood leukocytes from
Insights
Arterial hypertension (AH) accelerates atherosclerosis. This study identified 40 differentially expressed genes in atherosclerotic aorta and leukocytes from hypertension patients, revealing molecular links and potential therapeutic targets.
Area of Science:
- Cardiovascular biology
- Molecular genetics
- Immunology
Context:
- Arterial hypertension (AH) is a major risk factor for atherosclerosis.
- Understanding the molecular link between AH and atherosclerosis is crucial for developing new treatments.
- Large-scale transcriptome analysis is needed to identify key genes involved in atherogenesis.
Purpose:
- To determine the molecular basis of the link between AH and atherosclerosis.
- To identify novel gene candidates involved in atherogenesis using microarray analysis.
- To validate gene expression changes in human aortic tissues and peripheral blood leukocytes.
Summary:
- cDNA microarray analysis revealed differential expression of 40 genes in normal vs. atherosclerotic aorta.
- Key genes implicated in cell migration, inflammation, and extracellular matrix remodeling were identified.
- Increased expression of specific genes (e.g., CD53, SPI1, FPRL2) was observed in leukocytes of essential hypertension (EH) patients and atherosclerotic lesions.
- These gene expression changes significantly correlated with AH stage and lesion severity.
Impact:
- Identified novel gene candidates (e.g., FPRL2, CD37, SPI1) involved in atherogenesis.
- Provided molecular insights into how arterial hypertension accelerates atherosclerosis.
- Highlights potential diagnostic markers and therapeutic targets for AH-related atherosclerosis.
Abstract:
One of the major cardiovascular risk factor which predisposes to and accelerates atherosclerosis is arterial hypertension (AH). To determine the molecular basis of the crosslink between AH and atherosclerosis for the development of new treatment strategies large-scale transcriptome analysis of the cells implicated in atherogenesis is needed. We used cDNA microarray technique for simultaneous analysis of gene expression in human abdominal aorta normal sites and atherosclerotic lesions of different histological types, as well as in peripheral blood leukocytes from patients with essential hypertension (EH) and donors. The microarray data were verified by quantitative RT-PCR (reverse transcription coupled with polymerase chain reaction) and immunohistochemical analysis. Differential expression of 40 genes has been found, among which twenty two genes demonstrated up-regulation and 18 genes demonstrated down-regulation in atherosclerotic aorta compared with normal vessel. New gene-candidates, implicated in atherogenesis, have been identified - FPRL2, CD37, CD53, RGS1, LCP1, SPI1, CTSA, EPAS1, FHL1, GEM, RHOB, SPARCL1, ITGA8, PLN, and COL14A1. These genes participate in cell migration and adhesion, phenotypic changes of smooth muscle cells, immune and inflammatory reactions, oxidative processes and extracellular matrix remodeling. We have found increased expression levels of CD53, SPI1, FPRL2, SPP1, CTSD, ACP5, LCP1, CTSA and LIPA genes in peripheral blood leukocytes from EH patients and in atherosclerotic lesions of human aorta. The majority of these genes significantly (p<0.005) positively (r>0.5) correlated with AH stage as well as with histological grading of atherosclerotic lesions.
Related Concept Videos
Hypertension II: Pathophysiology
Atherosclerosis II: Clinical Manifestations and Diagnostic Tests
