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Updated: Jun 9, 2025

Isolation, Characterization, and Purification of Macrophages from Tissues Affected by Obesity-related Inflammation
Published on: April 3, 2017
FABP5+ macrophages contribute to lipid metabolism dysregulation in type A aortic dissection
Xin Chen1, Ruoshi Chen1, Yuefeng Wu2
1Department of Cardiovascular Surgery, The First Affiliated Hospital, School of Medicine, Zhejiang University, Hangzhou 310009, China.
Abstract:
Type A aortic dissection (TAAD) is an acute onset disease with a high mortality rate. TAAD is caused by a tear in the aortic intima and subsequent blood infiltration. The most prominent characteristics of TAAD are aortic media degeneration and inflammatory cell infiltration, which disturb the structural integrity and function of nonimmune and immune cells in the aortic wall. However, to date, there is no systematic evaluation of the interactions between nonimmune cells and immune cells and their effects on metabolism in the context of aortic dissection. Here, multiomics, including bulk RNA-seq, single-cell RNA-seq, and lipid metabolomics, was applied to elucidate the comprehensive TAAD lipid metabolism landscape. Normally, monocytes in the stress response state secrete a variety of cytokines. Injured fibroblasts lack the ability to degrade lipids, which is suspected to contribute to a high lipid environment. Macrophages differentiate into fatty acid binding protein 5-positive (FABP5+) macrophages under the stimulation of metabolic substrates. Moreover, the upregulation of Fabp5+ macrophages were retrospectively validated in TAAD model mice and TAAD patients. Finally, Fabp5+ macrophages can generate a wide range of proinflammatory cytokines, which possibly contribute to TAAD pathogenesis.
Insights
Type A aortic dissection involves aortic wall cell dysfunction and altered lipid metabolism. This study identifies FABP5+ macrophages as key players, producing inflammatory cytokines that may drive disease progression.
Area of Science:
- Cardiovascular Biology
- Molecular Metabolism
- Immunology
Background:
- Type A aortic dissection (TAAD) is a life-threatening condition characterized by aortic wall degeneration and inflammation.
- Existing research lacks a systematic evaluation of immune and nonimmune cell interactions and their metabolic impact in TAAD.
Purpose of the Study:
- To comprehensively investigate the lipid metabolism landscape in TAAD using multiomics approaches.
- To elucidate the roles of cellular interactions and metabolic alterations in TAAD pathogenesis.
Main Methods:
- Multiomics analysis including bulk RNA-seq, single-cell RNA-seq, and lipid metabolomics.
- Validation in TAAD model mice and human patient samples.
Main Results:
- Identified impaired lipid degradation in injured fibroblasts and cytokine secretion by stressed monocytes.
- Revealed macrophage differentiation into fatty acid binding protein 5-positive (FABP5+) macrophages.
- Demonstrated upregulation of FABP5+ macrophages in TAAD models and patients.
Conclusions:
- FABP5+ macrophages are significantly upregulated in TAAD and may contribute to pathogenesis.
- These macrophages produce proinflammatory cytokines, highlighting their potential role in TAAD development.
- Understanding these metabolic and cellular interactions offers new insights into TAAD.
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