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A New Murine Model of Endovascular Aortic Aneurysm Repair
Published on: July 7, 2013
Exosome-mediated macrophage regulation in abdominal aortic aneurysm treatment
Hanxun He1, Hao Liu2, Peiwen Yang1
1Department of Cardiovascular Surgery, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, 1277 Jiefang Avenue, Wuhan, 430022, China.
Abstract:
Abdominal aortic aneurysm (AAA) is a life-threatening vascular disease characterized by the irreversible dilatation of the aortic wall. AAA progression is closely linked to an imbalance in macrophage polarization, chronic inflammation, and the degradation of the extracellular matrix (ECM). This review expounded on the potential role of exosomes, as natural bioactive carriers, in modulating macrophage polarization, metabolic reprogramming, and pyroptosis by delivering various biomolecules, including non-coding RNAs (ncRNAs), proteins, and lipids, thereby influencing the pathogenesis of AAA. Exosomes facilitate intercellular communication in AAA by transferring bioactive molecules that potentially influence macrophage polarization and inflammatory responses through various mechanisms. These include the inhibition of NLRP3 inflammasome activation, modulation of the balance between glycolysis and oxidative phosphorylation, as well as targeting key signaling pathways such as PARP-1/PP-1α/JNK/c-Jun and TSC2-mTOR-AKT. Moreover, engineered exosomes, such as those modified with targeting peptides, magnetic nano-drug delivery systems, and hydrogel-based sustained-release platforms, are currently being investigated to improve lesion targeting and therapeutic durability, thereby offering a promising multidimensional intervention strategy for AAA treatment. However, the clinical application of exosomes continues to encounter several challenges, including the absence of standardized production protocols, obstacles in large-scale preparation, and inadequate safety verification. Future research should prioritize a comprehensive analysis of the exosome-macrophage interaction network, the development of advanced delivery systems, and the validation of preclinical efficacy. These efforts are indeed crucial for advancing the translational application of exosome-based immunomodulatory strategies in the treatment of AAA.
Insights
Exosomes show promise in treating abdominal aortic aneurysm (AAA) by modulating macrophage polarization and inflammation. Further research is needed to overcome challenges in their clinical application for AAA therapy.
Area of Science:
- Vascular Biology
- Immunology
- Biotechnology
Background:
- Abdominal aortic aneurysm (AAA) involves aortic wall dilatation, linked to macrophage imbalance, inflammation, and extracellular matrix degradation.
- Macrophage polarization is a critical factor in AAA pathogenesis.
Purpose of the Study:
- To review the role of exosomes in modulating macrophage polarization and influencing AAA pathogenesis.
- To explore exosome-based therapeutic strategies for AAA.
Main Methods:
- Literature review focusing on exosome function in AAA.
- Analysis of exosome-mediated intercellular communication mechanisms.
- Examination of engineered exosome applications and challenges.
Main Results:
- Exosomes deliver biomolecules (ncRNAs, proteins, lipids) affecting macrophage polarization, metabolism, and pyroptosis in AAA.
- Exosomes modulate NLRP3 inflammasome, energy metabolism, and key signaling pathways (e.g., PARP-1, mTOR).
- Engineered exosomes offer improved targeting and therapeutic potential for AAA.
Conclusions:
- Exosomes represent a promising therapeutic avenue for AAA by modulating immune responses.
- Challenges in production, scalability, and safety hinder clinical translation.
- Future research should focus on exosome-macrophage interactions, delivery systems, and preclinical validation for AAA treatment.

