医学
免疫系统
单核细胞
炎症
主动脉瘤
发病机制
表型
生物信息学
CCR2型
治疗方法
血管平滑肌
疾病
免疫学
趋化因子
临床实习
鉴定(生物学)
免疫疗法
临床表型
神经科学
机制(生物学)
细胞因子
血管疾病
转录组
电池类型
T细胞
细胞
评论文章
巨噬细胞
作者
Raşit Dinç,Nurittin Ardıç
标识
DOI:10.3389/fcvm.2025.1670576
摘要
Aortic aneurysms (AA) remain life-threatening vascular disorders characterized by progressive dilatation and risk of rupture. Despite advances in surgical and endovascular repair, pharmacological therapies to prevent aneurysm progression are lacking. Increasing evidence implicates chronic vascular inflammation and monocyte-derived macrophages in the pathogenesis of AA via matrix degradation, smooth muscle cell apoptosis, and neovascularization. Monocytes, traditionally classified as classical (CD14++CD16-), intermediate (CD14++CD16+), and nonclassical (CD14+CD16++) subsets, exhibit diverse functions in immune surveillance, cytokine production, and tissue remodeling. This review addresses the mechanistic roles of monocyte subsets in AA progression, evaluates emerging immunomodulatory strategies including CCR2 and TREM-1 inhibition, metabolic reprogramming, nanoparticle delivery, and cell-based therapies, and explores their integration with current surgical practices. Identification of circulating monocyte phenotypes may serve as promising biomarkers for patient stratification, monitoring, and therapeutic guidance. Advances in single-cell transcriptomics may reveal dynamic monocyte-macrophage phenotypes in aneurysm tissue. Current data hold promises for providing new perspectives on therapeutic strategies targeting monocytes. However, data are largely derived from preclinical studies. Detailed clinical studies are needed. Furthermore, translating these insights into clinical practice requires multidisciplinary collaboration among experts in immunology, vascular surgery, imaging, and systems biology.
科研通智能强力驱动
Strongly Powered by AbleSci AI