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Heart-Type Fatty Acid-Binding Protein (H-FABP) as a Candidate Adjunctive Biomarker for Immune Checkpoint Inhibitor-Related Cardiotoxicity: Linking Early Immune–Metabolic Myocardial Injury with Translational Cardio-Oncology

医学 生物标志物 心肌炎 肌钙蛋白 内科学 亚临床感染 免疫检查点 炎症体 心肌保护 心肌病 生物信息学 心脏病学 生物标志物发现 临床意义 免疫系统 辅助治疗 心肌梗塞 促炎细胞因子 免疫学 肿瘤科 上睑下垂 炎症 代谢组学 CD14型 肌钙蛋白T 不利影响
作者
Vincenzo Quagliariello,Massimiliano Berretta,Fabrizio Maurea,Maria Laura Canale,Andrea Paccone,Irma Bisceglia,Andrea Tedeschi,Marino Scherillo,Jacopo Santagata,Stefano Oliva,Christian Cadeddu Dessalvi,Pietro Forte,Cristiana D’Ambrosio,Tiziana Di Matola,Domenico Gabrielli,Nicola Maurea
出处
期刊:International Journal of Molecular Sciences [Multidisciplinary Digital Publishing Institute]
卷期号:27 (11): 4842-4842
标识
DOI:10.3390/ijms27114842
摘要

Immune checkpoint inhibitors (ICIs) have transformed the therapeutic landscape of oncology but are increasingly associated with cardiovascular immune-related adverse events (irAEs), including myocarditis, heart failure, arrhythmias, and vascular complications. Among these, ICI-associated myocarditis represents the most severe manifestation, often characterized by high mortality and challenging early diagnosis. Detecting subclinical myocardial injury before irreversible cardiomyocyte necrosis occurs remains a major unmet need in contemporary cardio-oncology. This narrative expert review critically examines the biological rationale, preclinical evidence, and emerging clinical data supporting the potential role of heart-type fatty acid-binding protein (H-FABP) as an adjunctive biomarker of early immune-mediated myocardial injury during ICI therapy. H-FABP is a small cytosolic lipid chaperone abundantly expressed in cardiomyocytes and rapidly released into the circulation following subtle membrane destabilization and metabolic stress, frequently preceding detectable troponin elevation in other forms of myocardial injury. Experimental studies support a mechanistic association between H-FABP release, inflammasome activation, cytokine amplification, mitochondrial dysfunction, and immune-metabolic cardiomyocyte stress. Preliminary clinical observations further suggest that H-FABP elevations may occur during ICI treatment even in the absence of overt myocarditis or concomitant increases in high-sensitivity cardiac troponins (hs-cTns). Although H-FABP cannot replace hs-cTn, which remains the cornerstone biomarker for the diagnosis of clinically significant ICI-associated myocarditis, its rapid kinetics and sensitivity to early metabolic membrane injury support its potential role as an investigational adjunctive biomarker for early surveillance and risk stratification. This approach may be particularly relevant in patients receiving high-risk combination ICI regimens or in individuals with pre-existing cardiovascular disease. However, current evidence remains limited, and large prospective multicenter studies integrating H-FABP with hs-cTns, natriuretic peptides, cardiac magnetic resonance imaging, and clinical outcomes are required before routine clinical implementation can be considered.
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