Gangadaran Prakash, Onkar Akanksha, Rajendran Ramya Lakshmi, Goenka Anshika, Oh Ji Min, Khan Fatima, Nagarajan ArulJothi Kandasamy, Muthu Sathish, Krishnan Anand, Hong Chae Moon, Ahn Byeong-Cheol
BK21 FOUR KNU Convergence Educational Program of Biomedical Sciences for Creative Future Talents, Department of Biomedical Sciences, School of Medicine, Kyungpook National University, Daegu, 41944, Korea.
Department of Nuclear Medicine, School of Medicine, Kyungpook National University, Daegu, 41944, Korea.
Biomark Res. 2025 Jan 26;13(1):20. doi: 10.1186/s40364-025-00735-9.
Macrophages are pivotal in the body's defense and response to inflammation. They are present in significant numbers and are widely implicated in various diseases, including cancer. While molecular and histological techniques have advanced our understanding of macrophage biology, their precise function within the cancerous microenvironments remains underexplored. Enhancing our knowledge of macrophages and the dynamics of their extracellular vesicles (EVs) in cancer development can potentially improve therapeutic management. Notably, macrophages have also been harnessed to deliver drugs. Noninvasive in vivo molecular imaging of macrophages is crucial for investigating intricate cellular processes, comprehending the underlying mechanisms of diseases, tracking cells and EVs' migration, and devising macrophage-dependent drug-delivery systems in living organisms. Thus, in vivo imaging of macrophages has become an indispensable tool in biomedical research. The integration of multimodal imaging approaches and the continued development of novel contrast agents hold promise for overcoming current limitations and expanding the applications of macrophage imaging. This study comprehensively reviews several methods for labeling macrophages and various imaging modalities, assessing the merits and drawbacks of each approach. The review concludes by offering insights into the applicability of molecular imaging techniques for real time monitoring of macrophages in preclinical and clinical scenarios.
巨噬细胞在机体防御和炎症反应中起着关键作用。它们数量众多,广泛涉及包括癌症在内的各种疾病。虽然分子和组织学技术增进了我们对巨噬细胞生物学的理解,但它们在癌性微环境中的精确功能仍未得到充分探索。加强我们对巨噬细胞及其细胞外囊泡(EVs)在癌症发展过程中动态变化的了解,可能会改善治疗管理。值得注意的是,巨噬细胞也已被用于药物递送。巨噬细胞的无创体内分子成像对于研究复杂的细胞过程、理解疾病的潜在机制、追踪细胞和EVs的迁移以及设计生物体内依赖巨噬细胞的药物递送系统至关重要。因此,巨噬细胞的体内成像已成为生物医学研究中不可或缺的工具。多模态成像方法的整合以及新型造影剂的不断发展有望克服当前的局限性并扩大巨噬细胞成像的应用。本研究全面回顾了几种标记巨噬细胞的方法和各种成像方式,评估了每种方法的优缺点。该综述最后对分子成像技术在临床前和临床场景中实时监测巨噬细胞的适用性提供了见解。