Research Institute of the McGill University Health Centre, McGill University, Montreal, QC, Canada.
Ludwik Hirszfeld Institute of Immunology and Experimental Therapy, Polish Academy of Sciences, Wroclaw, Poland.
Arch Immunol Ther Exp (Warsz). 2023 Feb 2;71(1):5. doi: 10.1007/s00005-023-00671-2.
Extracellular vesicles (EVs) and particles (EPs) serve as unique carriers of complex molecular information with increasingly recognized roles in health and disease. Individual EVs/EPs collectively contribute to the molecular fingerprint of their producing cell, reflecting its identity, state, function and phenotype. This property is of particular interest in cancer where enormous heterogeneity of cancer cells is compounded by the presence of altered stromal, vascular and immune cell populations, which is further complicated by systemic responses elicited by the disease in individual patients. These diverse and interacting cellular compartments are dynamically represented by myriads of EVs/EPs released into the circulating biofluids (blood) during cancer progression and treatment. Current approaches of liquid biopsy seek to follow specific elements of the EV/EP cargo that may have diagnostic utility (as biomarkers), such as cancer cell-derived mutant oncoproteins or nucleic acids. However, with emerging technologies enabling high-throughput EV/EP analysis at a single particle level, a more holistic approach may be on the horizon. Indeed, each EV/EP carries multidimensional information (molecular "voxel") that could be integrated across thousands of particles into a larger and unbiased landscape (EV/EP "hologram") reflecting the true cellular complexity of the disease, along with cellular interactions, systemic responses and effects of treatment. Thus, the longitudinal molecular mapping of EV/EP populations may add a new dimension to crucial aspects of cancer biology, personalized diagnostics, and therapy.
细胞外囊泡 (EVs) 和颗粒 (EPs) 作为复杂分子信息的独特载体,其在健康和疾病中的作用日益受到关注。单个 EVs/EPs 共同构成了其产生细胞的分子指纹图谱,反映了其身份、状态、功能和表型。这一特性在癌症中尤为重要,因为癌细胞的巨大异质性加上改变的基质、血管和免疫细胞群体的存在,进一步复杂化了个体患者疾病引发的全身反应。这些多样化和相互作用的细胞区室通过在癌症进展和治疗过程中释放到循环生物流体(血液)中的无数 EVs/EPs 动态地呈现出来。目前的液体活检方法试图跟踪 EV/EP 货物中具有诊断效用(作为生物标志物)的特定元素,例如癌细胞衍生的突变癌蛋白或核酸。然而,随着能够在单个颗粒水平上进行高通量 EV/EP 分析的新技术的出现,一种更加全面的方法可能即将出现。事实上,每个 EV/EP 都携带多维信息(分子“体素”),这些信息可以跨越数千个颗粒进行整合,形成一个更大、更无偏的图谱(EV/EP“全息图”),反映疾病的真实细胞复杂性,以及细胞间相互作用、全身反应和治疗效果。因此,EV/EP 群体的纵向分子图谱可能为癌症生物学、个性化诊断和治疗的关键方面增添新的维度。