Picchio Vittorio, Pontecorvi Virginia, Dhori Xhulio, Bordin Antonella, Floris Erica, Cozzolino Claudia, Frati Giacomo, Pagano Francesca, Chimenti Isotta, De Falco Elena
Department of Angio Cardio Neurology, IRCCS Neuromed, 86077 Pozzilli, Italy.
Department of Medical Surgical Sciences and Biotechnologies, Sapienza University, 04100 Latina, Italy.
Life Sci. 2025 Aug 15;375:123752. doi: 10.1016/j.lfs.2025.123752. Epub 2025 May 21.
In recent years, exosomes versatility has prompted their study in the biomedical field for diagnostic, prognostic, and therapeutic applications. Exosomes are bi-lipid small extracellular vesicles (30-150 nm) secreted by various cell types, containing proteins, lipids, and DNA/RNA. They mediate intercellular communication and can influence multiple human physiological and pathological processes. So far, exosome analysis has revealed their role as promising diagnostic tools for human pathologies. Concurrently, artificial intelligence (AI) has revolutionised multiple sectors, including medicine, owing to its ability to analyse large datasets and identify complex patterns. The combination of exosome analysis with AI processing has displayed a novel diagnostic approach for cancer and other diseases. This review explores the current applications and prospects of the combined use of exosomes and AI in medicine. Firstly, we provide a biological overview of exosomes and their relevance in cancer biology. Then we explored exosome isolation techniques and Raman spectroscopy/SERS analysis. Finally, we present a summarised essential guide of AI methods for non-experts, emphasising the advancements made in AI applications for exosome characterisation and profiling in oncology research, as well as in other human diseases.
近年来,外泌体的多功能性促使人们在生物医学领域对其进行诊断、预后和治疗应用方面的研究。外泌体是由各种细胞类型分泌的双脂质小细胞外囊泡(30 - 150纳米),包含蛋白质、脂质和DNA/RNA。它们介导细胞间通讯,并能影响多种人类生理和病理过程。到目前为止,外泌体分析已揭示其作为人类疾病有前景的诊断工具的作用。同时,人工智能(AI)凭借其分析大型数据集和识别复杂模式的能力,给包括医学在内的多个领域带来了变革。外泌体分析与人工智能处理的结合为癌症和其他疾病展示了一种新颖的诊断方法。本综述探讨了外泌体与人工智能联合应用在医学中的当前应用和前景。首先,我们对外泌体及其在癌症生物学中的相关性进行生物学概述。然后我们探讨了外泌体分离技术和拉曼光谱/表面增强拉曼光谱分析。最后,我们为非专家提供了一份人工智能方法的简要基本指南,强调了人工智能在肿瘤学研究以及其他人类疾病中外泌体表征和分析方面应用所取得的进展。