结直肠癌
细胞外小泡
跟踪(教育)
小泡
细胞外
肺
深度学习
胞外囊泡
癌症研究
微泡
医学
人工智能
肿瘤科
材料科学
生物医学工程
计算机科学
癌症
生物
内科学
细胞生物学
生物化学
膜
心理学
基因
小RNA
教育学
作者
Giulia Chiabotto,Bianca Dumontel,L Zilli,Veronica Vighetto,Giorgia Savino,Francesca Alfieri,Michela Licciardello,Massimo Cedrino,Sabrina Arena,Chiara Tonda‐Turo,Gianluca Ciardelli,Valentina Cauda
标识
DOI:10.1021/acsbiomaterials.5c00380
摘要
According to the International Agency for Research on Cancer and the World Health Organization, colorectal cancer (CRC) is the third most common cancer in the world and the main cause of gastrointestinal cancer-related deaths. Despite advances in therapeutic regimens, the incidence of metastatic CRC is increasing due to the development of resistance to conventional treatments. Metastases, particularly in the liver and lungs, represent the leading cause of death and poor prognosis in CRC patients. Recent evidence demonstrates that extracellular vesicles (EVs) are involved in communication between cancer cells and the surrounding environment. Understanding the potential mechanisms underlying EV-driven metastasis and tumor progression could facilitate the development of innovative strategies for early diagnosis and effective treatment of CRC metastasis. In this work, we developed a deep learning-based approach to track CRC-derived EVs in colon and lung models, enabling precise quantification of their uptake and trafficking in vitro. Moreover, we observed their tropism toward heterologous healthy cells in biologically relevant 3D models of colon and lung tissues, indicating the inherent role of CRC-EVs in metastatic niche formation and tumor initiation, raising their potential as innovative diagnostic and prognostic biomarkers as well as therapeutic targets in CRC.
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