病理
肺
肺癌
转移
医学
癌症
淋巴系统
薄层荧光显微镜
癌细胞
乳腺癌
显微镜
黑色素瘤
荧光显微镜
光学成像
循环系统
生物
显微术
荧光寿命成像显微镜
乳腺
解剖
活检
生物医学工程
单色
转移性乳腺癌
血管
真皮
放射科
循环肿瘤细胞
癌症研究
作者
Sabrina M. Lewis,Jean Berthelet,Lachlan Whitehead,Pradeep Rajasekhar,Farrah El-Saafin,Caroline Bell,Shalin H. Naik,Delphine Mérino,Verena C. Wimmer,Kelly L. Rogers
出处
期刊:
日期:2025-11-07
卷期号:3 (1): 58-58
标识
DOI:10.1038/s44303-025-00111-0
摘要
Cancer metastasis involves a complex cascade of events, where cancer cells migrate from their site of origin to secondary sites via the lymphatic and circulatory system. During this process, some cancer subclones will successfully 'seed' at distant organs to generate lethal metastases. Here, we optimised a method for tracking cancer cells in metastatic breast cancer tumours and investigated their complex interplay with the lung vasculature using lentiviral-based optical barcoding (LeGO). Given the regional heterogeneity in lung tissue microenvironments as well as lobar asymmetry, we used light sheet microscopy to perform three-dimensional (3D) imaging of wholemount lung lobes. The results revealed that polychromatic metastases occurred less frequently than monochromatic metastases and were more likely to be located nearer to blood vessels in both spontaneous (i.e. mammary fat pad injections) and experimental (i.e. tail vein injections) mouse assays of metastasis. This 3D imaging and analytic pipeline can provide unique insights about metastatic heterogeneity and dynamics, and represents a new avenue for studying therapeutic response across large volumes of lung tissue.
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