乳腺癌
转移
癌症研究
癌症
生物
癌细胞
营养物
表型
转移性乳腺癌
乳腺癌转移
代谢组学
医学
疾病
乳腺
肿瘤科
CA15-3号
肿瘤微环境
恶性疾病
内科学
代谢组
癌症转移
营养不良
生物标志物
人体乳房
作者
Keene L. Abbott,Sonu Subudhi,Raphael Ferreira,Yetiş Gültekin,Sophie Charlotte Steinbuch,Muhammad Bin Munim,Diya Ramesh,Sophie Honeder,Ashwin S. Kumar,Michelle Wu,Jacob A. Hansen,Anna Shevzov-Zebrun,Edrees H. Rashan,Kian Moritz Eghbalian,Sharanya Sivanand,Anna M. Barbeau,Lisa Maria Riedmayr,Mark Duquette,Ahmed Ali,Nicole Henning
出处
期刊:Nature
[Nature Portfolio]
日期:2026-01-07
卷期号:649 (8099): 1292-1301
被引量:3
标识
DOI:10.1038/s41586-025-09898-9
摘要
, yet the factors that determine the organs where cancers can metastasize are incompletely understood. Here we quantify the absolute levels of 124 metabolites in multiple tissues in mice and investigate how this relates to the ability of breast cancer cells to grow in different organs. We engineered breast cancer cells with broad metastatic potential to be auxotrophic for specific nutrients and assessed their ability to colonize different tissue sites. We then asked how tumour growth in different tissues relates to nutrient availability and tumour biosynthetic activity. We find that single nutrients alone do not define the sites where breast cancer cells can grow as metastases. In addition, we identify purine synthesis as a requirement for tumour growth and metastasis across many tissues and find that this phenotype is independent of tissue nucleotide availability or tumour de novo nucleotide synthesis activity. These data suggest that a complex interplay between multiple nutrients within the microenvironment dictates potential sites of metastatic cancer growth, and highlights the interdependence between extrinsic environmental factors and intrinsic cellular properties in influencing where breast cancer cells can grow as metastases.
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