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Updated: Sep 4, 2026

Tracking Tumor Cell Dissemination from Lung Metastases Using Photoconversion
Published on: July 7, 2023
Spatiotemporal lineage tracing reveals the dynamic spatial architecture of tumor growth and metastasis
Matthew G Jones1,2,3, Dawei Sun4,5, Kyung Hoi Joseph Min1,6,7
1Department of Biology, Massachusetts Institute of Technology, Cambridge, MA, USA.
Abstract:
Tumor progression is driven by dynamic interactions between cancer cells and their surrounding microenvironment. Here we integrate high-resolution spatial transcriptomics and evolving lineage-tracing technologies to elucidate how tumor expansion, plasticity and metastasis co-evolve with microenvironmental remodeling in a Kras;Trp53-driven mouse model of lung adenocarcinoma. We find that subclonal expansion contributes to a hypoxic, immunosuppressive and fibrotic microenvironment that is associated with the emergence of prometastatic cancer cell states. We use tumor phylogeography to delineate intercellular interactions that are rewired in the expanding tumor niche and use co-culture systems to dissect how intercellular interactions and hypoxia influence cancer cell state. Furthermore, we find that metastases arise from spatially confined primary tumor subclones and remodel the distant metastatic niche into a fibrotic, collagen-rich microenvironment. Together, we present a comprehensive dataset integrating spatial assays and lineage tracing to elucidate how sequential changes in cancer cell state and microenvironmental structures cooperate to promote tumor progression.

