Aug 2026· Cancer Biome and Targeted Therapy· pp. 113-167· 0 citations· 204 references
TL;DR
A deeper understanding of the brain metastatic ecosystem may enable the development of more effective, biology-driven therapeutic approaches for NSCLC BM.
Abstract
Brain metastases (BM) are a common and clinically significant complication of non-small cell lung cancer (NSCLC), representing a major contributor to its high mortality. Among all metastatic sites, involvement of the central nervous system (CNS) is associated with a particularly profound deterioration in patients' quality of life. The incidence of BM varies considerably across different histological subtypes and molecularly defined groups of NSCLC. The development of BM is a multistep process involving primary tumor invasion, hematogenous dissemination, blood-brain barrier (BBB) transmigration, and successful colonization of the brain. This process is strongly shaped by reciprocal interactions between the tumor cells and the unique brain tumor microenvironment (TME). Brain endothelial cells, pericytes, astrocytes, microglia, neurons, and recruited peripheral immune and stromal cells collectively regulate BBB permeability, immune evasion, extracellular matrix remodeling, and metastatic outgrowth. Compared with primary lung tumors, BM displays a distinct immune landscape characterized by reduced lymphocyte infiltration, enrichment of immunosuppressive myeloid populations, impaired antigen presentation, and extensive crosstalk with CNS-resident cells. These features contribute to therapeutic resistance and help explain the heterogeneous intracranial efficacy of systemic treatments. While immune checkpoint inhibitors and chemotherapy combinations provide benefit in selected patients, the most pronounced intracranial responses are observed with CNS-penetrant targeted therapies in molecularly defined subsets. Emerging strategies aim to directly target the metastatic niche, including myeloid cells, tumor vasculature, immune checkpoints, and cellular immunotherapies. A deeper understanding of the brain metastatic ecosystem may enable the development of more effective, biology-driven therapeutic approaches for NSCLC BM.
Brain metastases from lung cancer do not merely reflect passive tumor growth after entry into the central nervous system. Rather, their development is a dynamic process involving transvascular entry into the brain, remodeling of the intracranial microenvironment, metabolic adaptation, and changes in neural function. Ad...
Yu-Jie Xuan, Ya-Bin Gong· Journal of Artificial Intell...· 0 citations
Distant metastasis has a major impact on melanoma mortality, yet it remains poorly defined how disseminated cells adapt to different host organs and their microenvironment. Here we applied single-nucleus RNA sequencing (snPATHO-seq) to archival FFPE melanoma metastases spanning brain, liver and lung from different pati...
Carlos Ariel Pulido-Vicuña, Marek Piprek, Philip Georg Demaerel et al.· bioRxiv· 0 citations
Brain metastases (BM) are a common and clinically significant manifestation of advanced cancer that increasingly influences treatment decisions across solid tumors. Management requires a tailored approach because intracranial disease may behave differently from extracranial disease, reflecting differences in drug penet...
Z. Sarfraz, R. Kotecha, Arun Maharaj et al.· Neurotherapeutics· 0 citations
Glioblastoma multiforme (GBM) is the most aggressive primary brain tumor in adults, characterized by rapid progression and poor prognosis. Central to GBM pathobiology are glioma stem cells (GSCs), which preferentially localize within the perivascular niche (PVN) and sustain tumor growth, invasion, and therapeutic resis...
Twinkle Jina Minette Manoharan, K. Ravi, Shwetal Mehta et al.· Lab on a Chip· 0 citations
Aggressive progression of small-cell lung cancer (SCLC) is orchestrated by a dynamic tumor microenvironment (TME). However, profiling this ecosystem remains a major constraint. The critical role of CD31+ aneuploid circulating tumor endothelial cells expressing vimentin (i.e. Vim+ CTECs amid Endo-MT process) in promotin...
Ying Wang, Fei Qi, Ming-Hang Zhang et al.· Cancer Letters· 0 citations