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Mesker, W.

Publications and source records attributed to Mesker, W..

2 recordsLinked to original sources

Inter-Spheroid Proximity and Matrix Remodeling Determine CAF-Mediated Cancer Cell Invasion

Breast cancer is the most commonly diagnosed malignancy worldwide, with molecular subtypes following distinct clinical trajectories. While Luminal A breast cancers are typically indolent, a subset enriched in -smooth muscle actin (-SMA)-positive cancer-associated fibroblasts (CAFs) exhibits aggressive behavior, facilitating tumor invasion. However, the biophysical mechanisms by which CAFs drive invasion and extracellular matrix (ECM) remodeling remain unclear. Furthermore, the temporal and spatial dynamics of CAF interactions with the collagen matrix and cancer cell spheroids remain unknown, raising the question of whether these processes follow a deterministic sequence or occur stochastically. To address this, we conduct histological analysis of Luminal A tumors, revealing variation in CAF, cancer cell, and ECM organization at tumor boundaries. To assess the impact of CAF on cancer cell invasion, we use a 3D in-vitro model co-embedding 19TT breast CAF and MCF7 luminal breast cancer spheroids within a three-dimensional (3D) collagen-I hydrogel and perform time-lapse imaging. We demonstrate that inter-spheroid distance critically determines 19TT CAF-induced MCF7 spheroid behavior. Furthermore, we show that CAF-mediated collagen matrix remodeling and degradation precedes MCF7 spheroid disruption and is critical in promoting cancer cell spheroid expansion and cell dissemination. While broad-spectrum matrix metalloproteinase inhibition suppresses CAF-driven collagen degradation and MCF7 spheroid expansion, it does not prevent ECM remodeling, CAF migration, or single-cell dissemination of cancer cell spheroids. Furthermore, a complementary heterospheroid model reveals similar ECM remodeling and invasion dynamics despite altered cellular arrangement of cancer cells and CAFs. These findings enhance our understanding of the relationship between CAF activity and collagen matrix remodeling processes that promote cancer cell invasion, providing insights into the potential therapeutic benefits of targeting CAFs in breast cancer treatment.

cancer biology↗

Whole-Slide ECM Imaging Reveals Dense Fibrous Matrix as a High-Risk Factor for Recurrence in Stage II Colon Cancer

IntroductionThe extracellular matrix (ECM) supports tumor progression by influencing tumor cell migration and invasion. This study examines the link between peritumoral ECM morphology and five-year recurrence risk in TNM Stage II colon cancer, using quantitative whole-slide ECM imaging. We hypothesize that loose ECM regions are associated with increased recurrence risk due to enhanced tumor budding (TB) or poorly differentiated clusters (PDC). MethodsIn a case-control study of 100 TNM Stage II colon cancer patients (25 with recurrence and 75 controls matched by lymph node sampling and tumor extent), Picrosirius red-stained sections were imaged to quantify ten ECM parameters across 798 regions of interest (ROIs). Conditional logistic regression assessed associations between ECM morphologies, TB, PDCs, and recurrence. ResultsUnsupervised clustering identified three ECM morphologies: dense fibrous, loose sparse, and complex tortuous. Dense fibrous ECM correlated strongly with recurrence (aOR 9.43, 95% CI 3.29-29.30, p < 0.001), while loose sparse and complex tortuous ECMs were associated with reduced recurrence risk (aOR 0.33, 95% CI 0.11-0.91, p = 0.040, and aOR 0.14, 95% CI 0.02-0.53, p = 0.012, respectively). TB was highest in loose sparse ECM (mean 9.3), and PDCs were highest in dense fibrous ECM (mean 5.5). DiscussionOur findings suggest that ECM morphology, particularly dense fibrous ECM, predicts recurrence in Stage II colon cancer, highlighting ECM profiling as a promising tool for patient stratification beyond traditional staging.

cancer biology↗