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Updated: Feb 1, 2026

Invasive Behavior of Human Breast Cancer Cells in Embryonic Zebrafish
Published on: April 25, 2017
Passive nuclear transport deviates from Fickian behavior in prostate and breast cell types
Nicholas R Scott1, Alexander J Lin2, Brian Belardi2
1Department of Biomedical Engineering, University of Texas at Austin, Austin, TX, USA.
None:
Nuclear trafficking is essential for cellular function and biomedical applications such as nucleus-targeted drug delivery; however, how passive nuclear transport varies across cell types and phenotypic states remains poorly understood. Here, we investigate passive nuclear transport of fluorescent molecular cargoes spanning 500-20,000 Da across multiple cell lines. We observe cell-line-specific nuclear restrictions and find that passive nuclear uptake does not exhibit a monotonic dependence on molecular weight, suggesting non-Fickian transport behavior. Furthermore, transforming a healthy breast cell model into an invasive-like phenotype via TGF-Beta treatment significantly altered passive nuclear transport characteristics, closely resembling those of a well-established invasive breast cancer cell line. These phenotype-dependent changes in nuclear permeability provide new insight into fundamental biophysical alterations associated with cancerous cellular transformation.
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