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Biology subjects

Wu, P.-h.

Publications and source records attributed to Wu, P.-h..

2 recordsLinked to original sources

Multi-compartment tumor organoids

Organoid cultures are widely used because they preserve many features of cancer cells in vivo. Here, we developed high-throughput oil-in-water droplet microtechnology to generate highly uniform, small-volume, multi-compartment organoids. Each organoid culture features a microenvironmental architecture that mimics both the basement membrane and stromal barriers. This matrix architecture, which allows accessing both proliferative and invasive features of cancer cells in a single platform, has profound effect on observed drug responsiveness and tumor progression that correlate well with in vivo and clinical outcomes. The method was tested on multiple types of cancer cells including primary cells and immortalized cell lines, and we determined our platform is suitable even for cells of poor organoid-forming ability. These new organoids also allow for direct orthotopic mouse implantation of cancer cells with unprecedented success.

cancer biology↗

E-cadherin promotes cell hyper-proliferation in breast cancer

The loss of the intercellular adhesion molecule E-cadherin is a hallmark of the epithelial- mesenchymal transition (EMT), during which tumor cells transition into an invasive phenotype. Accordingly, E-cadherin has long been considered a tumor suppressor gene. Using novel multi-compartment spheroids and multiple in vivo models, we show that E-cadherin promotes a hyper-proliferative phenotype in breast cancer cells via interaction with the transmembrane receptor EGFR. This interaction results in the activation of the MEK/ERK signaling pathway, leading to a significant increase in proliferation via the activation of transcription factors including c-Fos. Pharmacological inhibition of MEK activity in E-cadherin positive breast cancer cells significantly decreases both tumor growth and macro-metastasis in vivo. This work provides evidence for a novel role of E-cadherin in breast tumor growth and identifies a potential new target to treat hyper-proliferative E-cadherin-positive breast tumors.

cancer biology↗