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Endothelial-Mesenchymal Transition in Tumor Microenvironment Promotes Neuroendocrine Differentiation of Prostate Cancer.

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Cancer science 📖 저널 OA 89.7% 2022: 1/1 OA 2023: 5/5 OA 2024: 13/13 OA 2025: 51/51 OA 2026: 77/94 OA 2022~2026 2025 Vol.116(10) p. 2712-2722
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Kageyama T, Kato M, Miyachi S, Bao X, Sekito S, Sugino Y, Higashi S, Sasaki T, Nishikawa K, Murakawa Y, Watanabe M, Inoue T

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Neuroendocrine prostate cancer (NEPC) is a highly aggressive and treatment-resistant subtype of castration-resistant prostate cancer (CRPC) that often emerges during progression under androgen-recepto

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↓ .bib ↓ .ris
APA Kageyama T, Kato M, et al. (2025). Endothelial-Mesenchymal Transition in Tumor Microenvironment Promotes Neuroendocrine Differentiation of Prostate Cancer.. Cancer science, 116(10), 2712-2722. https://doi.org/10.1111/cas.70144
MLA Kageyama T, et al.. "Endothelial-Mesenchymal Transition in Tumor Microenvironment Promotes Neuroendocrine Differentiation of Prostate Cancer.." Cancer science, vol. 116, no. 10, 2025, pp. 2712-2722.
PMID 40706636 ↗
DOI 10.1111/cas.70144

Abstract

Neuroendocrine prostate cancer (NEPC) is a highly aggressive and treatment-resistant subtype of castration-resistant prostate cancer (CRPC) that often emerges during progression under androgen-receptor (AR) pathway inhibition. While lineage plasticity in cancer cells has been recognized as a key mechanism of resistance, the role of the tumor microenvironment in driving this transition remains unclear. Among its cellular components, vascular endothelial cells can undergo endothelial-mesenchymal transition (EndoMT), a phenotypic shift associated with tumor progression and fibrosis. Here, we investigated whether EndoMT contributes to NEPC development. Human umbilical vein endothelial cells (HUVEC) were induced to undergo EndoMT using IL-1β and TGF-β2, and are hereafter referred to as EndoMTed HUVEC. EndoMTed HUVEC promoted neuroendocrine features and functional changes in LNCaP cells. Transcriptome analysis revealed marked upregulation of granulocyte-macrophage colony-stimulating factor (GM-CSF) in EndoMTed HUVEC. Neutralization of GM-CSF signaling using mavrilimumab, a monoclonal antibody targeting the GM-CSF receptor alpha (CSF2RA), and siRNA-mediated CSF2RA knockdown both suppressed the neuroendocrine phenotype and STAT3 signaling of LNCaP cells. Conversely, GM-CSF stimulation alone reproduced these changes. Enzalutamide-treated LNCaP cells secreted IL-1β and TGF-β2, which in turn triggered EndoMT, suggesting a reciprocal loop. These findings indicate that anti-androgen therapy may inadvertently promote NEPC through a paracrine loop involving tumor-derived cytokines and endothelial GM-CSF secretion, highlighting EndoMT as a microenvironmental driver of treatment resistance.

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