Literature DB >> 31277777

Transcriptional Reprogramming and Inhibition of Tumor-propagating Stem-like Cells by EC-8042 in ERG-positive Prostate Cancer.

Dheeraj Shinde1, Domenico Albino1, Marita Zoma1, Azzurra Mutti1, Sarah N Mapelli1, Gianluca Civenni1, Aleksandra Kokanovic1, Jessica Merulla1, Jhudit Perez-Escuredo2, Paula Costales2, Francisco Morìs2, Carlo V Catapano1, Giuseppina M Carbone3.   

Abstract

BACKGROUND: The TMPRSS2-ERG gene fusion is the most frequent genetic rearrangement in prostate cancers and results in broad transcriptional reprogramming and major phenotypic changes. Interaction and cooperation of ERG and SP1 may be instrumental in sustaining the tumorigenic and metastatic phenotype and could represent a potential vulnerability in ERG fusion-positive tumors.
OBJECTIVE: To test the activity of EC-8042, a compound able to block SP1, in cellular and mouse models of ERG-positive prostate cancer. DESIGN, SETTING, AND PARTICIPANTS: We evaluated the activity of EC-8042 in cell cultures and ERG/PTEN transgenic/knockout mice that provide reliable models for testing novel therapeutics in this specific disease context. Using a new protocol to generate tumor spheroids from ERG/PTEN mice, we also examined the effects of EC-8042 on tumor-propagating stem-like cancer cells with high self-renewal and tumorigenic capabilities. OUTCOME MEASUREMENTS AND STATISTICAL ANALYSIS: The efficacy of EC-8042 was determined by measuring the proliferative capacity and target gene expression in cell cultures, invasive and metastatic capabilities in chick chorioallantoic membrane assays, and tumor development in mice. Significance was determined using statistical test. RESULTS AND LIMITATIONS: EC-8042 blocked transcription of ERG-regulated genes and reverted the invasive and metastatic phenotype of VCaP cells. EC-8042 blocked the expansion of stem-like tumor cells in tumor spheroids from VCaP cells and mouse-derived tumors. In ERG/PTEN mice, systemic treatment with EC-8042 inhibited ERG-regulated gene transcription, tumor progression, and tumor-propagating stem-like tumor cells.
CONCLUSIONS: Our data support clinical testing of EC-8042 for the treatment of ERG-positive prostate cancer in precision medicine approaches. PATIENT
SUMMARY: In this study, EC-8042, a novel compound with a favorable pharmacological and toxicological profile, exhibited relevant activity in cell cultures and in vivo in a genetically engineered mouse model that closely recapitulates the features of clinically aggressive ERG-positive prostate cancer. Our data indicate that further evaluation of EC-8042 in clinical trials is warranted.
Copyright © 2018 European Association of Urology. Published by Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Cancer stem cells; EC-8042; ERG; Mithramycin; Mouse model; Precision medicine; Prostate cancer; SP1; TMPRSS2-ERG

Mesh:

Substances:

Year:  2018        PMID: 31277777     DOI: 10.1016/j.euo.2018.08.024

Source DB:  PubMed          Journal:  Eur Urol Oncol        ISSN: 2588-9311


  3 in total

1.  Androgen-deprivation therapies for prostate cancer and risk of infection by SARS-CoV-2: a population-based study (N = 4532).

Authors:  M Montopoli; S Zumerle; R Vettor; M Rugge; M Zorzi; C V Catapano; G M Carbone; A Cavalli; F Pagano; E Ragazzi; T Prayer-Galetti; A Alimonti
Journal:  Ann Oncol       Date:  2020-05-06       Impact factor: 32.976

2.  Circulating extracellular vesicles release oncogenic miR-424 in experimental models and patients with aggressive prostate cancer.

Authors:  Domenico Albino; Martina Falcione; Valeria Uboldi; Dada Oluwaseyi Temilola; Giada Sandrini; Jessica Merulla; Gianluca Civenni; Aleksandra Kokanovic; Alessandra Stürchler; Dheeraj Shinde; Mariangela Garofalo; Ricardo Pereira Mestre; Vera Constâncio; Martha Wium; Jacopo Burrello; Nicolò Baranzini; Annalisa Grimaldi; Jean-Philippe Theurillat; Daniela Bossi; Lucio Barile; Rui M Henrique; Carmen Jeronimo; Luiz Fernando Zerbini; Carlo V Catapano; Giuseppina M Carbone
Journal:  Commun Biol       Date:  2021-01-26

3.  Mithramycin delivery systems to develop effective therapies in sarcomas.

Authors:  Óscar Estupiñán; Enrique Niza; Iván Bravo; Verónica Rey; Juan Tornín; Borja Gallego; Pilar Clemente-Casares; Francisco Moris; Alberto Ocaña; Verónica Blanco-Lorenzo; Mar Rodríguez-Santamaría; Aitana Vallina-Álvarez; M Victoria González; Aida Rodríguez; Daniel Hermida-Merino; Carlos Alonso-Moreno; René Rodríguez
Journal:  J Nanobiotechnology       Date:  2021-09-06       Impact factor: 10.435

  3 in total

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