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The Cells and Extracellular Matrix of Human Amniotic Membrane Hinder the Growth and Invasive Potential of Bladder Urothelial Cancer Cells.
Ramuta, Taja Zeleznik; Jerman, Urska Dragin; Tratnjek, Larisa; Janev, Aleksandar; Magatti, Marta; Vertua, Elsa; Bonassi Signoroni, Patrizia; Silini, Antonietta Rosa; Parolini, Ornella; Kreft, Mateja Erdani.
Afiliación
  • Ramuta TZ; Institute of Cell Biology, Faculty of Medicine, University of Ljubljana, Ljubljana, Slovenia.
  • Jerman UD; Institute of Cell Biology, Faculty of Medicine, University of Ljubljana, Ljubljana, Slovenia.
  • Tratnjek L; Institute of Cell Biology, Faculty of Medicine, University of Ljubljana, Ljubljana, Slovenia.
  • Janev A; Institute of Cell Biology, Faculty of Medicine, University of Ljubljana, Ljubljana, Slovenia.
  • Magatti M; Centro di Ricerca E. Menni, Fondazione Poliambulanza Istituto Ospedaliero, Brescia, Italy.
  • Vertua E; Centro di Ricerca E. Menni, Fondazione Poliambulanza Istituto Ospedaliero, Brescia, Italy.
  • Bonassi Signoroni P; Centro di Ricerca E. Menni, Fondazione Poliambulanza Istituto Ospedaliero, Brescia, Italy.
  • Silini AR; Centro di Ricerca E. Menni, Fondazione Poliambulanza Istituto Ospedaliero, Brescia, Italy.
  • Parolini O; Department of Life Science and Public Health, Università Cattolica del Sacro Cuore, Rome, Italy.
  • Kreft ME; Fondazione Policlinico Universitario "Agostino Gemelli" IRCCS, Rome, Italy.
Front Bioeng Biotechnol ; 8: 554530, 2020.
Article en En | MEDLINE | ID: mdl-33240862
ABSTRACT
Bladder cancer is one of the most common cancers among men in industrialized countries and on the global level incidence and mortality rates are increasing. In spite of progress in surgical treatment and chemotherapy, the prognosis remains poor for patients with muscle-invasive bladder cancer. Therefore, there is a great need for the development of novel therapeutic approaches. The human amniotic membrane (hAM) is a multi-layered membrane that comprises the innermost part of the placenta. It has unique properties that make it suitable for clinical use, such as the ability to promote wound healing and decrease scarring, low immunogenicity, and immunomodulatory, antimicrobial and anticancer properties. This study aimed to investigate the effect of (i) hAM-derived cells and (ii) hAM scaffolds on the growth dynamics, proliferation rate, and invasive potential of muscle-invasive bladder cancer T24 cells. Our results show that 24 and 48 h of co-culturing T24 cells with hAM-derived cells (at 11 and 14 ratios) diminished the proliferation rate of T24 cells. Furthermore, when seeded on hAM scaffolds, namely (1) epithelium of hAM (e-hAM), (2) basal lamina of hAM (denuded; d-hAM), and (3) stroma of hAM (s-hAM), the growth dynamic of T24 cells was altered and proliferation was reduced, even more so by the e-hAM scaffolds. Importantly, despite their muscle-invasive potential, the T24 cells did not disrupt the basal lamina of hAM scaffolds. Furthermore, we observed a decrease in the expression of epithelial-mesenchymal transition (EMT) markers N-cadherin, Snail and Slug in T24 cells grown on hAM scaffolds and individual T24 cells even expressed epithelial markers E-cadherin and occludin. Our study brings new knowledge on basic mechanisms of hAM affecting bladder carcinogenesis and the results serve as a good foundation for further research into the potential of hAM-derived cells and the hAM extracellular matrix to serve as a novel bladder cancer treatment.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Idioma: En Revista: Front Bioeng Biotechnol Año: 2020 Tipo del documento: Article País de afiliación: Eslovenia

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Idioma: En Revista: Front Bioeng Biotechnol Año: 2020 Tipo del documento: Article País de afiliación: Eslovenia