Menadione reduces CDC25B expression and promotes tumor shrinkage in gastric cancer

Author:

Bona Amanda Braga1ORCID,Calcagno Danielle Queiroz2,Ribeiro Helem Ferreira3,Muniz José Augusto Pereira Carneiro4,Pinto Giovanny Rebouças5,Rocha Carlos Alberto Machado6,Lacreta Junior Antonio Carlos Cunha7,de Assumpção Paulo Pimentel2,Herranz Juan Antonio Rey8,Burbano Rommel Rodriguez9

Affiliation:

1. Oncology Research Laboratory, Ophir Loyola Hospital, Governador Magalhães Barata Avenue, 992 Belém, PA, 66063-240, Brazil Biological Sciences Institute, Federal University of Pará, Belém, Brazil

2. Oncology Research Nucleus, University Hospital João de Barros Barreto, Federal University of Pará, Belém, Brazil

3. Center of Biological and Health Sciences, Department of Biomedicine, University of Amazon, Belém, Brazil

4. National Center of Primates, Health Ministry, Ananindeua, Brazil

5. Department of Biomedicine, Federal University of Piauí, Parnaíba, Brazil

6. Federal Institute of Education, Science and Technology

7. Department of Veterinary Medicine, Federal University of Lavras, Lavras, Brazil

8. Molecular Oncogenetics Laboratory, Research Unit, Hospital Universitario La Paz, Madrid, Spain

9. Laboratory of Molecular Biology, Ophir Loyola Hospital, Belém, Brazil

Abstract

Background: Gastric cancer is one of the most incident types of cancer worldwide and presents high mortality rates and poor prognosis. MYC oncogene overexpression is a key event in gastric carcinogenesis and it is known that its protein positively regulates CDC25B expression which, in turn, plays an essential role in the cell division cycle progression. Menadione is a synthetic form of vitamin K that acts as a specific inhibitor of the CDC25 family of phosphatases. Methods: To better understand the menadione mechanism of action in gastric cancer, we evaluated its molecular and cellular effects in cell lines and in Sapajus apella, nonhuman primates from the new world which had gastric carcinogenesis induced by N-Methyl-N-nitrosourea. We tested CDC25B expression by western blot and RT-qPCR. In-vitro assays include proliferation, migration, invasion and flow cytometry to analyze cell cycle arrest. In in-vivo experiments, in addition to the expression analyses, we followed the preneoplastic lesions and the tumor progression by ultrasonography, endoscopy, biopsies, histopathology and immunohistochemistry. Results: Our tests demonstrated menadione reducing CDC25B expression in vivo and in vitro. It was able to reduce migration, invasion and proliferation rates, and induce cell cycle arrest in gastric cancer cell lines. Moreover, our in-vivo experiments demonstrated menadione inhibiting tumor development and progression. Conclusions: We suggest this compound may be an important ally of chemotherapeutics in the treatment of gastric cancer. In addition, CDC25B has proven to be an effective target for investigation and development of new therapeutic strategies for this malignancy.

Funder

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Publisher

SAGE Publications

Subject

Gastroenterology

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