Xenograft transplantation of human malignant astrocytoma cells into immunodeficient rats: an experimental model of glioblastoma

Authors

  • Flávio Key Miura Universidade de São Paulo; Faculdade de Medicina; Laboratory of Molecular and Cellular Biology
  • Maria Jose Ferreira Alves Universidade de São Paulo; Faculdade de Medicina; Laboratory of Molecular and Cellular Biology
  • Mussya Cisotto Rocha Universidade de São Paulo; Faculdade de Medicina; Laboratory of Molecular and Cellular Biology
  • Roseli da Silva Universidade de São Paulo; Faculdade de Medicina; Laboratory of Molecular and Cellular Biology
  • Sueli Mieko Oba-Shinjo Universidade de São Paulo; Faculdade de Medicina; Laboratory of Molecular and Cellular Biology
  • Suely Kazue Nagahashi Marie Universidade de São Paulo; Faculdade de Medicina; Laboratory of Molecular and Cellular Biology

DOI:

https://doi.org/10.1590/S1807-59322010000300011

Keywords:

Brain tumor, Experimental model, Athymic Rowett rats, U87MG cells

Abstract

INTRODUCTION: Astrocytic gliomas are the most common intracranial central nervous system neoplasias, accounting for about 60% of all primary central nervous system tumors. Despite advances in the treatment of gliomas, no effective therapeutic approach is yet available; hence, the search for a more realistic model to generate more effective therapies is essential. OBJECTIVE: To develop an experimental malignant astrocytoma model with the characteristics of the human tumor. METHOD: Primary cells from subcutaneous xenograft tumors produced with malignant astrocytoma U87MG cells were inoculated intracerebrally by stereotaxis into immunosuppressed (athymic) Rowett rats. RESULTS: All four injected animals developed non-infiltrative tumors, although other glioblastoma characteristics, such as necrosis, pseudopalisading cells and intense mitotic activity, were observed. CONCLUSION: A malignant astrocytoma intracerebral xenograft model with poorly invasive behavior was achieved in athymic Rowett rats. Tumor invasiveness in an experimental animal model may depend on a combination of several factors, including the cell line used to induce tumor formation, the rat strains and the status of the animal's immune system.

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Published

2010-01-01

Issue

Section

Basic Research

How to Cite

Xenograft transplantation of human malignant astrocytoma cells into immunodeficient rats: an experimental model of glioblastoma . (2010). Clinics, 65(3), 305-309. https://doi.org/10.1590/S1807-59322010000300011