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Updated: Feb 13, 2026

Intracranial Orthotopic Allografting of Medulloblastoma Cells in Immunocompromised Mice
Published on: October 3, 2010
Tis21-gene therapy inhibits medulloblastoma growth in a murine allograft model
Dario Presutti1, Manuela Ceccarelli2, Laura Micheli2
1Institute of Cell Biology and Neurobiology, National Research Council (IBCN-CNR), Monterotondo, Rome, Italy.
Abstract:
Medulloblastoma (MB), the tumor of the cerebellum, is the most frequent brain cancer in childhood and a major cause of pediatric mortality. Based on gene profiling, four MB subgroups have been identified, i.e., Wnt or Sonic Hedgehog (Shh) types, and subgroup 3 or 4. The Shh-type MB has been shown to arise from the cerebellar precursors of granule neurons (GCPs), where a hyperactivation of the Shh pathway leads to their neoplastic transformation. We have previously shown that the gene Tis21 (PC3/Btg2) inhibits the proliferation and promotes the differentiation and migration of GCPs. Moreover, the overexpression or the deletion of Tis21 in Patched1 heterozygous mice, a model of spontaneous Shh-type MB, highly reduces or increases, respectively, the frequency of MB. Here we tested whether Tis21 can inhibit MB allografts. Athymic nude mice were subcutaneously grafted with MB cells explanted from Patched1 heterozygous mice. MB allografts were then injected with adeno-associated viruses either carrying Tis21 (AAV-Tis21) or empty (AAV-CBA). We observed that the treatment with AAV-Tis21 significantly inhibited the growth of tumor nodules, as judged by their volume, and reduced the number of proliferating tumor cells (labeled with Ki67 or BrdU), relative to AAV-CBA-treated control mice. In parallel, AAV-Tis21 increased significantly tumor cells labeled with early and late neural differentiation markers. Overall the results suggest that Tis21-gene therapy slows down MB tumor growth through inhibition of proliferation and enhancement of neural differentiation. These results validate Tis21 as a relevant target for MB therapy.
Insights
Tis21 gene therapy effectively slows medulloblastoma growth by reducing tumor cell proliferation and enhancing neural differentiation. This approach shows promise for treating this common childhood brain cancer.
Area of Science:
- Neuro-oncology
- Pediatric oncology
- Cancer genetics
Background:
- Medulloblastoma (MB) is the most common pediatric brain tumor and a leading cause of cancer-related death in children.
- MB is classified into four subgroups, including Wnt, Sonic Hedgehog (Shh), subgroup 3, and subgroup 4.
- Shh-type MB originates from cerebellar granule neuron precursors (GCPs) with hyperactivated Shh signaling.
Purpose of the Study:
- To investigate the therapeutic potential of Tis21 gene therapy against medulloblastoma allografts.
- To evaluate the effect of Tis21 on tumor growth, proliferation, and differentiation in a preclinical MB model.
Main Methods:
- Medulloblastoma allografts were established in athymic nude mice using MB cells from Patched1 heterozygous mice.
- Tumors were treated with adeno-associated viruses carrying Tis21 (AAV-Tis21) or a control (AAV-CBA).
- Tumor growth, proliferation (Ki67, BrdU), and neural differentiation markers were assessed.
Main Results:
- AAV-Tis21 treatment significantly inhibited tumor nodule growth and reduced the number of proliferating cells compared to controls.
- Tis21 gene therapy led to a significant increase in tumor cells expressing early and late neural differentiation markers.
- Tis21 demonstrated an inhibitory effect on tumor cell proliferation and promoted differentiation.
Conclusions:
- Tis21 gene therapy is a promising strategy for slowing medulloblastoma tumor growth.
- Inhibition of proliferation and enhancement of neural differentiation are key mechanisms of Tis21's anti-tumor effect.
- Tis21 represents a relevant therapeutic target for medulloblastoma treatment.
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