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Updated: Aug 12, 2025

Induction and Diagnosis of Tumors in Drosophila Imaginal Disc Epithelia
Published on: July 25, 2017
Apoptosis inhibition restrains primary malignant traits in different Drosophila cancer models
Manuela Sollazzo1, Simona Paglia1, Simone Di Giacomo1
1CanceЯEvolutionLab, Department of Pharmacy and Biotechnology, University of Bologna, Bologna, Italy.
Abstract:
Tumor cells exploit multiple mechanisms to evade apoptosis, hence the strategies aimed at reactivating cell death in cancer. However, recent studies are revealing that dying cells play remarkable pro-oncogenic roles. Among the mechanisms promoting cell death, cell competition, elicited by disparities in MYC activity in confronting cells, plays the primary role of assuring tissue robustness during development from Drosophila to mammals: cells with high MYC levels (winners) overproliferate while killing suboptimal neighbors (losers), whose death is essential to process completion. This mechanism is coopted by tumor cells in cancer initiation, where host cells succumb to high-MYC-expressing precancerous neighbors. Also in this case, inhibition of cell death restrains aberrant cell competition and rescues tissue structure. Inhibition of apoptosis may thus emerge as a good strategy to counteract cancer progression in competitive contexts; of note, we recently found a positive correlation between cell death amount at the tumor/stroma interface and MYC levels in human cancers. Here we used Drosophila to investigate the functional role of competition-dependent apoptosis in advanced cancers, observing dramatic changes in mass dimensions and composition following a boost in cell competition, rescued by apoptosis inhibition. This suggests the role of competition-dependent apoptosis be not confined to the early stages of tumorigenesis. We also show that apoptosis inhibition, beside restricting cancer mass, is sufficient to rescue tissue architecture and counteract cell migration in various cancer contexts, suggesting that a strong activation of the apoptotic pathways intensifies cancer burden by affecting distinct phenotypic traits at different stages of the disease.
Insights
In cancer, dying cells can promote tumor growth. Inhibiting apoptosis, or programmed cell death, may counteract cancer progression by restraining cell competition and preserving tissue structure.
Area of Science:
- Developmental Biology
- Cancer Biology
- Cell Death Mechanisms
Background:
- Tumor cells evade apoptosis, a programmed cell death process, to survive and proliferate.
- Dying cells can paradoxically promote cancer growth through various mechanisms.
- Cell competition, driven by MYC activity disparities, ensures tissue integrity during development by eliminating suboptimal cells.
Purpose of the Study:
- To investigate the role of competition-dependent apoptosis in advanced cancers.
- To determine if inhibiting apoptosis can counteract cancer progression in competitive environments.
- To explore the impact of apoptosis inhibition on tumor mass, tissue architecture, and cell migration.
Main Methods:
- Utilized *Drosophila* as a model organism to study cell competition and apoptosis.
- Manipulated cell competition levels to observe effects on tumor development.
- Administered apoptosis inhibitors to assess their impact on cancer progression and tissue integrity.
Main Results:
- Boosting cell competition in advanced cancers led to significant changes in tumor mass and composition.
- Apoptosis inhibition rescued these changes, reducing tumor burden and restoring tissue architecture.
- Inhibition of apoptosis also counteracted cell migration in various cancer contexts.
Conclusions:
- Competition-dependent apoptosis plays a role beyond early tumorigenesis, contributing to advanced cancer progression.
- Inhibiting apoptosis is a promising strategy to restrict cancer mass, preserve tissue structure, and mitigate cell migration.
- Strong activation of apoptotic pathways can intensify cancer burden by influencing distinct phenotypic traits at various disease stages.
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