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Published on: October 2, 2020
In vitro cancer models as an approach to identify targetable developmental phenotypes in cancer stem cells
1Blizard Institute, Queen Mary University of London, London, UK.
Abstract:
Cancer therapeutics are often highly toxic to the patient, and they often elicit rapid resistance in the tumour. Recent advances have suggested a potential new way in which we may improve on this, through two important concepts: (1) that multitudinous pathway alterations converge on a limited number of cancer cellular phenotypes, and (2) that these cancer cellular phenotypes depend on reactivation of developmental processes that are only minimally active in adult tissues. This provides a rationale for pursuing an approach of 'drugging the phenotype' focussed on targeting reactivated cellular processes from embryonic development. In this concepts paper, we cover these recent developments and their implications for the development of new cancer therapeutics that can avoid patient toxicity and acquired resistance. We then propose that in vitro tumour and developmental models can provide an experimental approach to identify and target the specific developmental processes at play, with a focus on the reactivation of developmental processes in the cancer stem cells that drive tumour progression and spread. Ultimately, the aim is to identify cellular processes that are specific to developmental phenotypes, are reactivated in cancer stem cells, and are essential to tumour progression. Therapeutically targeting these cellular processes could represent a new approach of 'drugging the phenotype' that treats the tumour whilst avoiding patient toxicity or the acquisition of therapeutic resistance.
Insights
Targeting reactivated embryonic developmental processes in cancer stem cells offers a new therapeutic strategy. This "drugging the phenotype" approach aims to treat tumors effectively while minimizing patient toxicity and acquired resistance.
Area of Science:
- Oncology
- Developmental Biology
- Cancer Therapeutics
Background:
- Cancer therapies often cause significant patient toxicity and rapid tumor resistance.
- Cancer cells exhibit specific phenotypes driven by reactivated embryonic developmental processes.
- Targeting these reactivated processes presents a novel therapeutic avenue.
Purpose of the Study:
- To explore the concept of
- drugging the phenotype
- for cancer treatment.
- To identify and target reactivated developmental processes in cancer stem cells.
- To develop novel therapeutics that reduce toxicity and overcome resistance.
Main Methods:
- Review of recent advances in cancer biology and developmental processes.
- Proposal of using in vitro tumor and developmental models for experimental validation.
- Focus on identifying specific developmental processes crucial for tumor progression.
Main Results:
- Convergence of multiple pathway alterations on limited cancer cellular phenotypes.
- Reactivation of embryonic developmental processes is key to these cancer phenotypes.
- Cancer stem cells play a critical role in tumor progression and spread through these processes.
Conclusions:
- Targeting reactivated developmental processes offers a promising strategy to "drug the phenotype".
- This approach could lead to cancer therapeutics with reduced toxicity and acquired resistance.
- Further research using in vitro models is crucial for identifying and validating these targets.
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