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The mTOR pathway in obesity driven gastrointestinal cancers: Potential targets and clinical trials
Cian O Malley1, Graham P Pidgeon1
1Department of Surgery, Institute of Molecular Medicine, Trinity College Dublin, Dublin, Ireland.
Abstract:
The mechanistic target of rapamycin (mTOR) is a crucial point of convergence between growth factor signalling, metabolism, nutrient status and cellular proliferation. The mTOR pathway is heavily implicated in the progression of many cancers and is emerging as an important driver of gastrointestinal (GI) malignancies. Due to its central role in adapting metabolism to environmental conditions, mTOR signalling is also believed to be critical in the development of obesity. Recent research has delineated that excessive nutrient intake can promote signalling through the mTOR pathway and possibly evoke changes to cellular metabolism that could accelerate obesity related cancers. Acting through its two effector complexes mTORC1 and mTORC2, mTOR dictates the transcription of genes important in glycolysis, lipogenesis, protein translation and synthesis and has recently been defined as a central mediator of the Warburg effect in cancer cells. Activation of the mTOR pathway is involved in both the pathogenesis of GI malignancies and development of resistance to conventional chemotherapy and radiotherapy. The use of mTOR inhibitors is a promising therapeutic option in many GI malignancies, with greatest clinical efficacy seen in combination regimens. Recent research has also provided insight into crosstalk between mTOR and other pathways which could potentially expand the list of therapeutic targets in the mTOR pathway. Here we review the available strategies for targeting the mTOR pathway in GI cancers. We discuss current clinical trials of both established and novel mTOR inhibitors, with particular focus on combinations of these drugs with conventional chemotherapy, radiotherapy and targeted therapies.
Insights
The mechanistic target of rapamycin (mTOR) pathway drives gastrointestinal cancers and obesity. Targeting mTOR with inhibitors, especially in combination therapies, shows promise for treating these conditions.
Area of Science:
- Oncology
- Metabolic Signaling
- Gastroenterology
Background:
- The mechanistic target of rapamycin (mTOR) pathway integrates signals for growth, metabolism, and nutrient status.
- mTOR signaling is implicated in cancer progression, particularly gastrointestinal (GI) malignancies, and obesity development.
- Excessive nutrient intake can activate mTOR, potentially accelerating obesity-related cancers.
Purpose of the Study:
- To review strategies for targeting the mTOR pathway in GI cancers.
- To discuss current clinical trials of mTOR inhibitors and their combinations.
- To explore the role of mTOR in GI malignancies and obesity.
Main Methods:
- Literature review of mTOR pathway signaling in GI cancers and obesity.
- Analysis of current clinical trials involving mTOR inhibitors.
- Examination of mTOR's role in cellular metabolism and the Warburg effect.
Main Results:
- mTOR pathway activation is central to GI cancer pathogenesis and chemo/radiotherapy resistance.
- mTOR inhibitors show therapeutic potential, particularly in combination regimens.
- Crosstalk between mTOR and other pathways offers expanded therapeutic targets.
Conclusions:
- Targeting the mTOR pathway is a promising therapeutic strategy for GI malignancies.
- Combination therapies involving mTOR inhibitors demonstrate significant clinical efficacy.
- Further research into mTOR pathway interactions may yield novel treatment approaches for GI cancers.
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