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Updated: Jun 22, 2025

Molecular and Immunologic Techniques in a Genetically Engineered Mouse Model of Gastrointestinal Stromal Tumor
Published on: May 2, 2022
Glycolysis in gastrointestinal stromal tumor: a brief overview
Takafumi Shima1, Kohei Taniguchi2, Yosuke Inomata1
1Department of General and Gastroenterological Surgery, Osaka Medical and Pharmaceutical University, Daigaku-machi, Takatsuki, Osaka 569-8686, Japan.
Abstract:
Gastrointestinal stromal tumor (GIST) is the most prevalent mesenchymal tumor of the digestive tract. Its growth is primarily influenced by mutations in KIT or PDGFRA. Surgery is the primary treatment option for GIST; however, KIT inhibitors, such as imatinib, are used for inoperable cases. Resistance to imatinib is an upcoming challenge, especially because the effectiveness of alternative drugs is limited. Enhancement of the glycolysis pathway in cancer cells has been identified as a key feature in cancer. This unique metabolic activity has implications on tumor growth, prognosis, and resistance to therapy, even in GIST. Members of the glucose transporter (GLUT) family (particularly GLUT-1) play a significant role in GIST progression and response to treatment. Diagnostic imaging using 18F-fluorodeoxyglucose positron emission tomography/computed tomography, which enables visualization of glucose metabolism, can aid in GIST diagnosis and risk assessment. The interplay between glycolysis and GIST can lead to the development of various therapeutic strategies, especially those involving glycolysis-related molecules, such as hexokinase and lactate dehydrogenase. However, further research is required to understand the full spectrum of glycolysis in GIST and its therapeutic potential. Herein, we present an exhaustive overview and analysis of the role of glycolysis in GIST, especially as a therapeutic target.
Insights
Gastrointestinal stromal tumors (GIST) exhibit enhanced glycolysis, impacting growth and imatinib resistance. Targeting this metabolic pathway offers potential new therapeutic strategies for GIST treatment.
Area of Science:
- Oncology
- Cancer Metabolism
Background:
- Gastrointestinal stromal tumor (GIST) is the most common mesenchymal tumor of the digestive tract.
- KIT or PDGFRA mutations drive GIST growth, with surgery as the primary treatment.
- Imatinib resistance presents a significant challenge in treating inoperable GIST.
Purpose of the Study:
- To provide an exhaustive overview and analysis of glycolysis's role in GIST.
- To explore glycolysis as a potential therapeutic target for GIST.
Main Methods:
- Review of scientific literature on GIST, cancer metabolism, and glycolysis.
- Analysis of the role of glucose transporters (GLUTs), hexokinase, and lactate dehydrogenase in GIST.
- Discussion of diagnostic imaging techniques like 18F-fluorodeoxyglucose positron emission tomography/computed tomography (FDG-PET/CT) for GIST.
Main Results:
- Enhanced glycolysis is a key feature in GIST, influencing tumor growth, prognosis, and therapeutic resistance.
- Glucose transporter 1 (GLUT-1) plays a crucial role in GIST progression and treatment response.
- Glycolysis-related molecules are implicated in GIST, suggesting potential therapeutic avenues.
Conclusions:
- The interplay between glycolysis and GIST offers opportunities for novel therapeutic strategies.
- Targeting glycolysis-related molecules may overcome imatinib resistance in GIST.
- Further research is needed to fully elucidate the therapeutic potential of targeting glycolysis in GIST.

