Modulating Glycolysis to Improve Cancer Therapy

Модуляция гликолиза для повышения эффективности терапии рака
Chaithanya Chelakkot, Vipin Shankar Chelakkot, Young Kee Shin, Kyoung Song
2023-01-30

Warburg effectcancer metabolismglycolysismetabolic reprogrammingtumor microenvironment
Cancer cells undergo metabolic reprogramming and switch to a 'glycolysis-dominant' metabolic profile to promote their survival and meet their requirements for energy and macromolecules. This phenomenon, also known as the 'Warburg effect,' provides a survival advantage to the cancer cells and make the tumor environment more pro-cancerous. Additionally, the increased glycolytic dependence also promotes chemo/radio resistance. A similar switch to a glycolytic metabolic profile is also shown by the immune cells in the tumor microenvironment, inducing a competition between the cancer cells and the tumor-infiltrating cells over nutrients. Several recent studies have shown that targeting the enhanced glycolysis in cancer cells is a promising strategy to make them more susceptible to treatment with other conventional treatment modalities, including chemotherapy, radiotherapy, hormonal therapy, immunotherapy, and photodynamic therapy. Although several targeting strategies have been developed and several of them are in different stages of pre-clinical and clinical evaluation, there is still a lack of effective strategies to specifically target cancer cell glycolysis to improve treatment efficacy. Herein, we have reviewed our current understanding of the role of metabolic reprogramming in cancer cells and how targeting this phenomenon could be a potential strategy to improve the efficacy of conventional cancer therapy.
1
Cancer cells adopt a glycolysis-dominant metabolic profile, known as the Warburg effect, to support survival and energy and macromolecule production.
2
Despite multiple preclinical and clinical strategies, effective approaches for specifically targeting cancer-cell glycolysis remain lacking.
3
Enhanced glycolytic dependence contributes to resistance against chemotherapy and radiotherapy and creates a more tumor-promoting microenvironment.
4
Targeting cancer-cell glycolysis may sensitize tumors to chemotherapy, radiotherapy, hormonal therapy, immunotherapy, and photodynamic therapy.
5
Tumor-infiltrating immune cells also increase glycolysis, producing nutrient competition with cancer cells within the tumor microenvironment.

glycolysis-dominant metabolic reprogramming in cancer cells and tumor-infiltrating immune cells within the tumor microenvironment

the role of enhanced glycolysis in cancer-cell survival, treatment resistance, and the efficacy of conventional cancer therapies, and the effects of targeting it

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Publication Date
2023-01-30
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Authors
Chaithanya Chelakkot
Vipin Shankar Chelakkot
Young Kee Shin
Kyoung Song
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