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Glycolysis-associated lncRNAs in cancer energy metabolism and immune microenvironment: a magic key
Xi Zhang1, Yunchao Zhang1, Qiong Liu1
1School of Medical and Life Sciences, Chengdu University of Traditional Chinese Medicine, Chengdu, Sichuan, China.
Abstract:
The dependence of tumor cells on glycolysis provides essential energy and raw materials for their survival and growth. Recent research findings have indicated that long chain non-coding RNAs (LncRNAs) have a key regulatory function in the tumor glycolytic pathway and offer new opportunities for cancer therapy. LncRNAs are analogous to a regulatory key during glycolysis. In this paper, we review the mechanisms of LncRNA in the tumor glycolytic pathway and their potential therapeutic strategies, including current alterations in cancer-related energy metabolism with lncRNA mediating the expression of key enzymes, lactate production and transport, and the mechanism of interaction with transcription factors, miRNAs, and other molecules. Studies targeting LncRNA-regulated tumor glycolytic pathways also offer the possibility of developing new therapeutic strategies. By regulating LncRNA expression, the metabolic pathways of tumor cells can be interfered with to inhibit tumor growth and metastasis, thus affecting the immune and drug resistance mechanisms of tumor cells. In addition, lncRNAs have the capacity to function as molecular markers and target therapies, thereby contributing novel strategies and approaches to the field of personalized cancer therapy and prognosis evaluation. In conclusion, LncRNA, as key molecules regulating the tumor glycolysis pathway, reveals a new mechanism of abnormal metabolism in cancer cells. Future research will more thoroughly investigate the specific mechanisms of LncRNA glycolysis regulation and develop corresponding therapeutic strategies, thereby fostering new optimism for the realization of precision medicine.
Insights
Long chain non-coding RNAs (LncRNAs) regulate tumor glycolysis, offering new cancer therapy targets. Targeting LncRNAs can inhibit tumor growth, metastasis, and drug resistance, advancing precision medicine.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Tumor cells rely on glycolysis for energy and growth.
- Long chain non-coding RNAs (LncRNAs) play a crucial regulatory role in tumor glycolysis.
- LncRNAs present novel therapeutic opportunities in cancer treatment.
Purpose of the Study:
- To review LncRNA mechanisms in tumor glycolysis.
- To explore LncRNA-mediated alterations in cancer energy metabolism.
- To discuss LncRNA-based therapeutic strategies and their potential.
Main Methods:
- Review of current literature on LncRNAs and tumor glycolysis.
- Analysis of LncRNA interactions with key enzymes, transcription factors, and miRNAs.
- Examination of LncRNA's role in lactate production and transport.
Main Results:
- LncRNAs mediate the expression of key glycolytic enzymes.
- LncRNAs influence lactate production, transport, and interactions with other molecules.
- Targeting LncRNAs can inhibit tumor growth, metastasis, and modulate immune/drug resistance.
Conclusions:
- LncRNAs are key regulators of tumor glycolysis, revealing abnormal cancer metabolism mechanisms.
- LncRNAs serve as potential molecular markers for personalized cancer therapy and prognosis.
- Further research into LncRNA glycolysis regulation will drive precision medicine advancements.
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