1.Iron metabolism, ferroptosis, and lncRNA in cancer: knowns and unknowns.
Lei QU ; Xinyu HE ; Qian TANG ; Xiao FAN ; Jian LIU ; Aifu LIN
Journal of Zhejiang University. Science. B 2022;23(10):844-862
Cancer cells undergo substantial metabolic alterations to sustain increased energy supply and uncontrolled proliferation. As an essential trace element, iron is vital for many biological processes. Evidence has revealed that cancer cells deploy various mechanisms to elevate the cellular iron concentration to accelerate proliferation. Ferroptosis, a form of cell death caused by iron-catalyzed excessive peroxidation of polyunsaturated fatty acids (PUFAs), is a promising therapeutic target for therapy-resistant cancers. Previous studies have reported that long noncoding RNA (lncRNA) is a group of critical regulators involved in modulating cell metabolism, proliferation, apoptosis, and ferroptosis. In this review, we summarize the associations among iron metabolism, ferroptosis, and ferroptosis-related lncRNA in tumorigenesis. This information will help deepen understanding of the role of lncRNA in iron metabolism and raise the possibility of targeting lncRNA and ferroptosis in cancer combination therapy.
Fatty Acids, Unsaturated
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Ferroptosis
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Humans
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Iron/therapeutic use*
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Neoplasms/metabolism*
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RNA, Long Noncoding/genetics*
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Trace Elements/therapeutic use*
2.2-Hexyl-4-Pentylenic Acid (HPTA) Stimulates the Radiotherapy-induced Abscopal Effect on Distal Tumor through Polarization of Tumor-associated Macrophages.
Wen Hua DUAN ; Li Ya JIN ; Zu Chao CAI ; David LIM ; Zhi Hui FENG
Biomedical and Environmental Sciences 2021;34(9):693-704
Objective:
The aim of this study was to explore the effects of 2-hexyl-4-pentylenic acid (HPTA) in combination with radiotherapy (RT) on distant unirradiated breast tumors.
Methods:
Using a rat model of chemical carcinogen (7,12-dimethylbenz[a]anthracene,DMBA)-induced breast cancer, tumor volume was monitored and treatment response was evaluated by performing HE staining, immunohistochemistry, immunofluorescence, qRT-PCR, and western blot analyses.
Results:
The results demonstrated that HPTA in combination with RT significantly delayed the growth of distant, unirradiated breast tumors. The mechanism of action included tumor-associated macrophage (TAM) infiltration into distant tumor tissues, M1 polarization, and inhibition of tumor angiogenesis by IFN-γ.
Conclusion
The results suggest that the combination of HPTA with RT has an abscopal effect on distant tumors
Animals
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Antineoplastic Agents/therapeutic use*
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Cell Proliferation/radiation effects*
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Combined Modality Therapy
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Cytokines/immunology*
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Fatty Acids, Unsaturated/therapeutic use*
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Female
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Mammary Neoplasms, Experimental/radiotherapy*
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Rats
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Tumor-Associated Macrophages/radiation effects*