1.CCDC97 influences the immune microenvironment and biological functions in HCC.
Lingling MO ; Xinyue WU ; Xiaohua PENG ; Chuang CHEN
Chinese Journal of Cellular and Molecular Immunology 2025;41(1):23-30
Objective To explore the clinical and immunological significance of CCDC97 in hepatocellular carcinoma (HCC). Methods Clinical data and RNA sequencing results from HCC patients were retrieved from TCGA and ICGC databases. Bioinformatics analysis and in vitro experiments were performed to investigate the role of CCDC97 in HCC. Results The expression level of CCDC97 was elevated in HCC patients and HCC cells, closely associated with pathological features and prognosis. CCDC97 was identified as a novel prognostic biomarker. It is linked to the spliceosome pathway, which is significantly active in tumors and potentially promotes carcinogenesis. CCDC97 is also highly expressed in various immune cells and is associated with microenvironment. Furthermore, knocking down CCDC97 in vitro suppressed cell migration, invasion, and proliferation. Conclusion CCDC97 plays a critical role in HCC progression and the immune microenvironment, making it a potential target for prognosis and therapeutic intervention.
Humans
;
Carcinoma, Hepatocellular/metabolism*
;
Liver Neoplasms/metabolism*
;
Tumor Microenvironment/genetics*
;
Cell Movement/genetics*
;
Cell Proliferation
;
Prognosis
;
Cell Line, Tumor
;
Gene Expression Regulation, Neoplastic
;
Biomarkers, Tumor/genetics*
;
Male
2.Research progress on T cell exhaustion in immunotherapy for patients with hepatocellular carcinoma.
Yang WU ; Tian LI ; Runbing ZHANG ; Yani ZHANG ; Lingling ZHU ; Tingting SHI ; Shunna WANG ; Meixia YANG ; Xiaohui YU ; Jiucong ZHANG
Chinese Journal of Cellular and Molecular Immunology 2025;41(3):271-277
Hepatocellular carcinoma (HCC) is one of the fastest growing cancers in the world, ranking fourth among the causes of cancer-induced death in the world. At present, the field of HCC treatment is developing rapidly, and immunotherapy has been recognized as a promising treatment method, in which T cells play a key role in HCC immunotherapy. However, in the case of virus infection or in tumor microenvironment (TME), T cells will be continuously stimulated by antigens and then fall into the state of T cell exhaustion (Tex). This state will not only reduce the immunity of patients but also lead to poor efficacy of immunotherapy. Therefore, to deeply analyze the mechanism of Tex and to explore effective strategies to reverse Tex is the key point in the immunotherapy for HCC. This review aims to summarize the mechanism of Tex in HCC patients, and the current situation and shortcomings of drug research and development to reverse Tex at this stage, in order to provide theoretical basis for the optimization of immunotherapy regimen for HCC patients.
Humans
;
Carcinoma, Hepatocellular/therapy*
;
Liver Neoplasms/therapy*
;
Immunotherapy/methods*
;
T-Lymphocytes/immunology*
;
Tumor Microenvironment/immunology*
;
Animals
;
T-Cell Exhaustion
3.The mechanism of miR-148a inhibiting the proliferation of liver cancer cells by affecting macrophage M2 polarization through Wnt3a/β-catenin.
Guangyu HAN ; Naipeng ZHANG ; Xiufen LAN ; Lili SUN ; Huixin ZHANG
Chinese Journal of Cellular and Molecular Immunology 2025;41(9):790-797
Objective To investigate the mechanism by which miR-148a affects M2 macrophage polarization and inhibits liver cancer cell proliferation through Wnt3a/β-catenin. Methods The mRNA expression levels of miR-148a, CD206 and interleukin-10 (IL-10) in tumor tissues and adjacent non-tumor liver tissues of 84 patients with liver cancer were detected by real-time quantitative PCR. THP-1 cells were separated into blank group (conventional culture), M2 group (200 nmol/L phorbol ester, 20 ng/mL IL-4, 20 ng/mL IL-13), M2 combined with negative control (miR-NC) group (transfected with miR-NC on the basis of M2 group), M2 combined with miR-148a mimics (transfected with miR-148a mimics on the basis of M2 group) group, M2 combined with miR-148a mimics combined with Wnt3a (treated with 100 μg/L Wnt3a on top of M2 combined with miR-148a mimics group) group. The proliferation of HuH7 cells was detected by CCK-8 and EdU methods. Apoptosis and M2 macrophage marker CD206 was detected by flow cytometry. The level of IL-10 in cell supernatant was detected by chemiluminescence method; The mRNA levels of miR-148a, CD206 and IL-10 were detected by real-time quantitative PCR. The protein levels of Wnt3a and β-catenin were detected by Western blot. Results The expressions of CD206, IL-10 mRNA, Wnt3a and β-catenin in tumor tissue were higher than those in non-tumor liver tissues, and the miR-148a level was decreased. The mRNA expression of M2 macrophage markers CD206 and IL-10 were significantly increased. Compared with the blank group, the OD450 value, EdU positive rate, the mRNA expressions of CD206 and IL-10, the level of IL-10 in the supernatant, and the expressions of Wnt3a and β-catenin were increased in M2 group, while the apoptotic rate and miR-148a level were decreased. Compared with M2 group and M2 combined with miR-NC group, the OD450 value, EdU positive rate, the mRNA expressions of CD206 and IL-10, the level of IL-10 in the supernatant, and the expressions of Wnt3a and β-catenin were decreased in M2 combined with miR-148a mimics group, while the apoptotic rate and miR-148a level were increased. Wnt3a reversed the inhibitory effect of miR-148a overexpression on the proliferation of liver cancer cells. Conclusion Overexpression of miR-148a inhibits M2 polarization of macrophages and prevents the proliferation of liver cancer cells, which may be related to the inhibition of the Wnt3a/β-catenin pathway.
Humans
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MicroRNAs/metabolism*
;
Wnt3A Protein/metabolism*
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Liver Neoplasms/metabolism*
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Cell Proliferation/genetics*
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beta Catenin/genetics*
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Macrophages/metabolism*
;
Interleukin-10/metabolism*
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Apoptosis/genetics*
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Cell Line, Tumor
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Female
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Male
;
Mannose Receptor
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Lectins, C-Type/metabolism*
;
Mannose-Binding Lectins/metabolism*
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Middle Aged
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Receptors, Cell Surface/metabolism*
4.Preparation and identification of a novel microparticle-loaded DC vaccine against hepatocellular carcinoma.
Zhao ZHAN ; Xuezheng LIU ; Doudou DONG ; Dingyu CHEN ; Yaling SUN
Chinese Journal of Cellular and Molecular Immunology 2025;41(10):913-920
Objective To characterize the properties of Hepa1-6-derived microparticles (Hepa1-6-MPs), investigate their stimulatory effects on dendritic cells (DCs) and their cellular uptake pathways, and explore the specific cytotoxic effects of CD8+ T cells induced by Hepa1-6-MP-loaded DCs on hepatoma cell lines, with the aim of developing a novel immunotherapeutic model for hepatocellular carcinoma (HCC). Methods The isolated Hepa1-6-MPs were identified using Western blotting, transmission electron microscopy (TEM) and dynamic light scattering (DLS). Flow cytometry was used to assess the uptake pathways of Hepa1-6-MPs by DCs. Subsequently, enzyme-linked immunosorbent assay (ELISA) was used to measure the effects of Hepa1-6-MP-loaded DCs on the release levels of tumor necrosis factor α(TNF-α) and interferon γ(IFN-γ) into the supernatant of CD8+ T cells. Lactate dehydrogenase (LDH) tests were conducted to evaluate the cytotoxic effects of CD8+ T cells stimulated by Hepa1-6-MP-loaded DCs on hepatoma cells. Results The morphology, size and protein markers of Hepa1-6-MPs met the established criteria. Hepa1-6-MPs enhanced the expression of DC maturation markers CD80 and CD86, and were internalized by DCs via clathrin-mediated endocytosis and phagocytosis pathways. Subsequently, Hepa1-6-MP-loaded DCs stimulated CD8+ T cells to release high levels of TNF-α and IFN-γ, which induced their specific cytotoxicity against HCC cells. Conclusion These findings suggest that Hepa1-6-MP-loaded DCs may be a promising HCC immunotherapeutic tool.
Carcinoma, Hepatocellular/therapy*
;
Liver Neoplasms/therapy*
;
Dendritic Cells/immunology*
;
Humans
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Cancer Vaccines/immunology*
;
CD8-Positive T-Lymphocytes/immunology*
;
Cell Line, Tumor
;
Tumor Necrosis Factor-alpha/immunology*
;
Interferon-gamma/immunology*
;
Cell-Derived Microparticles/immunology*
;
Animals
5.Jiedu Fang inhibits hypoxia-induced angiogenesis in hepatocellular carcinoma by targeting Aurora A/STAT3/IL-8 signaling pathway.
Mao-Feng ZHONG ; Yu-Jun LUO ; Yu-Yu GUO ; Shuang XIANG ; Wan-Fu LIN
Journal of Integrative Medicine 2025;23(6):683-693
OBJECTIVE:
Angiogenesis is a critical target for hepatocellular carcinoma (HCC) treatment. The previous studies indicated that Jiedu Fang (JDF) could inhibit hypoxia-induced angiogenesis through interleukin-8 (IL-8). Therefore, the present study further explores the mechanisms behind JDF's inhibition of HCC angiogenesis.
METHODS:
Angiogenesis was assessed with the capillary-like tube formation assay in vitro and the matrigel plug angiogenesis assay in vivo. A liver cancer-related gene set and genes associated with angiogenesis and the hypoxic microenvironment were analyzed using a bioinformatics platform. Real-time reverse transcription-polymerase chain reaction and Western blotting assays were used to assess the targeted mRNA and protein levels, respectively. The Transwell assay was used to assess the migration and invasion potential of EA.hy 926 cells. The orthotopic tumor xenograft model was established, and immunohistochemistry and immunofluorescence assays were used to detect cluster of differentiation 31 and angiopoietin 2 expression, while an enzyme-linked immunosorbent assay was used to detect vascular endothelial growth factor and IL-8 protein levels.
RESULTS:
In vitro and in vivo assays showed that IL-8 promoted angiogenesis, and JDF could antagonize this effect. Bioinformatics analysis indicated that aurora kinase A (Aurora A) was an important candidate, which can promote IL-8 expression through activation of signal transducer and activator of transcription 3 (STAT3). The overexpression of Aurora A increased IL-8 secretion and promoted HCC migration, invasion, and angiogenesis, which was partly inhibited by JDF. Such effects were validated by in vivo assays. Further validation using the STAT3 inhibitor S3I-201 demonstrated that STAT3 was regulated by Aurora A.
CONCLUSION
JDF exhibits efficacy in reducing hypoxia-induced angiogenesis in HCC through a mechanism involving the Aurora A/STAT3/IL-8 signaling pathway. Therefore, JDF holds promise as a potential therapeutic approach for targeting HCC angiogenesis. Please cite this article as: Zhong MF, Luo YJ, Guo YY, Xiang S, Lin WF. Jiedu Fang inhibits hypoxia-induced angiogenesis in hepatocellular carcinoma by targeting Aurora A/STAT3/IL-8 signaling pathway. J Integr Med. 2025; 23(6):683-693.
Carcinoma, Hepatocellular/blood supply*
;
Humans
;
STAT3 Transcription Factor/metabolism*
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Interleukin-8/metabolism*
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Liver Neoplasms/blood supply*
;
Aurora Kinase A/metabolism*
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Neovascularization, Pathologic/drug therapy*
;
Animals
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Signal Transduction/drug effects*
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Mice
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Drugs, Chinese Herbal/therapeutic use*
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Cell Line, Tumor
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Mice, Inbred BALB C
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Mice, Nude
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Angiogenesis
6.Esculetin triggers ferroptosis via inhibition of the Nrf2-xCT/GPx4 axis in hepatocellular carcinoma.
Zhixin QU ; Jing ZENG ; Laifeng ZENG ; Xianmei LI ; Fenghua ZHANG
Chinese Journal of Natural Medicines (English Ed.) 2025;23(4):443-456
Esculetin, a natural dihydroxy coumarin derived from the Chinese herbal medicine Cortex Fraxini, has demonstrated significant pharmacological activities, including anticancer properties. Ferroptosis, an iron-dependent form of regulated cell death, has garnered considerable attention due to its lethal effect on tumor cells. However, the exact role of ferroptosis in esculetin-mediated anti-hepatocellular carcinoma (HCC) effects remains poorly understood. This study investigated the impact of esculetin on HCC cells both in vitro and in vivo. The findings indicate that esculetin effectively inhibited the growth of HCC cells. Importantly, esculetin promoted the accumulation of intracellular Fe2+, leading to an increase in ROS production through the Fenton reaction. This event subsequently induced lipid peroxidation (LPO) and triggered ferroptosis within the HCC cells. The occurrence of ferroptosis was confirmed by the elevation of malondialdehyde (MDA) levels, the depletion of glutathione peroxidase (GSH-Px) activity, and the disruption of mitochondrial morphology. Notably, the inhibitor of ferroptosis, ferrostatin-1 (Fer-1), attenuated the anti-tumor effect of esculetin in HCC cells. Furthermore, the findings revealed that esculetin inhibited the Nrf2-xCT/GPx4 axis signaling in HCC cells. Overexpression of Nrf2 upregulated the expression of downstream SLC7A11 and GPX4, consequently alleviating esculetin-induced ferroptosis. In conclusion, this study suggests that esculetin exerts an anti-HCC effect by inhibiting the activity of the Nrf2-xCT/GPx4 axis, thereby triggering ferroptosis in HCC cells. These findings may contribute to the potential clinical use of esculetin as a candidate for HCC treatment.
Umbelliferones/administration & dosage*
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Ferroptosis/drug effects*
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Carcinoma, Hepatocellular/physiopathology*
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NF-E2-Related Factor 2/genetics*
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Humans
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Liver Neoplasms/physiopathology*
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Phospholipid Hydroperoxide Glutathione Peroxidase/genetics*
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Animals
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Cell Line, Tumor
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Mice
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Amino Acid Transport System y+/genetics*
;
Mice, Inbred BALB C
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Male
;
Signal Transduction/drug effects*
;
Lipid Peroxidation/drug effects*
;
Reactive Oxygen Species/metabolism*
;
Mice, Nude
7.Bisdemethoxycurcumin suppresses liver fibrosis-associated hepatocellular carcinoma via inhibiting CXCL12-induced macrophage polarization.
Wei YUAN ; Xinxin ZENG ; Bin CHEN ; Sihan YIN ; Jing PENG ; Xiong WANG ; Xingxing YUAN ; Kewei SUN
Chinese Journal of Natural Medicines (English Ed.) 2025;23(10):1232-1247
Chronic, unresolved inflammation correlates with persistent hepatic injury and fibrosis, ultimately progressing to hepatocellular carcinoma (HCC). Bisdemethoxycurcumin (BDMC) demonstrates therapeutic potential against HCC, yet its mechanism in preventing hepatic "inflammation-carcinoma transformation" remains incompletely understood. In the current research, clinical HCC specimens underwent analysis using hematoxylin-eosin (H&E) staining and immunohistochemistry (IHC) to evaluate the expression of fibrosis markers, M2 macrophage markers, and CXCL12. In vitro, transforming growth factor-β1 (TGF-β1)-induced LX-2 cells and a co-culture system of LX-2, THP-1, and HCC cells were established. Cell functions underwent assessment through 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT), flow cytometry, and Transwell assays. Reverse transcription-quantitative polymerase chain reaction (RT-qPCR), Western blotting and immunofluorescence evaluated the differential expression of molecules. The interaction between β-catenin/TCF4 and CXCL12 was examined using co-immunoprecipitation (Co-IP), dual luciferase, and chromatin immunoprecipitation (ChIP) assays. A DEN-induced rat model was developed to investigate BDMC's role in liver fibrosis-associated HCC (LFAHCC) development in vivo. Our results showed that clinical HCC tissues exhibited elevated fibrosis and enriched M2 macrophages. BDMC delayed liver fibrosis progression to HCC in vivo. BDMC inhibited the inflammatory microenvironment induced by activated hepatic stellate cells (HSCs). Furthermore, BDMC suppressed M2 macrophage-induced fibrosis and HCC cell proliferation and metastasis. Mechanistically, BDMC repressed TCF4/β-catenin complex formation, thereby reducing CXCL12 transcription in LX-2 cells. Moreover, CXCL12 overexpression reversed BDMC's inhibitory effect on macrophage M2 polarization and its mediation of fibrosis, as well as HCC proliferation and metastasis. BDMC significantly suppressed LFAHCC development through CXCL12 in rats. In conclusion, BDMC inhibited LFAHCC progression by reducing M2 macrophage polarization through suppressing β-catenin/TCF4-mediated CXCL12 transcription.
Animals
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Liver Neoplasms/etiology*
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Humans
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Carcinoma, Hepatocellular/immunology*
;
Liver Cirrhosis/complications*
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Macrophages/drug effects*
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Male
;
Rats
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Chemokine CXCL12/genetics*
;
Diarylheptanoids/pharmacology*
;
Rats, Sprague-Dawley
;
beta Catenin/genetics*
8.Expert consensus on the perioperative management of co-ablation system therapy of liver tumors.
Chinese Journal of Internal Medicine 2025;64(2):110-118
This study aims to improve the quality of clinical treatment and nursing care to standardize perioperative management for patients with liver tumors undergoing co-ablation system therapy. The Committee of Ablation Therapy in Oncology, China Anti-Cancer Association; the Expert Committee on Ablation Therapy; Chinese Society of Clinical Oncology (CSCO); and the Committee of Interventional, Perioperative, and Interventional Physician Branch of Chinese Medical Doctors Association organized medical and nursing experts in China. Based on the clinical practice of co-ablation system therapy in China and relevant domestic literature, an expert consensus about perioperative management was developed. The expert consensus included the key points of perioperative management, prevention, and care of complications; discharge guidance; and follow-up management for patients undergoing co-ablation system therapy of liver tumors. The consensus on the perioperative management of co-ablation system therapy for liver tumors has finally been formulated, serving as a reference and application for medical personnel in relevant fields based on hospital and patient conditions in clinical work.
Humans
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Liver Neoplasms/surgery*
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Perioperative Care
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Consensus
;
Catheter Ablation
9.Chinese expert consensus on MRI-guided thermal ablation for liver tumors (2025 edition).
Chinese Journal of Internal Medicine 2025;64(11):1084-1095
Image-guided thermal ablation (IGTA) has been widely used in the treatment of liver tumors. MRI-guided thermal ablation of liver tumors offers several advantages, including the absence of ionizing radiation; excellent soft-tissue contrast; multi-parametric and multiplanar imaging; non-invasive, real-time temperature monitoring of the thermal field during the procedure; and accurate post-procedural assessment of therapeutic efficacy. To standardize and promote MRI-guided thermal ablation for liver tumors in China, advance the technological development of IGTA for tumor treatment, and enhance the efficacy of "precision ablation" for hepatic tumors, this expert consensus (2025 edition) was collaboratively developed by national experts from multiple societies and committees through multidisciplinary discussions. The contributing groups included the Society of Tumor Ablation Therapy of the Chinese Anti-Cancer Association, the Ablation Expert Committee of the Chinese Society of Clinical Oncology (CSCO), the Tumor Ablation Subgroup of the National Health Commission Comprehensive Interventional Therapy Quality Control Center, the Expert Group on Tumor Ablation Therapy of the Chinese Medical Doctors Association, and the Tumor Ablation Committee of the Chinese College of Interventionalists. The main contents of the consensus include: (1) indications, contraindications, and characteristics of MRI-guided thermal ablation for liver tumors; (2) MRI magnets, guidance sequences, and MRI-compatible thermal ablation equipment and instruments; and (3) protocols for MRI-guided thermal ablation of liver tumors, efficacy assessment, and the prevention and management of complications.
Humans
;
Liver Neoplasms/surgery*
;
Magnetic Resonance Imaging
;
Consensus
;
China
;
Catheter Ablation/methods*
;
Ablation Techniques/methods*
;
Surgery, Computer-Assisted
10.Comprehensive Analysis of Oncogenic, Prognostic, and Immunological Roles of FANCD2 in Hepatocellular Carcinoma: A Potential Predictor for Survival and Immunotherapy.
Meng Jiao XU ; Wen DENG ; Ting Ting JIANG ; Shi Yu WANG ; Ru Yu LIU ; Min CHANG ; Shu Ling WU ; Ge SHEN ; Xiao Xue CHEN ; Yuan Jiao GAO ; Hongxiao HAO ; Lei Ping HU ; Lu ZHANG ; Yao LU ; Wei YI ; Yao XIE ; Ming Hui LI
Biomedical and Environmental Sciences 2025;38(3):313-327
OBJECTIVE:
Hepatocellular carcinoma (HCC) is sensitive to ferroptosis, a new form of programmed cell death that occurs in most tumor types. However, the mechanism through which ferroptosis modulates HCC remains unclear. This study aimed to investigate the oncogenic role and prognostic value of FANCD2 and provide novel insights into the prognostic assessment and prediction of immunotherapy.
METHODS:
Using clinicopathological parameters and bioinformatic techniques, we comprehensively examined the expression of FANCD2 macroscopically and microcosmically. We conducted univariate and multivariate Cox regression analyses to identify the prognostic value of FANCD2 in HCC and elucidated the detailed molecular mechanisms underlying the involvement of FANCD2 in oncogenesis by promoting iron-related death.
RESULTS:
FANCD2 was significantly upregulated in digestive system cancers with abundant immune infiltration. As an independent risk factor for HCC, a high FANCD2 expression level was associated with poor clinical outcomes and response to immune checkpoint blockade. Gene set enrichment analysis revealed that FANCD2 was mainly involved in the cell cycle and CYP450 metabolism.
CONCLUSION
To the best of our knowledge, this is the first study to comprehensively elucidate the oncogenic role of FANCD2. FANCD2 has a tumor-promoting aspect in the digestive system and acts as an independent risk factor in HCC; hence, it has recognized value for predicting tumor aggressiveness and prognosis and may be a potential biomarker for poor responsiveness to immunotherapy.
Humans
;
Carcinoma, Hepatocellular/diagnosis*
;
Liver Neoplasms/diagnosis*
;
Immunotherapy
;
Fanconi Anemia Complementation Group D2 Protein/metabolism*
;
Prognosis
;
Male
;
Female
;
Middle Aged
;
Biomarkers, Tumor/metabolism*

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