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  • 1
    In: International Journal of Antimicrobial Agents, Elsevier BV, Vol. 53, No. 4 ( 2019-04), p. 362-369
    Type of Medium: Online Resource
    ISSN: 0924-8579
    Language: English
    Publisher: Elsevier BV
    Publication Date: 2019
    detail.hit.zdb_id: 2011829-6
    SSG: 15,3
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  • 2
    Online Resource
    Online Resource
    Elsevier BV ; 2019
    In:  Biochemical and Biophysical Research Communications Vol. 508, No. 4 ( 2019-01), p. 1286-1290
    In: Biochemical and Biophysical Research Communications, Elsevier BV, Vol. 508, No. 4 ( 2019-01), p. 1286-1290
    Type of Medium: Online Resource
    ISSN: 0006-291X
    RVK:
    Language: English
    Publisher: Elsevier BV
    Publication Date: 2019
    detail.hit.zdb_id: 1461396-7
    SSG: 12
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  • 3
    In: Cancer Research, American Association for Cancer Research (AACR), Vol. 83, No. 7_Supplement ( 2023-04-04), p. 1250-1250
    Abstract: Background & Aim: Aberrant polyunsaturated fatty acids (PUFAs) metabolism is closely associated with the immunosuppressive tumor microenvironment (TME). Tissue-resident memory T cell (Trm) plays a central role against solid tumors, including HCC, depending on the uptake of exogenous fatty acids to maintain survival and anti-tumor immunity. Here we aimed to explore the potential interaction in TME between HCC-derived PUFAs and Trm function in a series of integrated clinical, basic and translational studies. Methods: Tissue interstitial fluids (TIFs) were isolated and analyzed from fresh paired adjacent tissues and HCC for detecting the PUFAs alterations in the HCC TME. Integrated analyses were performed in multiple public databases and local cohorts. Fatty acid desaturase 1 (FADS1) knockdown (KD) HCC cell line was generated to observe the tumor biology and metabolic function. The effects of FADS1 knockout (KO) or overexpression were investigated in multiple spontaneous HCC mouse models via hydrodynamic tail vein injection (HTVI) in vivo. Mutation landscape analysis was used to explore the mechanism of FADS1 transcription. Therapeutic interventions by downregulating FADS1 were also evaluated in vivo. Results: Clinically, we found that the arachidonic acid (ARA) level was enriched in HCC TIFs. A rate-limiting enzyme controlling PUFA biosynthesis, especially ARA production from dihomo-γ-linolenic acid (DGLA), FADS1, was overexpressed in HCC patients. High expression of FADS1 predicted poor survival and was negatively correlated with CD8+CD103+Trm infiltration. Moreover, in the local clinical trial, we noticed that the expression of FADS1 was upregulated in non-response patients with anti-PD-1 mAb treatment. Functionally, we demonstrated that the ARA level was decreased in the conditioned medium (CM) from FADS1 KD cells. Applying CM prolonged the survival of CD8+CD103+Trm ex vivo. FADS1 KO inhibited tumor development by increasing intratumor infiltration and function of CD8+CD103+Trm. In contrast, overexpression of FADS1 promoted HCC progression by restraining immune surveillance in vivo. Mechanistically, we found that the expression of FADS1 was upregulated in the TP53 mutation group by analyzing the mutation landscape of HCC. Mutant P53 protein could bind to the promoter region of FADS1. Therapeutically, recombinant adeno-associated 8 (rAAV8)-shRNAs delivery and anti-PD-1 mAb administration inhibited the tumor growth of anti-PD-1 mAb treatment-resistant HCC model driven by CTNNB1N90 and MYC. Conclusions: We demonstrated that mutant P53 protein directly promoted FADS1 transcription, increasing ARA accumulation in HCC TME. FADS1 remodeling the metabolic patterns of PUFAs impaired CD8+CD103+Trm anti-tumor immunity, possibly leading to HCC progression. Citation Format: Tao Ding, Li Pang, Runying Long, Shinuan Zeng, Kevin TP Ng, Qingmei Zhang, Zhiwei Chen, Kwan Man. Aberrant polyunsaturated fatty acids desaturation impairs survival and anti-tumor immunity of tumor resident memory CD8+ T cell in hepatocellular carcinoma [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2023; Part 1 (Regular and Invited Abstracts); 2023 Apr 14-19; Orlando, FL. Philadelphia (PA): AACR; Cancer Res 2023;83(7_Suppl):Abstract nr 1250.
    Type of Medium: Online Resource
    ISSN: 1538-7445
    Language: English
    Publisher: American Association for Cancer Research (AACR)
    Publication Date: 2023
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    detail.hit.zdb_id: 1432-1
    detail.hit.zdb_id: 410466-3
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  • 4
    In: Frontiers in Pharmacology, Frontiers Media SA, Vol. 13 ( 2022-6-23)
    Abstract: Non-small cell lung carcinoma (NSCLC) patients who initially received tyrosine kinase inhibitor (TKI) therapy often acquired resistance via multiple complex mechanisms. The amplification of FGF3/4/19/CCND1 on chromosome 11q13 was found in many cancers with TKI resistance. However, the role of these amplifications in TKI-resistant NSCLC remains uncovered. Here, we generated the FGF3/4/19/CCND1 amplification model in the NSCLC cell lines PC-9 and HCC827. Upregulation of FGF3/4/19/CCND1 strongly promoted cell proliferation and gefitinib resistance in NSCLC cells. To find out the potential therapeutic strategies, we screened the combination of inhibitors against the FGF/FGFR signaling pathway and the CCND1/CDK4 complex and revealed that gefitinib combined with LY2874455 and abemaciclib exhibited the most effective inhibition of resistance in vitro and in vivo . Mechanistically, FGFs/CCND1 activated the MAPK pathway, which was abolished by the combination drugs. Our study provides a rationale for clinical testing of dual targeting FGFR and CCND1 with LY2874455 and abemaciclib in NSCLC patients who harbored FGF3/4/19/CCND1 amplification.
    Type of Medium: Online Resource
    ISSN: 1663-9812
    Language: Unknown
    Publisher: Frontiers Media SA
    Publication Date: 2022
    detail.hit.zdb_id: 2587355-6
    SSG: 15,3
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  • 5
    Online Resource
    Online Resource
    Frontiers Media SA ; 2022
    In:  Frontiers in Immunology Vol. 13 ( 2022-3-11)
    In: Frontiers in Immunology, Frontiers Media SA, Vol. 13 ( 2022-3-11)
    Abstract: Enterovirus A71 (EV-A71) and Coxsackievirus A16 (CV-A16) are the main causative agents of hand, foot and mouth disease (HFMD) worldwide. Studies showed that EV-A71 and CV-A16 antagonize the interferon (IFN) signaling pathway; however, how IFN controls this viral infection is largely unknown. Here, we identified an IFN-stimulated gene, Transmembrane Protein 106A ( TMEM106A) , encoding a protein that blocks EV-A71 and CV-A16 infection. Combined approaches measuring viral infection, gene expression, and protein interactions uncovered that TMEM106A is required for optimal IFN-mediated viral inhibition and interferes with EV-A71 binding to host cells on the receptor scavenger receptor class B member 2 (SCARB2). Our findings reveal a new mechanism contributing to the IFN-mediated defense against EV-A71 and CV-A16 infection and provide a potential strategy for HFMD treatment by using the antiviral role of TMEM106A against enterovirus.
    Type of Medium: Online Resource
    ISSN: 1664-3224
    Language: Unknown
    Publisher: Frontiers Media SA
    Publication Date: 2022
    detail.hit.zdb_id: 2606827-8
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  • 6
    In: Virus Research, Elsevier BV, Vol. 342 ( 2024-04), p. 199336-
    Type of Medium: Online Resource
    ISSN: 0168-1702
    RVK:
    Language: English
    Publisher: Elsevier BV
    Publication Date: 2024
    detail.hit.zdb_id: 1500820-4
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