1. Novel tumor necrosis factor-α induced protein eight (TNFAIP8/TIPE) family: Functions and downstream targets involved in cancer progression
    Ganesan Padmavathi et al, 2018, Cancer Letters CrossRef
  2. RNA-Seq transcriptome analysis shows anti-tumor actions of melatonin in a breast cancer xenograft model
    Bruna Victorasso Jardim-Perassi et al, 2019, Scientific Reports CrossRef
  3. Gene delivery of TIPE2 inhibits breast cancer development and metastasis via CD8+ T and NK cell-mediated antitumor responses
    Zhenhua Zhang et al, 2017, Molecular Immunology CrossRef
  4. Boosting immune system against cancer by melatonin: A mechanistic viewpoint
    Keywan Mortezaee et al, 2019, Life Sciences CrossRef
  5. TIPE2 suppresses atherosclerosis by exerting a protective effect on macrophages via the inhibition of the Akt signaling pathway
    Dan Li et al, 2019, Experimental and Therapeutic Medicine CrossRef
  6. Tumor Necrosis Factor-α-Induced Protein 8-Like 2 Negatively Regulates Innate Immunity Against RNA Virus by Targeting RIG-I in Macrophages
    Ziqi Zou et al, 2021, Frontiers in Immunology CrossRef
  7. Regulatory Roles of Tumor Necrosis Factor-α-Induced Protein 8 Like-Protein 2 in Inflammation, Immunity and Cancers: A Review


    Zhengzhong Gu et al, 2020, Cancer Management and Research CrossRef
  8. TIPE2 Induced the Proliferation, Survival, and Migration of Lung Cancer Cells Through Modulation of Akt/mTOR/NF-κB Signaling Cascade
    Devivasha Bordoloi et al, 2019, Biomolecules CrossRef
  9. TIPE2 acts as a tumor suppressor and correlates with tumor microenvironment immunity in epithelial ovarian cancer
    Shuai Xu et al, 2023, Aging CrossRef
  10. Tumor necrosis factor-α induced protein 8 (TNFAIP8/TIPE) family is differentially expressed in oral cancer and regulates tumorigenesis through Akt/mTOR/STAT3 signaling cascade
    Ganesan Padmavathi et al, 2021, Life Sciences CrossRef
  11. Inhibition of p38 and ERK1/2 pathways by Sparstolonin B suppresses inflammation-induced melanoma metastasis
    Ya-Min Tang et al, 2018, Biomedicine & Pharmacotherapy CrossRef
  12. TIPE2 Suppresses Malignancy of Pancreatic Cancer Through Inhibiting TGFβ1 Mediated Signaling Pathway
    Fang Feng et al, 2021, Frontiers in Oncology CrossRef
  13. Knockdown of TIPE2 increases the proliferation in lipopolysaccharide-stimulated gastric cancer cells
    Wenming Liu et al, 2018, BMC Cancer CrossRef
  14. Gene delivery of TIPE2 attenuates collagen-induced arthritis by modulating inflammation
    Jinchun Zhou et al, 2020, International Immunopharmacology CrossRef
  15. The enigmatic role of TIPE2 in asthma
    Bingqing Shi et al, 2020, American Journal of Physiology-Lung Cellular and Molecular Physiology CrossRef
  16. TIPE2 suppresses progression and tumorigenesis of the oral tongue squamous cell carcinoma by regulating FoxP3+ regulatory T cells
    Li-Li Zhao, 2020, Journal of Bioenergetics and Biomembranes CrossRef
  17. Immunomodulation: An immune regulatory mechanism in carcinoma therapeutics
    Rana M. Alsaffar et al, 2021, International Immunopharmacology CrossRef
  18. The Importance of Tumor Necrosis Factor-α-Induced Protein-8 Like-2 in the Pathogenesis of Cervical Cancer and Preeclampsia via Regulation of Cell Invasion
    Hong Zhang et al, 2022, The Tohoku Journal of Experimental Medicine CrossRef
  19. An Integrated Deep Learning and Molecular Dynamics Simulation-Based Screening Pipeline Identifies Inhibitors of a New Cancer Drug Target TIPE2
    Haiping Zhang et al, 2021, Frontiers in Pharmacology CrossRef
  20. Modulation of the tumor microenvironment (TME) by melatonin
    Qi Mu et al, 2021, European Journal of Pharmacology CrossRef
  21. Restoration of Arpin suppresses aggressive phenotype of breast cancer cells
    Yi Li et al, 2017, Biomedicine & Pharmacotherapy CrossRef
  22. Suppression of human breast cancer cells by tectorigenin through downregulation of matrix metalloproteinases and MAPK signaling in�vitro
    Linwen Zeng et al, 2017, Molecular Medicine Reports CrossRef
  23. TIPE2 sensitizes breast cancer cells to paclitaxel by suppressing drug-induced autophagy and cancer stem cell properties
    Wei Hu et al, 2023, Human Cell CrossRef