RETRACTED: Dual targeting of TGF-β and PD-L1 inhibits tumor growth in TGF-β/PD-L1-driven colorectal carcinoma

癌症研究 PD-L1 转化生长因子 肿瘤微环境 流式细胞术 免疫系统 结直肠癌 转化生长因子β 下调和上调 医学 癌症 免疫疗法 生物 免疫学 内科学 基因 生物化学
作者
Ghazaleh Khalili‐Tanha,Hamid Fiuji,Masoumeh Gharib,Meysam Moghbeli,Nima Khalili‐Tanha,Farzad Rahmani,Neda Shakour,Mina Maftooh,Seyed Mahdi Hassanian,Fereshteh Asgharzadeh,Soodabeh Shahidsales,Kazem Anvari,M. R. Mozafari,Gordon A. Ferns,Jyotsna Batra,Elisa Giovannetti,Majid Khazaei,Amir Avan
出处
期刊:Life Sciences [Elsevier BV]
卷期号:328: 121865-121865 被引量:14
标识
DOI:10.1016/j.lfs.2023.121865
摘要

Immunosuppressive factors within the tumor microenvironment (TME), such as Transforming growth factor beta (TGF-β), constitute a crucial hindrance to immunotherapeutic approaches in colorectal cancer (CRC). Furthermore, immune checkpoint factors (e.g., programmed death-ligand 1 [PD-L1]) inhibit T-cell proliferation and activation. To cope with the inhibitory effect of immune checkpoints, the therapeutic value of dual targeting PD-L1 and TGF-β pathways via M7824 plus 5-FU in CRC has been evaluated. Integrative-systems biology approaches and RNAseq were used to assess the differential level of genes associated with 88 metastatic-CRC patients. The level of PD-L1 and TGF-β was evaluated in a validation cohort. The anti-proliferative, migratory, and apoptotic effects of PD-L1/TGF-β inhibitor, M7824, were assessed by MTT, wound-healing assay, and flow cytometry. Anti-tumor activity was assessed in a xenograft model, followed by biochemical studies and histological staining, and gene/protein expression analyses by RT-PCR and ELISA/IHC. The result of differentially expressed genes (DEGs) analysis showed 1268 upregulated and 1074 downregulated genes in CRC patients. Among the highest scoring genes and dysregulated pathways associated with CRC, PD-L1, and TGF-β were identified and further validated in 92 CRC patients. Targeting of PD-L1-TGF-β inhibited cell growth and migration, associated with modulation of CyclinD1 and MMP9. Furthermore, M7824 inhibited tumor growth via targeting TGF-β and PD-L1 pathways, resulting in modulation of inflammatory response and fibrosis via TNF-α/IL6/CD4-8 and COL1A1/1A2, respectively. In conclusion, our data illustrated that co-targeting PD-L1 and TGF-β pathways increased the effect of Fluorouracil (5-FU) and reduced the tumor growth in PD-L1/TGF-β expressing tumors, providing a new therapeutic option in the treatment of CRC.
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