参考文献/References:
[1]Gisina A,Kholodenko I,Kim Y,et al.Glioma Stem Cells:Novel Data Obtained by Single-Cell Sequencing[J].Int J Mol Sci,2022,23(22):14224.[2]Herre M,Cedervall J,Mackman N,et al.Neutrophil extracellular traps in the pathology of cancer and other inflammatory diseases[J].Physiol Rev,2023,103(1):277-312.[3]Mousset A,Lecorgne E,Bourget I,et al.Neutrophil extracellular traps formed during chemotherapy confer treatment resistance via TGF-beta activation[J].Cancer Cell,2023,41(4):757-775.[4]Zheng F,Ma L,Li X,et al.Neutrophil Extracellular Traps Induce Glomerular Endothelial Cell Dysfunction and Pyroptosis in Diabetic Kidney Disease[J].Diabetes,2022,71(12):2739-2750.[5]Luo JQ,Yang TW,Wu J,et al.Exosomal PGAM1 promotes prostate cancer angiogenesis and metastasis byinteracting with ACTG1[J].Cell Death Dis,2023,14(8):502.[6]Jeon HM,Kim JY,Cho HJ,et al.Tissue factor is a critical regulator of radiation therapy-induced glioblastoma remodeling[J].Cancer Cell,2023,41(8):1480-1497.[7]Fu T,Zhang L,Zuo M,et al.FCGR2A as one novel potential target for poor survival prognosis of clear cell renal cell carcinoma[J].Medicine (Baltimore),2023,102(11):e33324.[8]Gaddameedi JD,Chou T,Geller BS,et al.Acetyl-Click Screening Platform Identifies Small-Molecule Inhibitors of Histone Acetyltransferase 1 (HAT1)[J].J Med Chem,2023,66(8):5774-5801.[9]Das GK,Ramnath D,von Pein JB,et al.HDAC7 is an immunometabolic switch triaging danger signals for engagement of antimicrobial versus inflammatory responses in macrophages[J].Proc Natl Acad Sci U S A,2023,120(4):e2082154176.[10]Xu W,Chen Y,Zhang Z,et al.Exosomal PIK3CB promotes PD-L1 expression and malignant transformation in esophageal squamous cell carcinoma[J].Med Oncol,2023,40(8):221.[11]Fu H,Liu X,Shi L,et al.Regulatory roles of Osteopontin in lung epithelial inflammation and epithelial-telocyte interaction[J].Clin Transl Med,2023,13(8):e1381.[12]Seneviratne JA,Carter DR,Mittra R,et al.Inhibition of mitochondrial translocase SLC25A5 and histone deacetylation is an effective combination therapy in neuroblastoma[J].Int J Cancer,2023,152(7):1399-1413.[13]van Loo G,Bertrand M.Death by TNF: a road to inflammation[J].Nat Rev Immunol,2023,23(5):289-303.[14]Zhu Z,Zhou X,Du H,et al.STING Suppresses Mitochondrial VDAC2 to Govern RCC Growth Independent of Innate Immunity[J].Adv Sci (Weinh),2023,10(3):e2203718.[15]Han Y,Zhang YY,Pan YQ,et al.IL-1 beta-associated NNT acetylation orchestrates iron-sulfur cluster maintenance and cancer immunotherapy resistance[J].Mol Cell,2023,83(11):1887-1902.[16]Raeber ME,Sahin D,Boyman O.Interleukin-2-based therapies in cancer[J].Sci Transl Med,2022,14(670):eabo5409.[17]Bernstein ZJ,Shenoy A,Chen A,et al.Engineering the IL-4/IL-13 axis for targeted immune modulation[J]. Immunol Rev,2023,320(1):29-57.[18]Huang B,Lang X,Li X.The role of IL-6/JAK2/STAT3 signaling pathway in cancers[J].Front Oncol,2022,12:1023177.[19]Liu H,Zhao Q,Tan L,et al.Neutralizing IL-8 potentiates immune checkpoint blockade efficacy for glioma[J].Cancer Cell,2023,41(4):693-710.[20]Muendlein HI,Connolly WM,Cameron J,et al.Neutrophils and macrophages drive TNF-induced lethality via TRIF/CD14-mediated responses[J].Sci Immunol,2022,7(78):eadd665.
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