1.Dongmei Wang#, Tao Sun#, Yuan Xia , Zhe Zhao , Xue Sheng , Shuying Li, Yuechan Ma , Mingying Li , Xiuhua Su , Fan Zhang , Peng Li , Daoxin Ma , Jingjing Ye,Fei Lu*, Chunyan Ji*. Homodimer-mediated phosphorylation of C/EBPα-p42 S16 modulates acute myeloid leukaemia differentiation through liquid-liquid phase separation. Nature Communications.2023 Oct 30;14(1):6907.
2.Jian J#, Wang X, Hao H, Ji C, Yuan C*,Lu F*. A Prognostic Model of Pseudogenes in Acute Myeloid Leukemia. Clinical Laboratory. 2023 May 1;69(5).
3.Jian J#, Wang N, Hao H, Yuan C, Liu Q, Ji C,Lu F*. SLED1 Promoting Cell Proliferation and Inhibiting Apoptosis in Acute Myeloid Leukemia: a Study. Applied Biochemistry and Biotechnology. 2023 Mar 10.
4.Jian J#, Yuan C, Ji C, Hao H*,Lu F*. DNA methylation-based subtypes of acute myeloid leukemia with distinct prognosis and clinical features. Clinical and Experimental Medicine. 2023 Jan 16.
5.Wang N#, Bai X, Wang X, Wang D, Ma G, Zhang F, Ye J,Lu F*, Ji C*. A Novel Fatty Acid Metabolism-Associated Risk Model for Prognosis Prediction in Acute Myeloid Leukaemia. Current Oncology. 2023 Feb 20;30(2):2524-2542.
6.Su X#, Ma G#, Bai X, Zhang J, Li M, Zhang F, Sun T, Ma D,Lu F*, Ji C*. The prognostic marker FLVCR2 associated with tumor progression and immune infiltration for acute myeloid leukemia. Frontiers in Cell and Developmental Biology. 2022 Oct 12;10:978786.
7.Yang J#,Lu F#, Ma G, Pang Y, Zhao Y, Sun T, Ma D, Ye J, Ji C*. Role of CDH23 as a prognostic biomarker and its relationship with immune infiltration in acute myeloid leukemia. BMC Cancer. 2022 May 21;22(1):568.
8.Lu F#, Zhao Y#, Pang Y, Ji M, Sun Y, Wang H, Zou J, Wang Y, Li G, Sun T, Li J, Ma D, Ye J*, Ji C*. NLRP3 inflammasome upregulates PD-L1 expression and contributes to immune suppression in lymphoma. Cancer Letters. 2021 Jan 28;497:178-189.
9.Pang Y#, Zhao Y, Wang Y, Wang X, Wang R, Liu N, Li P, Ji M, Ye J, Sun T, Li J, Ma D,Lu F*, Ji C*. TNFAIP8 promotes AML chemoresistance by activating ERK signaling pathway through interaction with Rac1. Journal of Experimental & Clinical Cancer Research. 2020 Aug 14;39(1):158.
10.Zhao Y#,Lu F#, Ye J, Ji M, Pang Y, Wang Y, Wang L, Li G, Sun T, Li J, Ma D, Ji C*. Myeloid-Derived Suppressor Cells and γδT17 Cells Contribute to the Development of Gastric MALT Lymphoma in H.felis-Infected Mice. Frontiers in Immunology. 2020 Jan 28;10:3104.
11.Zhang JR#,Lu F#, Lu T, Dong WH, Li P, Liu N, Ma DX, Ji CY*. Inactivation of FoxM1 transcription factor contributes to curcumin-induced inhibition of survival, angiogenesis, and chemosensitivity in acute myeloid leukemia cells. Journal of Molecular Medicine-Jmm. 2014 Dec;92(12):1319-30.
12.Lu F#, Zhang J, Ji M, Li P, Du Y, Wang H, Zang S, Ma D, Sun X, Ji C*. miR‑181b increases drug sensitivity in acute myeloid leukemia via targeting HMGB1 and Mcl-1. International Journal of Oncology. 2014 Jul;45(1):383-92.
13.Zou J#, Li P#,Lu F#, Liu N, Dai J, Ye J, Qu X, Sun X, Ma D, Park J, Ji C*. Notch1 is required for hypoxia-induced proliferation, invasion and chemoresistance of T-cell acute lymphoblastic leukemia cells. Journal of Hematology & Oncology. 2013 Jan 5;6(1):3.