
董忠军 教授
安徽医科大学临床免疫学研究所 教授,博士生导师。
国家优秀青年、杰出青年基金获得者
个人简介
董忠军博士于2003年和2006年分别于山东省医学科学院和中国科学技术大学获得免疫学硕士和细胞生物学博士学位,其后在加拿大蒙特利尔临床研究所从事肿瘤免疫学博士后研究,2011年7月入职清华大学医学院。主要从事NK细胞生物学和肿瘤免疫研究。2022年筹建安徽医科大学临床免疫学研究所(挂靠安徽医科大学第一附属医院)。现任中国病理生理学会免疫学分会副主任委员,中国免疫学会肿瘤免疫和治疗委员会委员,中国抗癌协会整合肿瘤学分会委员,中国实验动物学会细胞治疗专业委员会委员。Journal of Immunological Methods 副主编,《中国免疫学》,《免疫学》,《中国细胞生物学学报》 和Cellular and Molecular Immunology 等杂志编委。农工党党员,中国农工民主党十六届中央青年工作委员会副主任委员。
长期致力于抗肿瘤天然免疫细胞(主要NK细胞)的发育、活化和耐受机制研究,尤其在人类免疫缺陷性疾病XLP1的发病机制研究领域取得了重要学术成绩。在Cancer Cell,Nature Immunology,Immunity,Science Immunology,Journal Experimental Medicine,Nature Communications,Cell Death and Differentiation,Cell & Mol Immunol等国际权威期刊发表多篇文章。
研究方向
聚焦基础免疫学与临床免疫学研究。实验室长期致力于NK细胞发育、活化与耐受调控机制研究。在此基础上,研发激活或调节NK细胞抗肿瘤活性的新方法。实验室还重点关注临床免疫学问题,包括肿瘤免疫学与肿瘤免疫疗法的开发、自身免疫病、移植免疫、感染免疫、免疫诊断、免疫治疗技术的开发和应用等。
联系方式
邮箱:ustcdzj@yahoo.com
地址:安徽医科大学知行楼B座10楼1001
主持课题
1. 国家自然科学基金重点项目,32330034 ,SLAM家族受体负调cDC1细胞活化和抗肿瘤免疫反应的机制研究,2024-01-01 至 2028-12-31,主持。
2. 科技部,基础科研条件与重大科学仪器设备研发,2022YFF0710600,免疫系统人源化和无菌小鼠、小型猪模型创制与关键技术研究,2022-11 至2026-10,骨干。
3. 科技部,XX应急项目(机密项目),2023,任务负责人。
4. 安徽省教育厅安徽省高校优秀科研创新团队,2023AH010085,主持
5. 国家自然科学基金委员会重点项目:31830027,SLAM家族维持巨噬细胞耐受的机制和应用研究, 2019.01 - 2023.12,主持。
6. 国家自然科学基金委员会重大研究计划:91942308,SLAM家族调节肺II型免疫反应的机制及应用研究,2020.01 - 2022.12,主持。
7. 国家自然科学基金委员会创新群体:31821003 , “炎症生物学与疾病”, 2018.01 - 2023.12,主要参与。
8. 国家自然科学基金委员会杰出青年科学基金:81725007,NK细胞基础免疫学, 2018.01 - 2022.12,主持。
9. 国家自然科学基金委员会优秀青年科学基金项目:81322041,天然免疫与免疫缺陷病, 2014.01 - 2016.12,主持。
10. 国家自然科学基金委员会国际(地区)合作与交流项目:81361128016,中加健康研究合作计划项目: 基于SLAM/SAP途径的抗肿瘤策略研究,2014.01-2016.12,主持。
11. 国家自然科学基金委员会面上项目:81273198 SLAM-SAP家族蛋白调节NK细胞功能获得和NKT细胞发育的机制研究, 2013.01 - 2016.12,主持。
12. 科技部国家重点研发计划,SQ2018YFC100257,免疫对配子发生和胚胎发育的影响,2020.1-2022.12,骨干。
13. 科技部,973项目,2013CB944901,肝脏造血免疫组织发育分化的分子调控,2012.1-2017.12,课题组长。
代表性论文
1. Chen S#, Sun B, Dong Z*. Unleashing a safe and potent pro-senescence anti-tumor strategy. Cancer Cell. 2024 Feb 16:S1535-6108(24)00047-3.
2. He J#, Chen D, Xiong W, Hou X, Quan Y, Yang M*, Dong Z*. Eomesodermin spatiotemporally orchestrates the early and late stages of NK cell development by targeting KLF2 and T-bet, respectively. Cell Mol Immunol. 2024 Jul;21(7):662-673. * Co-corresponding authors
3. Wang Y#, Quan Y, He J, Chen S*, Dong Z*. SLAM-family receptors promote resolution of ILC2-mediated inflammation. Nat Commun. 2024 Jun 13;15(1):5056. * Co-corresponding authors
4. Chen S#, Li Z#, Feng J, Quan Y, He J, Hao J*, Dong Z*. Dual Activity of Type III PI3K Kinase Vps34 is Critical for NK Cell Development and Senescence. Adv Sci. 2024 Jun;11(21):e2309315. * Co-corresponding authors
5. Luo L#, Feng P#, Yang Q#, Lv W, Meng W, Yin Z, Li Z, Sun G, Dong Z*, Yang M*. Transcription factor TOX maintains the expression of Mst1 in controlling the early mouse NK cell development. Theranostics 2023; 13(7):2072-2087. * Co-corresponding authors
6. Li D#, Xiong W, Wang Y, Feng J, He Y, Du J, Wang J, Yang M, Zeng H, Yang YG, Wu N, Chen S*, Dong Z*. SLAMF3 and SLAMF4 are immune checkpoints that constrain macrophage phagocytosis of hematopoietic tumors. Sci Immunol. 2022 Jan 21;7(67):eabj5501. * Co-corresponding authors
7. Feng P#, Yang Q#, Luo L, Sun Y, Lv W, Wan S, Guan Z, Xiao Z, Liu F, Li Z, Dong Z*,Yang M*. The kinase PDK1 regulates regulatory T cell survival via controlling redox homeostasis. Theranostics 2021; 11(19). * Co-corresponding authors
8. He J#, Zhao J#, Quan Y, Hou X, Yang M*, Dong Z*. Full Activation of Kinase Protein Kinase B by Phosphoinositide-Dependent Protein Kinase-1 and Mammalian Target of Rapamycin Complex 2 Is Required for Early Natural Killer Cell Development and Survival. Front Immunol. 2021 Feb 9;11:617404. * Co-corresponding authors
9. Li D#, Wang Y, Yang M*, Dong Z*. mTORC1 and mTORC2 coordinate early NK cell development by differentially inducing E4BP4 and T-bet. Cell Death Differ. 2021 Jan 18. * Co-corresponding authors
10. He Y#, Du, J#, Dong Z*. Myeloid deletion of phosphoinositide-dependent kinase-1 enhances NK cell-mediated antitumor immunity by mediating macrophage polarization. OncoImmunology, 2020 Jun 3;9(1):1774281
11. Chen S# *, Li D, Wang Y, Li Q, Dong Z*. Regulation of MHC class I-independent NK cell education by SLAM family receptors. Adv Immunol. 2020;145:159-185.
12. Chen S# *, Dong Z*. Concomitant deletion of SLAM-family receptors, NKG2D and DNAM-1 reveals gene redundancy of NK cell activating receptors in NK cell development and education. J Leukoc Biol. 2020 Apr;107(4):561-572. * Co-corresponding authors
13. Zhang X#, Feng J#, Chen S, Yang H, Dong Z*. Synergized regulation of NK cell education by NKG2A and specific Ly49 family members. Nat Commun. 2019 Nov 1;10(1):5010. * Co-corresponding authors
14. Chen S#, Dong Z*. NK cell recognition of hematopoietic cells by SLAM-SAP families. Cell Mol Immunol. 2019 May;16(5):452-459. * Co-corresponding authors
15. He J#, Wang Y, Liu T, Liu G, Chen S, Li Q, Quan Y, Yang H, Feng J, Wang S, Yang M*, Dong Z*. Stage-specific requirement of kinase PDK1 for NK cells development and activation. Cell Death Differ. 2019 Jan 8. * Co-corresponding authors
16. Zeng X#, Liu G, Peng W, He J, Cai C, Xiong W, Chen S, Yang M*, Dong Z*. Combined deficiency of SLAMF8 and SLAMF9 prevents endotoxin-induced liver inflammation by downregulating TLR4 expression on macrophages. Cell Mol Immunol. 2018 Dec 14. * Co-corresponding authors
17. Chen S#, Li Z#, Cai C#, Liu GW, Wang Y, Blonska M, Dan Li D, Du J, Lin X, Yang M, and Dong Z*. Dissection of SAP-dependent and SAP-independent SLAM Family Signaling in NKT Cell Development and Humoral Immunity, Journal Experimental Medicine. 2017 Feb;214(2):475-489.
18. Chen S#, Yang M#, Du J, Li D, Li ZH, Cai C, Ma Y, Zhang Y, Tian Z*, and Dong Z*. The self-specific activation receptor SLAM family is critical to NK cell education. Immunity. 2016, 45(2): 292-304. * Co-corresponding authors
19. Yang M#, Chen S#, Du J, He J, Wang Y, Zehua, Li Z, Liu G, Peng W, Zeng X, Li D, Xu P, Guo W, Chang Z, Wang S, Tian Z and Dong Z*. NK cell development requires Tsc1-dependent negative regulation of IL-15-trgiggered mTORC1 activation. Nature Communications. 2016 Sep 7;7:12730
20. Du J#, Yang MX, Chen SS, Li D, Chang Z, and Dong Z* PDK1 promotes tumor growth and metastasis in a spontaneous breast cancer model. Oncogene, 2016;35(25):3314-23.
21. Yang M#, Li D, Chang Z, Yang Z, Tian Z, Dong Z*. PDK1 orchestrates early NK cell development through induction of E4BP4 expression and maintenance of IL-15 responsiveness. Journal Experimental Medicine. 2015 212(2):253-65.
22. Dong Z*, Dong C. Cancer-associated inflammation and tumor microenvironment. Cancer J. 2013 Nov-Dec;19(6):459-60.
23. Dong Z*, Davidson D, Pérez-Quintero L.A, Kurosaki T, Swat W, and Veillette A*. The Adaptor SAP Controls NK Cell Activation by Regulating the Enzymes Vav-1 and SHIP-1 and by Enhancing Conjugates with Target Cells. Immunity, 2012; 36(6):974-85. * Co-corresponding authors
24. Dong Z, Veillette A. How do SAP family deficiencies compromise immunity? Trends in Immunology; 2010 Aug;31(8):295-302
25. Dong Z, Cruz-Munoz ME, Zhong M, Chen R, Latour S and Veillette A. Essential role of SAP family adaptors in natural killer cell surveillance of hematopoietic cells. Nature Immunology; 10(9); (2009):973-80.
26. Dong Z, Zhang J, Sun R, Wei H, Tian Z. Impairment of liver regeneration correlates with activated hepatic NKT cells in HBV transgenic mice. Hepatology;45(6); (2007):1400-12.
27. Dong Z, Wei H, Sun R, Tian Z. The roles of innate immune cells in liver injury and regeneration. Cellular and Molecular Immunology; 4(4); (2007):241-52.
28. Huang W#, Dong Z#, Wei H, Ding C, Sun R, Tian Z. Selective elimination of hepatic natural killer T cells with concanavalin A improves liver regeneration in mice. Liver International; 26(3); (2006):339-45. # Co-first authors
29. Dong Z, Zhang C, Wei H, Sun R, Tian Z. Impaired NK cell cytotoxicity by high level of interferon-gamma in concanavalin A-induced hepatitis. Canadian Journal Physiology Pharmacology; 83(11) ;(2005):1045-53.
30. Dong Z, Tian Z. APC-independent NK cell activation. Journal of Immunology. 2005 15;175(4):2041
31. Dong Z, Wei H, Sun R, Hu Z, Gao B, Tian Z. Involvement of natural killer cells in Poly I:C- induced liver injury. Journal of Hepatology; 41(6) ;(2004):966-73.
32. Dong Z, Wei H, Sun R, Tian Z, Gao B. Isolation of murine hepatic lymphocytes using mechanical dissection for phenotypic and functional analysis of NK1.1+ cells. World J Gastroenterol. 2004 Jul 1;10(13):1928-33.