专家介绍

Experts

柳满然

Liu Manran
工作单位 Institution: 牛博平台检验医学院
职务 Position:
职称 Professional Title: 教授
电子邮箱 Email: 1293390832@qq.com

个人简介 Personal Profile

柳满然,男,1966.05,汉族,湖南永州人,研究生学历,博士,二级教授,博士生导师。

柳满然教授及团队致力于肿瘤转移、诊疗标志、药物耐受与分子机制研究。取得如下成果:(1)发现GPER是乳腺肿瘤新型激素受体并揭示其作用机制;较系统地揭示癌相关成纤维细胞(CAF)致BC转移、药物耐受作用与机制;获得重庆市科技奖,自然科学二等奖(1/5)。(2)鉴定一系列肿瘤转移相关新型ncRNA、蛋白标志,阐明核心分子的作用与机制;成果正在申报重庆市科技奖。3)目前正聚焦于实体肿瘤器官特异性转移方面的开拓性研究,重点从驱动因子及作用,器官特定微环境(如转移前生境、微免疫抑制微环境)形成、代谢及代谢互栖等,揭示实体肿瘤发生嗜器官转移的特性、机制、靶向潜力。已取得的一系列创新成果,以通讯、第一(含共同)作者刊发于Cancer communications, J Hematology & Oncology, Advanced Science(2), Cell Death & Differentiation(2), J Extracellular Vesicles, Cancer Res(2)Theranostics(3), Journal of Experimental Clinical Cancer Research(2), J Advanced Research, PNAS等知名杂志上。作为负责人主持科技部重点研发计划项目1项,国家自然科学基金8项;领导的研究团队获得NSFC课题约22项。

工作经历

2009.06 至今        牛博平台,检验医学院

2005.10 至 2008.12  美国Thomas Jefferson Univ. 助理研究员

教育经历

2003.02 至 2005.09  美国Georgetown Univ. 博士后,导师:Richard Pestell

1999.09 至 2002.07  北京大学医学部,博士,导师:吕有勇


研究方向 Research Interests

围绕肿瘤嗜器官转移,重点开展如下研究:

(1)器官转移前微环境,尤其是神经浸润、免疫抑制微环境、代谢及其产物对散播癌细胞定植、休眠复苏、早期转移灶形成影响;

(2)实体肿瘤向特定器官转移的核心驱动因子鉴定、转移标志物及诊断芯片研发,核心驱动因子促肿瘤特异转移分子机制。

(3)转移微环境与癌细胞代谢及代谢互栖对转移灶形成、进展及靶向策略。


实验室科研项目 Projects

在研科研项目

(1)NSFC面上项目,82372823,2024.01-2027.12,49万,主持

(2)NSFC面上项目,82173155,2022.01-2025.12,55万,主持

已结题项目

(1)科技部国家重点研发计划,2018YFE0113700,2019.11-2023.10,274万,主持

(2)NSFC面上项目,81874199,2019.01-2022.12,57万,主持

(3)NSFC面上项目,31671481,2017.01-2020.12,62万,主持

(4)NSFC面上项目,81472476,2015.01-2018.12,94万,主持

(5)NSFC面上项目,31171336,2012.01-2015.12,50万,主持

(6)NSFC面上项目,81072147,2011.01-2013.12,34万,主持

(7)NSFC主任基金,30940096,2010.01-2010.12,15万,主持


代表性科研论文 Publications

( *:co-corresponding authors 共同通讯作者; #:co-first authors 共同第一作者)

1.Yongcan Liu#, Shanchun Chen#, et al. Tryptophan 2, 3-dioxygenase-positive matrix fibroblasts fuel breast cancer lung metastasis via kynurenine-mediated ferroptosis resistance of metastatic cells and T cell dysfunction. Cancer communications. 2024 Nov 19, 44(11):1261-1286.【通讯】

2.Yuxiang Qiu#, Xing Wang#, et al. ACSL4-mediated membrane phospholipid remodeling induces integrin 1 activation to facilitate triple-negative breast cancer metastasis. Cancer Res. 2024 Jun 4; 81(11):1856-1871.【共同通讯】

3.Ting Jin#, Liping Yang#, et al. HnRNPA2B1 ISGylation Regulates m6A-Tagged mRNA Selective Export via ALYREF/NXF1 Complex to Foster Breast Cancer Development. Advanced Science(Weinh). 2024 Apr 16; 11(24):e2307639.【通讯】

4.Shaojie Cheng#, Xueying Wan#, et al. RGCC-mediated PLK1 activity drives breast cancer lung metastasis by phosphorylating AMPKa2 to activate oxidative phosphorylation and fatty acid oxidation. Journal of Experimental & Clinical Cancer Research. 2023 Dec 15;42(1):342.【通讯】

5.Huan Zeng#, Yixuan Hou#, et al. Cancer-associated fibroblasts facilitate premetastatic niche formation through lncRNA SNHG5-mediated angiogenesis and vascular permeability in breast cancer. Theranostics. 2022 Oct 17; 12(17): 7351-7370. 【通讯】

6.Shuiqing Liu, et al. A novel long noncoding RNA lncROPM-mediated phospholipid metabolism governs breast cancer stem cell properties. Journal of Hematology & Oncology, 2021 Oct 29; 14(1):178.【通讯】

7.Lei Xi#, Meixi Peng#, Shuiqing Liu#, Yongcan Liu#, Xueying Wan#, et al. Hypoxia-stimulated ATM Activation Regulates Autophagy-associated Exosomes Release from Cancer-Associated Fibroblasts to Promote Cancer Cell Invasion. Journal of Extracellular Vesicles, 2021 Sep 20; 10(11):e12146.【通讯】

8.Liping Yang#, et al. Mirtronic miR-4646-5p promotes gastric cancer metastasis by regulating ABHD16A and metabolite lysophosphatidylserines. Cell Death & Differentiation. 2021 Sep 3; 28(9):2708-2727.【通讯】

9.Yilu Qin#, et al. A novel long non-coding RNA lnc030 maintains breast cancer stem cell stemness by stabilizing SQLE mRNA and increasing cholesterol synthesis. Advanced Science(Weinh). 2021 Jan; 8(2): 2002232.【通讯】

10.Manran Liu#, et al. The canonical NF-kappaB pathway governs mammary tumorigenesis in transgenic mice and tumor stem cell expansion. Cancer Res, 2010 Dec; 70(24):10464-73. 【第一】

11.Manran Liu#, et al. p21CIP1 attenuates Ras- and c-Myc-dependent breast tumor epithelial mesenchymal transition and cancer stem cell-like gene expression in vivo. Proc Natl Acad Sci USA, 2009 Nov; 106(45):19035-9. 【第一】