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西安交通大学生命科学与技术学院导师教师师资介绍简介-瀛 成

本站小编 Free考研考试/2021-06-26

Welcome - 瀛 成基本信息

成瀛 博士
副教授, 博士生导师
研究方向:
1. 中枢神经系统和外周组织对能量稳态调控的研究
2. 线粒体与复杂代谢疾病的研究
3. 造血干细胞和血液肿瘤的研究





联系方式
电话:
Email:yingchengxjtu.edu.cn
通讯地址:
陕西省西安市咸宁西路28号
西安交通大学生命科学与技术学院
710049





站点收藏
类别/站点
中科院上海生科院
UPENN medical school
CHOP



欢迎报考

欢迎有志于投身代谢疾病和血液肿瘤疾病研究的优秀学子、博士后加入团队!




教育经历
2017-至今 西安交通大学生命科学与技术学院, 副教授,博士生导师
2016-2017 美国 费城儿童医院, Research Associate
2011-2016 美国宾夕法尼亚大学医学院、费城儿童医院, 博士后
2010 中国科学院上海生命科学研究院, 博士
2004 西安交通大学生命科学与技术学院, 学士




荣誉称号
2016 Postdoctoral Fellow Award from University of Pennsylvania School of Medicine and the Children’s Hospital of Philadelphia, USA.
2015 上海市科学技术奖三等奖
2012-2014 Postdoctoral fellowship from American Heart Association





论文发表
Su H, Wang M, Pang X, Guan F, Li X*, Cheng Y*: When Glycosylation Meets Blood Cells: A Glance of the Aberrant Glycosylation in Hematological Malignancies. Rev Physiol Biochem Pharmacol (2021, in press).
Zhang Y, Yu X, Wang M, Ding Y, Guo H, Liu J, Cheng Y*: Hyperoside from Z. bungeanum leaves restores insulin secretion and mitochondrial function by regulating pancreatic cellular redox status in diabetic mice. Free Radic Biol Med 2021;162:412-422
Qin C, Hu S, Zhang S, Zhao D, Wang Y, Li H, Peng Y, Shi L, Xu X, Wang C, Liu J, Cheng Y*, Long J*: Hydroxytyrosol Acetate Improves the Cognitive Function of APP/PS1 Transgenic Mice in ERbeta-dependent Manner. Molecular nutrition & food research 2021;65:e**
Lv K, Gong C, Antony C, Han X, Ren JG, Donaghy R, Cheng Y, Pellegrino S, Warren AJ, Paralkar VR, Tong W: HectD1 controls hematopoietic stem cell regeneration by coordinating ribosome assembly and protein synthesis. Cell stem cell 2021;
Mammadli M, Huang W, Harris R, Sultana A, Cheng Y, Tong W, Pu J, Gentile T, Dsouza S, Yang Q, Bah A, August A, Karimi M: Targeting Interleukin-2-Inducible T-Cell Kinase (ITK) Differentiates GVL and GVHD in Allo-HSCT. Front Immunol 2020;11:593863
Liu R, Chen L, Wang Y, Zhang G, Cheng Y, Feng Z, Bai X, Liu J: High ratio of omega-3/omega-6 polyunsaturated fatty acids targets mTORC1 to prevent high-fat diet-induced metabolic syndrome and mitochondrial dysfunction in mice. The Journal of nutritional biochemistry 2020;79:108330
Lv K, Jiang J, Donaghy R, Riling CR, Cheng Y, Chandra V, Rozenova K, An W, Mohapatra BC, Goetz BT, Pillai V, Han X, Todd EA, Jeschke GR, Langdon WY, Kumar S, Hexner EO, Band H, Tong W: CBL family E3 ubiquitin ligases control JAK2 ubiquitination and stability in hematopoietic stem cells and myeloid malignancies. Genes & development 2017;31:1007-1023
Kim E, Cheng Y, Bolton-Gillespie E, Cai X, Ma C, Tarangelo A, Le L, Jambhekar M, Raman P, Hayer KE, Wertheim G, Speck NA, Tong W, Viatour P: Rb family proteins enforce the homeostasis of quiescent hematopoietic stem cells by repressing Socs3 expression. The Journal of experimental medicine 2017;214:1901-1912
Cheng Y, Chikwava K, Wu C, Zhang H, Bhagat A, Pei D, Choi JK, Tong W: LNK/SH2B3 regulates IL-7 receptor signaling in normal and malignant B-progenitors. The Journal of clinical investigation 2016;126:1267-1281
Zhang Q, Liu B, Cheng Y, Meng Q, Xia T, Jiang L, Chen S, Liu Y, Guo F: Leptin signaling is required for leucine deprivation-enhanced energy expenditure. The Journal of biological chemistry 2014;289:1779-1787
Xia T, Cheng Y, Zhang Q, Xiao F, Liu B, Chen S, Guo F: S6K1 in the central nervous system regulates energy expenditure via MC4R/CRH pathways in response to deprivation of an essential amino acid. Diabetes 2012;61:2461-2471
Jiang J, Balcerek J, Rozenova K, Cheng Y, Bersenev A, Wu C, Song Y, Tong W: 14-3-3 regulates the LNK/JAK2 pathway in mouse hematopoietic stem and progenitor cells. The Journal of clinical investigation 2012;122:2079-2091
Xiao F, Huang Z, Li H, Yu J, Wang C, Chen S, Meng Q, Cheng Y, Gao X, Li J, Liu Y, Guo F: Leucine deprivation increases hepatic insulin sensitivity via GCN2/mTOR/S6K1 and AMPK pathways. Diabetes 2011;60:746-756
Cheng Y, Zhang Q, Meng Q, Xia T, Huang Z, Wang C, Liu B, Chen S, Xiao F, Du Y, Guo F: Leucine deprivation stimulates fat loss via increasing CRH expression in the hypothalamus and activating the sympathetic nervous system. Molecular endocrinology 2011;25:1624-1635
Cheng Y, Meng Q, Wang C, Li H, Huang Z, Chen S, Xiao F, Guo F: Leucine deprivation decreases fat mass by stimulation of lipolysis in white adipose tissue and upregulation of uncoupling protein 1 (UCP1) in brown adipose tissue. Diabetes 2010;59:17-25
Wang C, Huang Z, Du Y, Cheng Y, Chen S, Guo F: ATF4 regulates lipid metabolism and thermogenesis. Cell research 2010;20:174-184







Welcome - 瀛 成基本信息

成瀛 博士
副教授, 博士生导师
研究方向:
1. 中枢神经系统和外周组织对能量稳态调控的研究
2. 线粒体与复杂代谢疾病的研究
3. 造血干细胞和血液肿瘤的研究





联系方式
电话:
Email:yingchengxjtu.edu.cn
通讯地址:
陕西省西安市咸宁西路28号
西安交通大学生命科学与技术学院
710049





站点收藏
类别/站点
中科院上海生科院
UPENN medical school
CHOP



欢迎报考

欢迎有志于投身代谢疾病和血液肿瘤疾病研究的优秀学子、博士后加入团队!




教育经历
2017-至今 西安交通大学生命科学与技术学院, 副教授,博士生导师
2016-2017 美国 费城儿童医院, Research Associate
2011-2016 美国宾夕法尼亚大学医学院、费城儿童医院, 博士后
2010 中国科学院上海生命科学研究院, 博士
2004 西安交通大学生命科学与技术学院, 学士




荣誉称号
2016 Postdoctoral Fellow Award from University of Pennsylvania School of Medicine and the Children’s Hospital of Philadelphia, USA.
2015 上海市科学技术奖三等奖
2012-2014 Postdoctoral fellowship from American Heart Association





论文发表
Su H, Wang M, Pang X, Guan F, Li X*, Cheng Y*: When Glycosylation Meets Blood Cells: A Glance of the Aberrant Glycosylation in Hematological Malignancies. Rev Physiol Biochem Pharmacol (2021, in press).
Zhang Y, Yu X, Wang M, Ding Y, Guo H, Liu J, Cheng Y*: Hyperoside from Z. bungeanum leaves restores insulin secretion and mitochondrial function by regulating pancreatic cellular redox status in diabetic mice. Free Radic Biol Med 2021;162:412-422
Qin C, Hu S, Zhang S, Zhao D, Wang Y, Li H, Peng Y, Shi L, Xu X, Wang C, Liu J, Cheng Y*, Long J*: Hydroxytyrosol Acetate Improves the Cognitive Function of APP/PS1 Transgenic Mice in ERbeta-dependent Manner. Molecular nutrition & food research 2021;65:e**
Lv K, Gong C, Antony C, Han X, Ren JG, Donaghy R, Cheng Y, Pellegrino S, Warren AJ, Paralkar VR, Tong W: HectD1 controls hematopoietic stem cell regeneration by coordinating ribosome assembly and protein synthesis. Cell stem cell 2021;
Mammadli M, Huang W, Harris R, Sultana A, Cheng Y, Tong W, Pu J, Gentile T, Dsouza S, Yang Q, Bah A, August A, Karimi M: Targeting Interleukin-2-Inducible T-Cell Kinase (ITK) Differentiates GVL and GVHD in Allo-HSCT. Front Immunol 2020;11:593863
Liu R, Chen L, Wang Y, Zhang G, Cheng Y, Feng Z, Bai X, Liu J: High ratio of omega-3/omega-6 polyunsaturated fatty acids targets mTORC1 to prevent high-fat diet-induced metabolic syndrome and mitochondrial dysfunction in mice. The Journal of nutritional biochemistry 2020;79:108330
Lv K, Jiang J, Donaghy R, Riling CR, Cheng Y, Chandra V, Rozenova K, An W, Mohapatra BC, Goetz BT, Pillai V, Han X, Todd EA, Jeschke GR, Langdon WY, Kumar S, Hexner EO, Band H, Tong W: CBL family E3 ubiquitin ligases control JAK2 ubiquitination and stability in hematopoietic stem cells and myeloid malignancies. Genes & development 2017;31:1007-1023
Kim E, Cheng Y, Bolton-Gillespie E, Cai X, Ma C, Tarangelo A, Le L, Jambhekar M, Raman P, Hayer KE, Wertheim G, Speck NA, Tong W, Viatour P: Rb family proteins enforce the homeostasis of quiescent hematopoietic stem cells by repressing Socs3 expression. The Journal of experimental medicine 2017;214:1901-1912
Cheng Y, Chikwava K, Wu C, Zhang H, Bhagat A, Pei D, Choi JK, Tong W: LNK/SH2B3 regulates IL-7 receptor signaling in normal and malignant B-progenitors. The Journal of clinical investigation 2016;126:1267-1281
Zhang Q, Liu B, Cheng Y, Meng Q, Xia T, Jiang L, Chen S, Liu Y, Guo F: Leptin signaling is required for leucine deprivation-enhanced energy expenditure. The Journal of biological chemistry 2014;289:1779-1787
Xia T, Cheng Y, Zhang Q, Xiao F, Liu B, Chen S, Guo F: S6K1 in the central nervous system regulates energy expenditure via MC4R/CRH pathways in response to deprivation of an essential amino acid. Diabetes 2012;61:2461-2471
Jiang J, Balcerek J, Rozenova K, Cheng Y, Bersenev A, Wu C, Song Y, Tong W: 14-3-3 regulates the LNK/JAK2 pathway in mouse hematopoietic stem and progenitor cells. The Journal of clinical investigation 2012;122:2079-2091
Xiao F, Huang Z, Li H, Yu J, Wang C, Chen S, Meng Q, Cheng Y, Gao X, Li J, Liu Y, Guo F: Leucine deprivation increases hepatic insulin sensitivity via GCN2/mTOR/S6K1 and AMPK pathways. Diabetes 2011;60:746-756
Cheng Y, Zhang Q, Meng Q, Xia T, Huang Z, Wang C, Liu B, Chen S, Xiao F, Du Y, Guo F: Leucine deprivation stimulates fat loss via increasing CRH expression in the hypothalamus and activating the sympathetic nervous system. Molecular endocrinology 2011;25:1624-1635
Cheng Y, Meng Q, Wang C, Li H, Huang Z, Chen S, Xiao F, Guo F: Leucine deprivation decreases fat mass by stimulation of lipolysis in white adipose tissue and upregulation of uncoupling protein 1 (UCP1) in brown adipose tissue. Diabetes 2010;59:17-25
Wang C, Huang Z, Du Y, Cheng Y, Chen S, Guo F: ATF4 regulates lipid metabolism and thermogenesis. Cell research 2010;20:174-184






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