3. Inhibitory effects of Tubeimoside I on synoviocytes and collagen-induced arthritis in rats. Journal of Cellular Physiology, online, DOI: 10.1002/jcp.26754,2018,SCI收录,生理二区,T1/8 19 卢山08262 生物学 196912 1. 前列腺癌细胞中TNS4新突变体及其作用机制初探,肿瘤, 38(01):1-9,2018。((核心,T6/6)) 2. 前列腺癌细胞中多烯紫杉醇下调Smad3不依赖TGF-β1信号,南京师大学报(自然科学版), 39(03):89-95,2016。(核心,T5/5) 3. 雄激素依赖性前列腺癌细胞中雄激素受体上调EphA3表达,天津医药,43(11):1253-1257,2015。(核心,T6/6。 4. Dual-Functions of miR-373 and miR-520c by Differently Regulating the Activities of MMP2 and MMP9,Journal of Cellular Physiology,230(8):1862~1870,2015,(SCI收录,1/6) 温传俊,项目主持人,国家自然科学基金面上项目,NRAGE在炎症 诱发的肠癌发病过程中的作用及机制研究,编号:81171913,经费来源:国家自然科学基金, 2012/01-2015/12 1. NRAGE is involved in homologous recombination repair to resist the DNA-damaging chemotherapy and composes a ternary complex with RNF8-BARD1 to promote cell survival in squamous esophageal tumorigenesis. Cell Death Differ. 2016;23(8):1406-16(SCI收录,共同通讯作者) 2. MAGED1 is a negative regulator of bone remodeling in mice. Am J Pathol.2015 ;185(10):2653-67(SCI收录,通讯作者) 20 温传俊 生物学 197003 1.省部级项目,词话丛编续编补编修订,主持,高校古委会直接资助项目, 201501-201802 2.横向项目,白蛋白水解应用技术,主持,项目来源为××企业,经费到账50万(财务编号为K11100BY102),201501-201702 21 聂晓伟 (江苏省中医院) 生物学 198110 1. 国家级项目,补肾促排卵汤通过FSH-FOXO1信号轴和表观遗传修饰调控DOR小鼠氧化应激的作用机制,主持,国家自然科学基金面上项目,2018-2021 2. 国家级项目,共伴侣蛋白FKBP52参与高雄激素诱导PCOS发生及中药干预的机制研究,共同主持,国家自然科学基金面上项目,2017-2020 3. 国家级项目,补肾中药通过FSH-FOXO1调控DOR小鼠氧化应激损伤的机制,主持,中国博士后科学基金面上资助,2017-2019 4. 国家级项目,补肾促排卵中药对DOR小鼠雄 6
22 贾永08281 生物学 197601 23 刘中华 08297 24 梅艳珍 08279 生物学 198501 生物学 197811 原核及早期胚胎去甲基化的影响及作用机制研究,主持,国家自然科学基金青年基金,2015-2017 5. 省部级项目,补肾活血中药结合辅助孵出技术对冻融胚胎临床妊娠结局的影响,主持,江苏省青年医学人才资助项目,2016-2020 6. 省部级项目,中药有效成分在少弱精冷冻保存及胚子体外受精中的应用,主持,江苏省“六大人才高峰”第十二批高层次人才资助项目,2016-2018 1.省部级项目,枫香拟茎点霉高效制备漆酶的技 术及机制研究,主持人,江苏省高校自然基金资助项目,201601-201812 2.横向项目,典型农药使用土壤,主持人,南京环科所,经费到账8万(财务编号为K11100BY1301),201201-201812 国家级项目(国自然青年项目),灰盖鬼伞胞外 β葡聚糖苷酶BGL2不同变体产生机制和生理功能的研究,主持,自然基金委,2017.01-2019.12 国家自然科学基金项目, 基于基因组和蛋白质组学分析的北冰洋 沉积物中假单胞菌胞壁聚酯合成初步研究,主持人,国家自然科学基金委,201401-201612 1. Biocatalysis and biotransformation of resveratrol in microorganisms. Biotechnology Letter. 2015, 37(1): 9-18.(SCI 3区收录,1/4) 2. Cold stress promoting a psychrotolerant bacterium Pseudomonas fragi P121 producing trehalose. World Journal of Microbiology and biotechnology. 2016, 32:134. (SCI 3区收录,1/5) 3. Complete genome sequence of a bacterium Pseudomonas fragi P121, a strain with degradation of toxic compounds. Journal of Biotechnology 224 (2016) 68–69. (SCI 3区收录,1/4) 4. 基因组装技术在合成生物学中的应用.微生物通报,2018,DOI: 10.13344/j.microbiol.china.170548.(核心期刊,T4/4) 国家级项目: “SpTrz2调控粟酒裂殖酵母线粒体介导的细胞凋亡机制的研究”, 主持人,项目批准号:(31400032)国家自然科25 商巾杰 08290 7
生物学 197912 学基金项目(2015.1-2017.12,24万)。 论文: 1.汪一荣, 杨艳梅, 张清珍 and 商巾杰*. (2016) 粟酒裂殖酵母Sls1 在线粒体中的功能研究. 基因组学与应用生物学, 35, 1756- 1759 2.杨艳梅, 邹梦婷 and 商巾杰*. (2016) 粟酒裂殖酵母线粒体及线粒体RNA 的提取. 基因组学与应用生物学, 35 113-117. 26 张石柱 08280 生物学 198007 国家级项目,条件致病菌烟曲霉中铁平衡功能基因的筛选和分子调控机制研究 ,主持人,国家自然科学基金面上项目, 201501-201812 27 闫淑珍08180 生物学 196308 省部级项目:具杀线虫活性的植物内生细菌和分泌型杀线虫蛋白 的研究,主持人,江苏省自然科学基金,201207-201507 1.Endophytic Bacillus cereus effectively controls Meloidogyne incognita on tomato plants through rapid rhizosphere occupation and repellent action,Plant Disease,101(3):448-455,2017。(SCI 1区收录,T6/6) 2. Morphological and molecular evidence for a new species in Clavulina from southwestern China,Mycoscience,57(4):255-263,2016。(SCI 4区收录,T3/3) 3.De novo transcriptome assembly in Shiraia bambusicola to investigate putative genes involved in the biosynthesis of Hypocrellin A,International Journal of Molecular Sciences,17:311-325,2016。(SCI 4区收录,T6/6) 4.An unexpected discovery of clavarioid fungi: First record of Lepidostroma asianum in China,Mycoscience, 57(2):150-155,2016。(SCI 4区收录,T4/4) 5.植物内生细菌在棉花体内的定殖动态及对棉花黄萎病的生物防治效果,植物保护学报,43(2):207-214,2016。(一级权威,CSSCI收录,T4/4) 6.Poly(lactic-co-glycolic) acid nanoparticles improve oral bioavailability of hypocrellin A in rat,RSC Advances,7:42073-42082,2017。(SCI 3区收录,2/8) 7.Transferrin-modified nanoparticles enhanced the antitumor efficiency of hypocrellin A by active targeting delivery,Frontiers in Pharmacology,8:815-831,2017。(SCI 8
28 何伟08207 生物学 197904 29 尚广东08212 生物学 196908 2区收录,2/9) 8. The life cycle of Didymium laxifilum and Physarum album on oat agar culture,Journal of Eukaryotic Microbiology,64:457-463,2017。(SCI 3区收录,3/4) 9.Two Dibenzoquinones from the Fungus Acremonium cavaraeanumTwo Dibenzoquinones from the Fungus Acremonium cavaraeanum,Natural Product Communications,12(11):1765-1768,2017。(SCI 4区收录,3/7) 10. The Effects of UV-A on Dry Rice Straw Decomposition under Controlled Laboratory Conditions,BIORESOURCES,11(1):2568-2582,2016。(SCI 4区收录,4/7) 国家级项目,基于特异型细菌发光传感器的土壤重金属及PAHs共 污染机制与有效性研究,主持人,国家自然科学基金项目,201401-201612 Bacterial Bioreporter-Based Mercury and Phenanthrene Assessment in Yangtze River Delta Soils of China. Journal of Environmental Quality,2018。(SCI 1区收录,T1/6)Application of genetically engineered microbial whole-cell biosensors for combined chemosensing, Applied Microbiology and Biotechnology, 100(3):1109-19, 2016. (SCI 2区收录,1/5) 黏质沙雷氏菌次生代谢产物杀灭松材线虫效果,江苏农业科学,45(19):183—186,2017。(中文核心,CSSCI收录,T4/4) 1.国家级项目,特种PHA聚合物人工合成体系的构建子课题,主 持,国家高技术研究发展计划(863 计划), 2012011-2015012 2. 国家级项目,重组工程介导的神经氨酸醛缩酶定向进化,主持,国家自然科学基金项目,201301-201612 3. Escherichia coli BL21(DE3) chromosome-based controlled intracellular processing system for fusion protein separation,Journal of Microbiological Methods,114:35—37,2015。(SCI 4区收录,T5/5) 4. Pseudomonas putida KT2440 markerless gene deletion using site-specific recombination,FEMS Microbiology Letters,363(4),fnw014(7页),2016。(SCI 4区收录,T6/6) 5. Recombineering and I-SceI-mediated Pseudomonas putida KT2440 scarless gene deletion,FEMS Microbiology Letters,9
30 陈龙 98007 生物学 196403 . . . . . . . . . 10
363(21),fnw231(7页),2016。(SCI 4区收录,T3/3) 6. Characterization of Inducible ccdB Gene as a Counterselectable Marker in Escherichia coli Recombineering.Current Microbiology,74(8),961-964, 2017。(SCI 4区收录,T5/5) 国家级项目,基于神经细胞氧化应激关联mTOR通路抑制的帕金森 病发生及雷帕霉素调控分子机理研究,主持人,国家自然科学基金资助项目,201301-201612 以通讯作者身份发表SCI学术榜论文8篇 Rapamycin attenuates BAFF-extended proliferation and survival via disruption of mTORC1/2 signaling in normal and neoplastic B-lymphoid cells. J Cell Physiol. 2018;233:516-519 (SCI二区收录, IF=4.08, T11/11). Celastrol prevents cadmium-induced neuronal cell death by blocking reactive oxygen species-mediated mammalian target of rapamycin pathway. Br J Pharmacol. 2017; 174: 82-100 (SCI二区收录, IF= 5.259, T12/12). Celastrol attenuates cadmium-induced neuronal apoptosis via 2+inhibiting Ca-CaMKII-dependent Akt/mTOR pathway. J Cell Physiol. 2017; 232: 2145-2157 (SCI二区收录, IF=4.155, T10/10). 111Xu C, Wang X, Gu C, Zhang H, Zhang R, Dong X, Liu C, Hu X, **Ji X, Huang S, Chen L. Celastrol ameliorates Cd-induced neuronal apoptosis by targeting NOX2-derived ROS-dependent PP5-JNK signaling pathway. J Neurochem. 2017; 141: 48-62 (SCI二区收录, IF= 3.842, T11/11). An insight of rapamycin against cadmium’s neurotoxicity. Oncotarget 2017; 8: 9013-9014 (SCI收录, IF= 5.008, T3/3). 2+Crosstalk between Ca signaling and mitochondrial H2O2 is required for rotenone inhibition of mTOR signaling pathway leading to neuronal apoptosis. Oncotarget 2016; 7: 7534-7549 (SCI收录, IF= 5.008, T10/10). Rapamycin ameliorates cadmium-induced activation of MAPK pathway and neuronal apoptosis via suppressing mitochondrial ROS-inactivated PP2A. Neuropharmacology 2016; 105: 270-284 (SCI收录, IF= 4.936, T9/9). IL-2, IL-4, IFN-γ or TNF-? enhances BAFF-stimulated cell
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