发布日期:2023-11-07
浏览次数:
贾强强
博士 副教授 硕士生导师
jia1108029@163.com
青海大学 伟德官方网站106室
责任设备
液相色谱质谱联用仪、气相质谱联用仪
研究方向
1. 基于色谱质谱的代谢组学方法开发及应用;
2. 青藏高原特色生物资源深度开发与利用。
个人简介:
贾强强,男,甘肃甘谷人,九三学社社员,毕业于华东理工大学化学与分子工程学院,获理学博士学位,青海大学三江源生态与高原农牧业伟德官方网站教师。主要从事基于色谱质谱技术的代谢组学方法开发及应用,并在此基础上进行青藏高原特色生物资源物质基础及其对慢性疾病防治方面的研究,主持或参与国家自然科学基金、青海省科技厅、伟德官方网站自主及开放课题10余项。在Food Function、Journal of Chromatogr A、Journal of Ethnopharmacol、Journal of Pharmaceutical and Biomedical Analysis 、Frontiers in Chemistry、Journal of Separation Science等知名学术期刊发表研究论文20余篇,担任Journal of Food Composition and Analysis、Chemistry & Biodiversity等学术期刊审稿人,并担任北大核心期刊《中草药》青年编委。
奖励荣誉:
1. 入选2023年青海省“高端创新人才千人计划”拔尖人才;
教学与课程:
主讲本科生课程《仪器分析I》以及《分析化学Ⅱ》,主讲研究生课程《现代药物分析技术》。
研究成果:
1、青海省科技厅,应用基础研究项目,藏药多刺绿绒蒿生物碱抗心力衰竭药效物质基础及作用机制研究,2024-01至2026-12,20万元,主持;
2、 2023年青海省“高端创新人才千人计划”拔尖人才项目,2024-01至2026-12,20万元,主持;
3、 国家自然科学基金委员会,地区项目,22067016,角蒿中哌啶类单萜生物碱靶向调控肌动蛋白细胞骨架组装抗肿瘤的作用机制和构效关系研究,2021-01至2024-12,40万元,在研,参与;
4、 国家自然科学基金委员会,地区项目,32060029,青海湖抗生素及抗性基因污染的时空分布研究,2021-01至2024-12,34万元,在研,参与;
5、 国家自然科学基金委员会,地区项目,31960454,不同粒色青稞酚类物质的组成差异与其抗氧化活性的关系研究,2020-01至2023-12,40万元,在研,参与;
6、 青海省科技厅,基础研究项目,藏波罗花中生物碱类成分的抗肿瘤活性及其作用机理的研究,2018-0302-ZJC-0028,2018-01至2020-12,15万元,已结题,参与;
7、 bevictor伟德官网开放课题,嘌呤靶向代谢组学方法研究黑果枸杞花青素类成分抗痛风的作用机制,2020/01-2021/12,10万元,结题,主持;
8、 bevictor伟德官网自主课题,基于代谢组学技术的白刺果中多酚类物质分布及其代谢通路研究,2019/01-2022/01,10万元,结题,主持;
9、 bevictor伟德官网开放课题,植物内源激素靶向代谢组学方法研究青稞叶片衰老代谢机制,2021/07-2023/07,10万元,在研,主持;
11、基于高通量测序技术筛选靶向调控细胞骨架抗肿瘤的中藏药,2023-ZJ-932M,青海省自然科学基金项目项目-面上,2023.01-2025.12,30万,参与;
12、中药锁阳中PED5抑制剂的制备工艺研究及改善性机能产品的研发,2021-QY-203,青海省科技援青合作专项-重点,2021.01-2023.12,100万,参与;
13、 高分辨液相色谱质谱联用仪代谢组学功能与应用开发,SYJG202305,教改项目2023.05-2025.05,1万,主持。
学术成就:
1. 获2020年第十届药物分析优秀青年论文报告会一等奖(上海市药学会主办);
2. 获2021年第十一届药物分析优秀青年论文报告会优秀奖(上海市药学会主办);
3. 获2023年中国西部第十九届实验动物管理与学术研讨会青年论坛二等奖(指导学生)。
发表论文:
[1] Li Li; Qiangqiang Jia (co-first); Haiqin Zhang; Lingyun Yi; Yingyu Tang; Ping Hu; Hongyang Zhang; Rui Wang; Tissue lipidomics, network pharmacology, and molecular docking to explore the therapeutic mechanism of anthocyanins from Lycium ruthenicum Murr. against gouty arthritis. Food Funct. 2023;14(15):7011-7023.
[2] Qiangqiang Jia; Zufan Yang; Qian Wang; Haishan Yang; Xiaofeng Tang; Hongyang; Zhang; Lingling Cao; Gong Zhang; A liquid chromatography-tandem mass spectrometry method for comprehensive determination of metabolites in the purine pathway of rat plasma and its application in anti-gout effects of Lycium ruthenicum Murr. J Sep Sci. 2023: e2300090.
[3] Qiangqiang Jia; Zufan Yang; Qian Wang; Qing Zhao; Yujiao Jia; Banghao Guo; Xiangyang Li; Wen Wang; Chemical Profiling of Nitraria roborowskii Kom. by UPLC-Q-Orbitrap-MS and Their Hypolipidemic Effects in Vivo . Chem Biodivers. 2023:e202300683.
[4] Yufeng Ma; Fengsen Zhang; Yijing Zhong; Yongchun Huang; Yixizhuoma; Qiangqiang Jia*; Shoude Zhang*; A label-free LC/MS-based enzymatic activity assay for the detection of PDE5A inhibitors. Front Chem. 2023, 11:1097027.
[5] 杨祖凡; 杨扬; 杨义芳; 康兴东; 李小峰; 吴永忠; 肖军平; 王稳; 贾强强 *; 周斌*.UHPLC同时测定不同产地和不同采收期裸花紫珠及同属植物中9种活性成分的含量与质量评价[J].中草药,2023,54(14):4631-4640.
[6] Qiangqiang Jia; Hongyang Zhang; Ping Hu; Yang Yang; Yifang Yang; Xingdong Kang; Xiaofeng Li; Yongzhong Wu; Junping Xiao; Bin Zhou; Chemical Profiling and Quality Evaluation of Callicarpa Nudiflora from Different Regions in China by UPLC-QTOF-MS Fingerprint. Chem Biodivers. 2022;19(10): e202200444.
[7] Yujie Li; Qiangqiang Jia (co-first); Min Zhang; Lu Kang; Zihan Li; Yu Liu; Hongyang Zhang; Ping Hu; Isolation of three glucaric acids from Leonurus japonicus Houtt. by using high-speed countercurrent chromatography combined with semi-preparative high-performance liquid chromatography. J Sep Sci. 2022: 45(13):2140-2147.
[8] Zhibo Fu; Qiangqiang Jia; Hongyang Zhang; Lu Kang; Xuezhi Sun; Min Zhang; Yuerong Wang; Ping Hua; Simultaneous quantification of eleven short-chain fatty acids by derivatization and solid phase microextraction - Gas chromatography tandem mass spectrometry. J Chromatogr A. 2022;1661:462680.
[9] Rumeng Wu; Qiangqiang Jia; Xiuzhang Li; Yufeng Ma; Jie Zhang; Yuling Li; Shoude Zhang. Preparation of the sphingolipid fraction from mycelia of Cordyceps sinensis and its immunosuppressive activity. J Ethnopharmacol. 2022; 291:115126.
[10] Qingni Sang; Qiangqiang Jia; Hongyang Zhang; Chuhui Lin; Xiaodan Zhao; Min Zhang; Yuerong Wang; Ping Hu; Chemical profiling and quality evaluation of Zhishi-Xiebai-Guizhi Decoction by UPLC-Q-TOF-MS and UPLC fingerprint, Journal of Pharmaceutical and Biomedical Analysis, 2021, 194: 113771
[11] Qiangqiang Jia; Qiuxia Dong; Qingni Sang; Mingfang Wang; Hongyang Zhang; Yiqun Zhou; Yuxi Li; Tingting Xiao; Ping Hu; Shoude Zhang; Rapid qualitative and quantitative analyses of anthocyanin composition in berries from the Tibetan Plateau with UPLC-quadruple-Orbitrap MS and their antioxidant activities, European Journal of Mass Spectrometry, 2020, 26(4): 301-308.
[12] Qiangqiang Jia; Shoude Zhang; Hongyang Zhang; Xijuan Yang; Xinli Cui; Zhanhai Su; Ping Hu; A Comparative Study on Polyphenolic Composition of Berries from the Tibetan Plateau by UPLC‐Q‐Orbitrap MS System, Chemistry & Biodiversity, 2020, 17 (4): e2000033.
[13] 汪明芳; 贾强强; 王月荣; 章弘扬; 张敏; 胡坪.羟基封端聚丁二烯的临界点色谱定量方法研究[J].色谱,2020,38(2):238-243.
[14] Shoude Zhang; Qiangqiang Jia; Qiang Gao; Xueru Fan; Yuxin Weng; Zhanhai Su; Dual-Specificity Phosphatase CDC25B Was Inhibited by Natural Product HB-21 Through Covalently Binding to the Active Site, Frontiers in Chemistry, 2018, 6:531
实验室简介:
所在实验室能满足相关研究所有实验设备需求。首先Thermo Q Exactive (LC-MS)用于代谢组学及脂质组学的检测、拥有用于蛋白组学分析的NanoLC-Orbitrap-MS(240)以及质谱成像分析的MALDI-MSI高性能质谱,还拥有用于挥发性成分测定的GC-MS/MS: trace1310+TSQ8000evo。其次,本实验室还有扫描电镜、动物成像仪等设备,为动物实验奠定基础。还具备用于代谢组学前处理、分子和生化实验的常规仪器可供使用。