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    张振中

    2017-10-15   点击:[]


     

    二级教授,博士生导师,药学院、药物研究院院长,国家有突出贡献中青年专家,河南省优秀专家,河南省优秀教师,河南省生物物理学会副理事长,中国生物颗粒学会理事, 河南省药学会药分专业委员会副主任委员,河南省中青年骨干教师,河南省科技创新团队(药物新制剂)带头人,河南省杰出青年基金获得者,河南省杰出科技创新人才,国家人事部优秀留学回国人员,河南省高等学校创新人才培养对象,河南省高校杰出科研人才。

    多次参加教育部本科教学质量工程(精品课程、教学名师等),长江学者,等评审工作,教育部学位中心优秀博士、硕士论文评审工作等。

    主持国家自然科学基金6项、国家纳米科技专项1项等国家和省级项目。已发表研究论文300余篇,SCI收录220余篇,其中一区有20余篇(通讯作者17篇)(如Biomaterials, Nanoscale, Acta Biomaterial, J Controlled Release)和二区近20余篇(通讯作者) (如Pharmaceutical Research, Int J Nanomed, J Pharm Pharm Sci)上;影响因子>5分的论文50余篇;以通讯作者发表的2篇论文进入世界前1%高被引论文。郑州大学“药理毒理学科”ESI贡献率连续三年排名第1,“材料科学”连续两年第2。参编国家规划教材6部,参编专著1部(纳米毒理学,副主编)。申请专利61项,授权35项。河南省科技进步一等奖1项(第一名),二、三等奖6项,厅局级8项。

    联系方式:

    邮箱:zhenzhongz@126.com

    电话:0371-67781910

    工作与教育经历:

    2000.07-至今,郑州大学,药学院,教授

    2002.04-2003.04,瑞典卡洛琳斯卡医学院,博士后

    1996.07-2000.07,河南医科大学,药学系,副教授

    1996.09-1999.06,中国药科大学,药物分析,博士

    1990.07-1996.09,河南医科大学,公共卫生学院,讲师

    1987.09-1990.06,河南医科大学,卫生化学,硕士

    1983.09-1987.06,河南大学,化学,学士

    社会兼职:

    河南省生物物理学会副理事长

    中国生物颗粒学会理事

    河南省药学会药分专业委员会副主任委员

    河南省科技创新团队(药物新制剂)带头人

    荣誉称号及奖励:

     

    国家有突出贡献中青年专家

    河南省优秀专家

    河南省优秀教师

    河南省中青年骨干教师

    河南省杰出青年基金获得者

    河南省杰出科技创新人才

    国家人事部优秀留学回国人员

    河南省高等学校创新人才培养对象

    河南省高校杰出科研人才

    主持或参加研究项目:

    1. 国家自然科学基金面上项目,81573364,远程调控介孔门控型磁性载体多机制治疗肿瘤研究,2016/01-2019/12,在研,主持。

    2. 国家自然科学基金面上项目,81273451、多机制治疗肿瘤光热控释长循环转运系统的研究、2013/01-2016/12,已结题,主持。

    3. 国家自然科学基金面上项目,30973660,难溶性抗癌药物肿瘤靶向转运载体设计和热疗特性研究,2010/01-2012/12,已结题,主持。

    4. 河南省科技创新杰出人才,094200510002,国家一类抗肿瘤新药2-ME的研发,2009/01-2011/12,已结题,主持。

    5. 国家自然科学基金面上项目,30772671,具有自组装功能寡核苷酸的肿瘤靶向纳米转运系统研究,2008/01-2008/12,已结题,主持。

    6. 国家人事部优秀留学回国人员资助项目,具有肿瘤细胞靶向性的寡核苷酸转运系统,2004/01-2006/12,已结题,主持。

    7. 国家自然科学基金纳米科技专项,90406024,具有分子识别功能的核酸纳米转运系
    统研究,2006/01-2007/12,已结题,主持。

    8. 国家自然科学基金面上项目,30371695,具有肿瘤细胞靶向性的NGR-反义寡核苷酸超分子组装体研究,2004/01-2006/12,已结题,主持

    9. 河南省杰出青年基金,0112001100,反义核苷酸纳米粒的制备研究,2001/01-2003/12,已结题,主持

    10. 河南省高校杰出科研人才创新工程项目,2000CYX004,肺癌组织黑色素瘤抗原表达和基因克隆,2000/01-2002/12,已结题,主持

    国家发明专利:

    1. 王蕾,张振中,张云,李懂,郝永伟,张冰祥,牛梦亚,孟德辉,郑翠霞,赵红娟,胡玉洁,张红岭,一种包覆二氧化锰片层的聚乳酸-羟基乙酸共聚物的制备方法及应用,授权,ZL 2016 1 0276557.7

    2. 郭新红,张振中,陈彩萍,郭晓楠,侯盼盼,丁芳,刘欣,郭冀民, 一种口服胶束微球的制备方法及其应用,授权,ZL 2015 1 0893235.2

    3. 冯倩华,张振中,侯琳,张媛媛,张宛霞, 一种近红外光远程调控的介孔门控型硫化铜药物组合物的制备方法及其应用,授权,ZL 2016 1 0116240.7

    4. 祝侠丽,张振中,黄胜楠,谢莹霞,黄河清,张英杰,侯琳,李志,张慧娟,焦晓静, 一种主动靶向固体脂质纳米载体及其制备方法与应用,授权,ZL 2014 1 0004665.X

    5. 施秀芳,张振中,姚海峰,孙帅军,吴丹丹,景飞,路翔,李鹏, 2-甲氧基雌二醇类似物及其制备方法与用途,授权,ZL 2013 1 0753425.5

    6. 侯琳,单晓宁,张振中,冯倩华,郝丽莎,袁玉洁,王用超, 一种转铁蛋白修饰的中空介孔硫化铜/青蒿琥酯纳米粒的制备方法及其应用,授权,ZL 2015 1 0549228.0

    7. 张红岭,张慧娟,张振中,陈倩倩,张晓戈, 有抗肿瘤药物纳米层的透明质酸修饰的二氧化钛-氧化石墨烯复合材料制备方法及应用,授权,ZL 2015 1 0551231.6

    8. 施秀芳,王淙,张振中,高海英,孙帅军,路翔,王志豪,杨腾蛟,李鹏,王铭铭,杜昕芮,以雌甾为母核的2位或16位取代的查耳酮衍生物及其制备方法和用途, 授权, ZL 2015 1 0577322.7

    9. 侯琳,张振中,王用超,杨晓敏,张银玲,袁玉洁,张媛媛,单晓宁, 一种负载吲哚菁绿的自组装多功能纳米靶向系统的制备方法及其应用,授权,ZL 2015 1 0581283.8

    10. 李志,张振中,潘丽丽,张飞龙,祝侠丽,夏亚丹,闫淑娟, 一种可植入的富勒烯聚乳酸自团聚载药缓释微球的制备方法及应用,授权,ZL 2014 1 0006420.0

    11. 张红岭,史进进,张振中,刘艳,高君,马柔柔,张静,余晓媛,刘瑞瑗, 镧系金属负载富勒烯纳米材料水溶性衍生物的合成方法及其应用,授权, ZL 2013 1 0259356.2

    12. 李志, 张振中,潘丽丽,张飞龙,祝侠丽,夏亚丹,闫淑娟, 一种负载5-氨基乙酰丙酸的富勒烯水溶性衍生物的合成方法与应用,授权, ZL 2014 1 0005050.9

    13. 史进进, 张振中,马柔柔,刘瑞瑗,余晓媛,张静,高君,刘艳, 富勒烯-纳米金复合材料及其制备方法与应用,授权, ZL 2013 1 0260339.0

    14. 侯琳, 张振中,王丽丽,王亚婷,张慧娟,张红岭, 一种以透明质酸修饰的羧基化短单壁碳纳米管为载体的钆类造影剂及其制备方法和应用,授权, ZL 2013 1 0397793.0

    15. 侯琳, 张振中,蒋桂香,冯倩华,张红岭, 一种氧化石墨烯衍生物的制备方法与应用, 授权, ZL 2013 1 0397861.3

    16. 祝侠丽, 张振中,谢莹霞,黄胜楠,侯琳,张慧娟,王蕾,史进进,张英杰,黄河清, 一种隐形热敏脂质体的制备及其药物转运系统在肿瘤治疗药物中的应用,授权, ZL 2013 1 0494933.6

    17. 张振中,王蕾,史进进,高岩,李璐璐,张红岭, 一种水溶性碳纳米管及其制备应用方法,授权, ZL 2012 1 0220013.3

    18. 张红岭,史进进, 张振中,刘艳,叶凡,高君,刘瑞瑗,马柔柔,余晓媛,张静,王蕾,侯琳, 一种水溶性富勒烯及其应用,授权,ZL 2012 1 0406707.3

    19. 史进进,张红岭, 张振中,高君,叶凡,刘艳,余晓媛,张静,马柔柔,刘瑞瑗,王蕾,侯琳, 一种水溶性碳纳米管及其应用,授权, ZL 2012 1 0406733.6

    20. 史进进, 张振中,刘艳,张静,马柔柔,余晓媛,高君,刘瑞瑗, 以银/氧化石墨烯复合纳米粒为载体的近红外光药物控释系统的制备及其应用,授权, ZL 2013 1 0259899.4

    21. 史进进, 张振中,高君,余晓媛,刘艳,刘瑞瑗,马柔柔,张静, 银∕富勒烯纳米复合材料的制备及其作为抗菌剂的应用,授权, ZL 2013 1 0256770.8

    22. 祝侠丽, 张振中,谢莹霞,黄胜楠,侯琳,张慧娟,王蕾,史进进,张英杰,黄河清, 一种隐形热敏脂质体的制备及其药物转运系统在肿瘤治疗药物中的应用, 授权, ZL 2013 1 0494933.6

    23. 张振中,史进进,王蕾,王真真,张红岭,张超峰,陈成群, 一种水溶性富勒烯及其制备应用方法,授权, ZL 2012 1 0180631.7

    24. 张振中,张明月,赵永星,王蕾,史进进, 一种水分散性的碳纳米管冻干粉及其制备方法,授权, ZL 2011 1 0154812.8

    25. 史进进, 张振中,张静,余晓媛,高君,刘艳,马柔柔,刘瑞瑗,王蕾,王真真,李璐璐,王红红,张富丽, 多机制治疗肿瘤光热控释长循环药物转运系统的制备方法及其应用,授权, ZL 2012 1 0573805.6

    26. 侯琳, 张振中,胡志军,张红岭,冯倩华,王亚婷, 透明质酸修饰的氧化石墨烯及其药物组合物的制备方法与应用,授权, ZL 2012 1 0561306.5

    27. 张楠,王培, 张振中,徐霞,郭晓静,鲁春云,侯瑞瑞,李佳,张红岭,夏亚丹,王维嘉,陈燕,牛利锋,高书林, 一种2-甲氧基雌二醇白蛋白纳米冻干剂制备方法及其应用,授权, ZL 2014 1 0822045.7

    28. 侯琳, 张振中,石宇洋,蒋桂香,毛艳艳,杨晓敏,任俊晓,冯倩华,王亚婷, 一种基于碳材料的多糖类口服结肠靶向水凝胶的制备方法与应用,授权, ZL 2014 1 0621958.2

    29. 王蕾,史进进, 张振中,刘艳,马柔柔,张静,余晓媛,刘瑞瑗,高君, 镧系金属负载碳纳米材料水溶性衍生物的合成方法及其应用,授权, ZL 2013 1 0258048.8

    学术论文:

    1. Hou, L., X. Shan, L. Hao, Q. Feng and Z. Zhang (2017). "Copper sulfide nanoparticle-based localized drug delivery system as an effective cancer synergistic treatment and theranostic platform." Acta Biomater 54: 307-320.

    2. Guo, X., C. Chen, X. Liu, P. Hou, X. Guo, F. Ding, Z. Wang, Y. Hu, Z. Li and Z. Zhang (2017). "High oral bioavailability of 2-methoxyestradiol in PEG-PLGA micelles-microspheres for cancer therapy." Eur J Pharm Biopharm.

    3. Liu, Y., D. Li, X. Guo, H. Xu, Z. Li, Y. Zhang, C. Song, R. Fan, X. Tang and Z. Zhang (2017). "A pH-responsive prodrug delivery system of 10-HCPT for controlled release and tumor targeting." Int J Nanomedicine 12: 2227-2242

    4. Wang, L., D. Li, Y. Hao, M. Niu, Y. Hu, H. Zhao, J. Chang, Z. Zhang and Y. Zhang (2017). "Gold nanorod-based poly(lactic-co-glycolic acid) with manganese dioxide core-shell structured multifunctional nanoplatform for cancer theranostic applications." Int J Nanomedicine 12: 3059-3075.

    5. Yan, C., C. Chen, L. Hou, H. Zhang, Y. Che, Y. Qi, X. Zhang, J. Cheng and Z. Zhang (2017). "Single-walled carbon nanotube-loaded doxorubicin and Gd-DTPA for targeted drug delivery and magnetic resonance imaging." J Drug Target 25(2): 163-171.

    6. Zhang, H., H. Zhang, X. Zhu, X. Zhang, Q. Chen, J. Chen, L. Hou and Z. Zhang (2017). "Visible-light-sensitive titanium dioxide nanoplatform for tumor-responsive Fe2+ liberating and artemisinin delivery." Oncotarget.

    7. Zhu, X., H. Huang, Y. Zhang, H. Zhang, L. Hou and Z. Zhang (2017). "Cit/CuS@Fe3O4-based and enzyme-responsive magnetic nanoparticles for tumor chemotherapy, photothermal, and photodynamic therapy." J Biomater Appl 31(7): 1010-1025.

    8. Zhu, X., Y. Zhang, H. Huang, H. Zhang, L. Hou and Z. Zhang (2017). "Folic acid-modified and functionalized CuS nanocrystal-based nanoparticles for combined tumor chemo- and photothermal therapy." J Drug Target 25(5): 425-435

    9. Feng, Q., Y. Zhang, W. Zhang, Y. Hao, Y. Wang, H. Zhang, L. Hou and Z. Zhang (2017). "Programmed near-infrared light-responsive drug delivery system for combined magnetic tumor-targeting magnetic resonance imaging and chemo-phototherapy." Acta Biomater 49: 402-413.

    10. Feng, Q., Y. Zhang, W. Zhang, X. Shan, Y. Yuan, H. Zhang, L. Hou and Z. Zhang (2016). "Tumor-targeted and multi-stimuli responsive drug delivery system for near-infrared light induced chemo-phototherapy and photoacoustic tomography." Acta Biomater 38: 129-142

    11. Hao, Y., L. Wang, B. Zhang, D. Li, D. Meng, J. Shi, H. Zhang, Z. Zhang and Y. Zhang (2016). "Manganese dioxide nanosheets-based redox/pH-responsive drug delivery system for cancer theranostic application." Int J Nanomedicine 11: 1759-1778

    12. Hao, Y., L. Wang, B. Zhang, H. Zhao, M. Niu, Y. Hu, C. Zheng, H. Zhang, J. Chang, Z. Zhang and Y. Zhang (2016). "Multifunctional nanosheets based on folic acid modified manganese oxide for tumor-targeting theranostic application." Nanotechnology 27(2): 025101

    13. Hou, L., Q. Feng, Y. Wang, X. Yang, J. Ren, Y. Shi, X. Shan, Y. Yuan, Y. Wang and Z. Zhang (2016). "Multifunctional hyaluronic acid modified graphene oxide loaded with mitoxantrone for overcoming drug resistance in cancer." Nanotechnology 27(1): 015701

    14. Hou, L., Y. Shi, G. Jiang, W. Liu, H. Han, Q. Feng, J. Ren, Y. Yuan, Y. Wang, J. Shi and Z. Zhang (2016). "Smart nanocomposite hydrogels based on azo crosslinked graphene oxide for oral colon-specific drug delivery." Nanotechnology 27(31): 315105

    15. Hou, L., X. Yang, J. Ren, Y. Wang, H. Zhang, Q. Feng, Y. Shi, X. Shan, Y. Yuan and Z. Zhang (2016). "A novel redox-sensitive system based on single-walled carbon nanotubes for chemo-photothermal therapy and magnetic resonance imaging." Int J Nanomedicine 11: 607-624

    16. Li, H., Y. Hao, N. Wang, L. Wang, S. Jia, Y. Wang, L. Yang, Y. Zhang and Z. Zhang (2016). "DOTAP functionalizing single-walled carbon nanotubes as non-viral vectors for efficient intracellular siRNA delivery." Drug Deliv 23(3): 840-848

    17. Ren, X., L. Liu, Y. Zhou, Y. Zhu, H. Zhang, Z. Zhang and H. Li (2016). "Nanoparticle siRNA against BMI-1 with a Polyethylenimine-Laminarin Conjugate for Gene Therapy in Human Breast Cancer." Bioconjug Chem 27(1): 66-73

    18. Shi, J., Z. Chen, L. Wang, B. Wang, L. Xu, L. Hou and Z. Zhang (2016). "A tumor-specific cleavable nanosystem of PEG-modified C60@Au hybrid aggregates for radio frequency-controlled release, hyperthermia, photodynamic therapy and X-ray imaging." Acta Biomater 29: 282-297

    19. Shi, J., B. Wang, Z. Chen, W. Liu, J. Pan, L. Hou and Z. Zhang (2016). "A Multi-Functional Tumor Theranostic Nanoplatform for MRI Guided Photothermal-Chemotherapy." Pharm Res 33(6): 1472-1485

    20. Shi, J., B. Wang, L. Wang, T. Lu, Y. Fu, H. Zhang and Z. Zhang (2016). "Fullerene (C60)-based tumor-targeting nanoparticles with "off-on" state for enhanced treatment of cancer." J Control Release 235: 245-258

    21. Zhang, H., Q. Chen, X. Zhang, X. Zhu, J. Chen, H. Zhang, L. Hou and Z. Zhang (2016). "An Intelligent and Tumor-Responsive Fe2+ Donor and Fe2+-Dependent Drugs Cotransport System." ACS Appl Mater Interfaces 8(49): 33484-33498

    22. Zhang, H., Y. Ji, Q. Chen, X. Zhu, X. Zhang, Z. Tan, Q. Tian, X. Yang and Z. Zhang (2016). "In vitro and in vivo chemo-phototherapy of magnetic TiO2 drug delivery system formed by pH-sensitive coordination bond." J Biomater Appl 31(4): 568-581

    23. Zhu, X., H. Huang, Y. Zhang, H. Zhang, L. Hou and Z. Zhang (2017). "Cit/CuS@Fe3O4-based and enzyme-responsive magnetic nanoparticles for tumor chemotherapy, photothermal, and photodynamic therapy." J Biomater Appl 31(7): 1010-1025

    24. Du, B., S. Han, H. Li, F. Zhao, X. Su, X. Cao and Z. Zhang (2015). "Multi-functional liposomes showing radiofrequency-triggered release and magnetic resonance imaging for tumor multi-mechanism therapy." Nanoscale 7(12): 5411-5426.

    25. Hao, Y., B. Zhang, C. Zheng, R. Ji, X. Ren, F. Guo, S. Sun, J. Shi, H. Zhang, Z. Zhang, L. Wang and Y. Zhang (2015). "The tumor-targeting core-shell structured DTX-loaded PLGA@Au nanoparticles for chemo-photothermal therapy and X-ray imaging." J Control Release 220(Pt A): 545-555

    26. Hou, L., H. Zhang, Y. Wang, L. Wang, X. Yang and Z. Zhang (2015). "Hyaluronic acid-functionalized single-walled carbon nanotubes as tumor-targeting MRI contrast agent." Int J Nanomedicine 10: 4507-4520.

    27. Li, Y., R. Liu, Y. Shi, Z. Zhang and X. Zhang (2015). "Zwitterionic poly(carboxybetaine)-based cationic liposomes for effective delivery of small interfering RNA therapeutics without accelerated blood clearance phenomenon." Theranostics 5(6): 583-596

    28. Li, Y., R. Liu, J. Yang, Y. Shi, G. Ma, Z. Zhang and X. Zhang (2015). "Enhanced retention and anti-tumor efficacy of liposomes by changing their cellular uptake and pharmacokinetics behavior." Biomaterials 41: 1-14.

    29. Li, Z., Y. Ou-Yang, Y. Liu, Y. Q. Wang, X. L. Zhu and Z. Z. Zhang (2015). "Folic acid-conjugated TiO2-doped mesoporous carbonaceous nanocomposites loaded with Mitoxantrone HCl for chemo-photodynamic therapy." Photochem Photobiol Sci 14(6): 1197-1206

    30. Li, Z., F. L. Zhang, L. L. Pan, X. L. Zhu and Z. Z. Zhang (2015). "Preparation and characterization of injectable Mitoxantrone poly (lactic acid)/fullerene implants for in vivo chemo-photodynamic therapy." J Photochem Photobiol B 149: 51-57

    31. Shi, J., Z. Chen, B. Wang, L. Wang, T. Lu and Z. Zhang (2015). "Reactive Oxygen Species-Manipulated Drug Release from a Smart Envelope-Type Mesoporous Titanium Nanovehicle for Tumor Sonodynamic-Chemotherapy." ACS Appl Mater Interfaces 7(51): 28554-28565

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