School of Life Sciences
Professor
Director of Institute of Nanobiomedicine
Nano-Biomedicine
022-87898212
022-87898212
jinchang@tju.edu.cn
#92, Weijin Road, Nankai District, Tianjin. China. School of Life Science, Tianjin University
300072
常津教授,享受国务院政府特殊津贴专家,天津大学英才教授和博士生导师。现任天津大学生科院纳米生物医学研究所所长,天津市微纳生物材料与检疗工程技术中心主任,天津市生物医学工程学会理事长,中国颗粒学会副理事长,中国生物医学工程学会纳米医学与工程分会主任委员。分别于1986年和1991年于天津医科大学获得医学学士和硕士学位;1994年于南开大学高分子化学研究所获得高分子化学专业理学博士学位,从师于中国科学院何炳林院士;1997年于天津大学化工学院完成工学博士后研究工作。 1999年于天津大学材料学院破格晋升为教授。2000年以高级访问学者身份赴美国密歇根大学药学院进行合作研究两年。多年来主要从事纳米生物医学材料和技术在肿瘤和老年痴呆等重大疾病诊疗方面的基础和应用研究。已承担国家重点研发计划、863重点项目、国家自然科学基金等项目50余项,累计科研经费3800余万元。已在Sci. Adv.、Adv. Mater.、Nano Today、Adv. Funct. Mater.、Adv. Sci.、ACS. Nano、Chem. Eng. J.、Biomaterials、Biosens.Bioeletron.等国内外杂志发表学术论文300余篇, 其中SCI论文200余篇,JCR一区文章82篇,IF>10的文章38篇,累计SCI影响因子(IF)>1500。申请美国和中国发明专利120余项,获得授权发明专利40余项,转让专利11项;主编和参编国内外学术专著3部;荣获天津市自然科学一等奖1项, 天津市科技进步一等奖3项,被中国科协授予“全国优秀科技工作者”称号。
- Posdoctoral Fellow| Tianjin University| Biochemistry Engineering| 1997
- Ph.D. | Nankai University| Polymer Chemistry| 1994
- M.D. | Tianjin Medical University| Nutrition and Food Hygine| 1991
- Bachelor| Tianjin Medical Universit| medicine| 1986
- Smart micro-nano biomaterial assembly
- Smart nano-molecular diagnosis in vitro
- Smart nano-probe of multi-modality imaging in vivo
- Intelligent targeted controlled release visualization of nano-medicine
- Nano-optical and acoustic genetics
- Nano Synthetic Biology
- Vice President of Chinese Society of Particles
- Director of Nanomedicine and Engineering Committee of Chinese Society of Biomedical Engineering
- President of Tianjin Society of Biomedical Engineering
- Director of Tianjin Engineering Research Center of Micro-Nanobiomaterials and Detective and Treatment Technology
- Director of Expert Advisory Committee of Life Science Societies Union, Tianjin Association of Science and Technology
- Fellow of the 9th Committee of Tianjin Association for Science and Technology
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2019.11-2021.3
 Institute of Nanomedicine | Director | Professor  -
2016.11-2019.11
 Health Platform, Tianjin University | Associate Dean | Professor  -
2014.11-2021.3
 School of Life Science, Tianjin University | Professor  -
2000.8-2002.5
 College of Pharmacy, University of Michigan, United States | Senior Visiting Scientist  -
1999.11-2014.10
 Institute of Nanobiotechnology,School of Material Science & Engineering, Tianjin UniversityTianjin University | Director | Professor  -
1997.3-1999.10
 Department of Polymeric Materials,School of Material Science & Engineering, Tianjin University | Associate Professor  -
1994.6-1995.3
 Institute of Polymer Chemistry, Nankai University | Assistant Research Fellow  -
1986.6-1988.8
 Tianjin Food Research Institute | Assistant Engineer 
- Papers
- [1] Chemical Engineering Journal, 2021, 426(3):130842. (IF:13.3)
- [2] Science Advances, 2021, 7, eabc5267. (IF: 13.1)
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- [3] Advanced. Materials. 2021, 33, 2007488. (IF: 27.4)
- [4] Advanced Materials, 2021, 33, 2100398 .(IF:27.4)
- [5] Advanced Materials, 2016, 28 (4): 707-714 .(IF:27.4)
- [6] Nano Today. 2021,38:101208. (IF:20.7)
- [7] Advanced Functional Materials, 2021, 31, 2006357.( IF: 16.8)
- [8] Advanced Functional Materials, 2018, 28, 1802026. ( IF: 16.8)
- [9] Advanced Functional Materials, 2018, 28(17): 1707291. ( IF: 16.8)
- [10] Advanced Functional Materials, 2011, 21, 1179-1186. ( IF: 16.8)
- [11] Advanced Science, 2020,7(19):1902906. ( IF: 15.8)
- [12] Advanced. Science. 2018, 5 , 1800295. (IF=15.8)
- [13] ACS nano 2021. doi.org/10.1021/acsnano.1c00135 (IF: 14.6)
- [14] ACS Nano, 2017, 11(12): 11898-11907. (IF:14.6)
- [15] ACS Nano, 2016, 10(10): 9637–9645. (IF:14.6)
- [16] ACS Nano 2016, 10, 2536−2548. (IF:14.6)
- [17] ACS Nano 2016, 10, 10245−10257. (IF:14.6)
- [18] ACS Nano, 2015,9(1): 488–495. (IF:14.6)
- [19] Matter 2021, 4, 26–53. (Partial IF: >12)
- [20] Chemical Engineering Journal, 2021, 407: 127173. (IF:10.6)
- [21] Chemical Engineering Journal, 2020, 390: 124447. (IF: 10.6)
- [22] Chemical Engineering Journal, 2020, 380, 122472. (IF:10.6)
- [23] Chemical Engineering Journal, 2020, 398:125436. (IF :10.6)
- [24] Biomaterials. 2021, 269,120654. (IF: 10.3)
- [25] Biomaterials, 2019, 199, 22-31. (IF :10.3)
- [26] Biomaterials, 2018, 161, 256-269. (IF: 10.3)
- [27] Biomaterials. 2010, 31,8741-8748. (IF:10.3)
- [28] Biomaterials, 2010,31, 6589-6596. (IF:10.3)
- [29] Biomaterials, 2010,31, 4129–4138. (IF:10.3)
- [30] Theranostics. 2020, 10, 6629-6637. (IF:11.6)
- [31] Theranostics, 2019, 9(1): .279-289( IF:11.6)
- [32] Theranostics, 2018, 8: 5870-5889. (IF:11.6)
- [33] Theranostics. 2013, 3(2): 99-108. (IF:11.6)
- [34] Acta Pharmaceutica Sinica B. 2021. (IF:11.4)
- [35] Journal of Nanobiotechnology. 2015, 13 (1): 57. (IF:10.4)
- [36] Biosensors and Bioelectronics, 2020,165: 112278. ( IF: 10.3)
- [37] Biosensors and Bioelectronics. 2017,97, 26-33. ( IF: 10.3)
- [38] Biosensors and Bioelectronics, 2011,30, 145-150. ( IF: 10.3)
- Books
- [1] 《Biomedical Engineering Technology》
- [2] 《New Delivery Systems for Controlled Drug Release from Natural Polymers》
- Patents
- [1] Preparation and detection method of fluorescence quantitative high-sensitivity visualized joint detection immunochromatographic test strip based on magnetic enrichment
- [2] Preparation and detection method of high-sensitivity visualized bimodal acute myocardial infarction immunochromatographic test strip based on reverse fluorescence enhancement
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- [3] Preparation method and application of blue up-transformation nano gene carrier doped with rare earth thulium element
- [4] Preparation method and application of red long afterglow gene nano carrier doped with rare earth praseodymium element
- [5] Preparation method of reduction-responsive targeting polymer micelle for mucus penetration
- [6] Preparation method of pH-responsive polymer micelle for mucus penetration
- [7] Method for preparing trans-anethole-albumin nanoparticles traced by indocyanine green fluorescence
- [8] Construction method of magneto-tribo-luminescence system
- [9] Preparation method of amphiphilic protein-polymer bond
- [10] Preparation method of novel polymer liposome based on bovine serum albumin-polycaprolactone.
- [11] Linoleic acid modified glucan and method for preparing polymer liposome
- [12] Preparation method of drug-loaded polylactic acid ultramicrobial
- [13] Preparation method of composite functional superfine magnetic carrier particles
- [14] Preparation method of a class of amphiphilic chitosan long-chain alkyl quaternary ammonium salt
- [15] A polymer liposome and its application
- [16] Preparation method of mitoxantrone nano-targeted sustained-release long-circulation liposome
- [17] Method for preparing inorganic/organic composite microspheres
- [18] Preparation method of composite drug-loaded microspheres, minocycline hydrochloride nanometer sustained-release composite drug-loaded microsphere system
- [19] A polymer liposomes and preparation method
- [20] A magnetic composite microspheres contained drugs and its preparation method
- [21] Polymer liposome based on polyamino acid and quaternary ammonium salt and preparation method
- [22] CuInS2 and CuInS2ZnS core-shell structure quantum dots with water-soluble zinc blende structure and preparation method
- [23] Magnetic fluorescent microsphere and preparation method
- [24] One kind of quantum dots entrapped composite of microspheres release system and preparation method
- [25] Lidocaine hydrochloride polymer liposome for surface anesthesia and preparation method
- [26] Hollow mesoporous silica nano particles and preparation method
- [27] Vincristine nano-targeting sustained-release long-circulating liposome and preparation method
- [28] Amphiphilic polymer modified oil-soluble core/shell quantum dots and preparation method
- [29] Lidocaine nano calcium phosphate preparation and preparation method
- [30] Mitoxantrone nano-calcium hydrogen phosphate preparation and preparation method
- [31] Minocyclic hydrochloride nano calcium carbonate preparation and preparation method
- [32] Preparation method and application of rare earth up-conversion drug release nano-carrier
- [33] Method and application for separate or simultaneous detection of iron ions and copper ions
- [34] Carboxyl functionalized micron-level rod-shaped up-conversion fluorescent material and preparation method
- [35] Targeting rare earth up-conversion gold core-shell nano-particle preparation methods
- [36] Preparation method of polystyrene-polyacrylic acid nano drug-loaded microspheres for photodynamic therapy
- [37] Controllable Curing Calcium Sulfate Bone Adhesive
- [38] Preparation method and application of folic acid-vincristine targeted sustained-release nano-microspheres
- Honors & Awards
- [1] Special government allowance expert of the State Council
- [2] National Outstanding Scientist.
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- [3] First Prize of Nature Science Award of Tianjin
- [4] First Prize of Scientific and Technological Progress Award of Tianjin
- [5] First Prize of Scientific and Technological Progress Award of Tianjin
- [6] First Prize of Scientific and Technological Progress Award of Tianjin
- [7] "Ten best supervisors in my mind" in Tianjin University