生物与医学工程学院

朱利民教授

 

 

朱利民,教授、博导。20037月回国到202011月共授权中国发明专利近200,共发表各类论三百多篇,其中发表在SCI收录的论文250多篇(通讯作者近200篇)。

 


  

  

  

  

  

  

研究方向:

1、微纳米载药缓控释材料的构建、药物递送的研究与应用

2、功能和生物材料的研究与应用

3、药用纺织品与缓释材料的设计与开发研究

近几年承担的科研项目:

目前主持的科研项目包括国家、教育部、上海市3项、中英国际合作项目1项、工业合作项目2项,课题组自2004年成立以来已经完成国家、教育部课题、中英国际合作项目、上海市科委项目、上海浦江人才计划、中国和上海博士后基金超过20项。

近几年发表论著:

近五年已发表的SCI收录的代表性论文:

(论著名称、刊物、作者排序、收录情况等;专利名称、申请时间、授权情况等)

1. Fu, Z.,  Williams, G., Niu, S., Wu, J.*,  Gao, F., Zhang X.,  Yang, Y., Li, Y., Zhu, L.M.* 2020. Functionalized boron nanosheets as an intelligent nanoplatform for synergistic low-temperature photothermal therapy and chemotherapy. Nanoscale, 14739-14750. (IF 6.895)

2. Chen, X., Niu, S.,  Bremner, D. H.,   Zhang X., Zhang H., Zhang, Y., Li, S.*, Li-Min Zhu.*(2020). Co-delivery of doxorubicin and oleanolic acid by triple-sensitive nanocomposite based on chitosan for effective promoting tumor apoptosis. Carbohydrate Polymers, 116672. (IF 7.182Q1)

3. Wu, J., Williams, G., Niu, S., Yang, Y., Li, Y., Zhang, X., Zhu, L.M.*. (2020). Biomineralized Bimetallic Oxide Nanotheranostics for Multimodal Imaging Guided Combination Therapy. Theranostics, 10: 841-855. IF 8.579, Q1

4. Wang, H., Bremner, D. H., Wu, K., Gong, X., Fan, Q., Xie, X., Zhu, L.M.*. (2020). Platelet membrane biomimetic bufalin-loaded hollow MnO2 nanoparticles for MRI-guided chemo-chemodynamic combined therapy of cancer. Chemical Engineering Journal, 382, 122848. IF 10.652, Q1

5. Gao, F., Wu, J., Niu, S., Sun, T., Li, F., Bai, C., Jin, L., Lin, L., Shi*, Q., Zhu, L.M.,* Du,* L. (2019). Biodegradable, pH-Sensitive Hollow Mesoporous Organosilica Nanoparticle (HMON) with Controlled Release of Pirfenidone and Ultrasound Target Microbubble Destruction (UTMD) for Pancreatic Cancer Treatment. Theranostics,  9(20), 6002-6018. (IF 8.579, Q1)

6. Niu, S., Williams, G. R., Wu, J., Wu, J., Zhang, X., Zhang H., Li S., Zhu, L.M.*. A novel chitosan-based nanomedicine for multi-drug resistant breast cancer therapy. Chemical Engineering Journal, 369 (2019) 134–149.IF 10.652, Q1

7. Niu, S., Williams, G. R., Wu, J., Wu, J., Zhang, X., Chen, X., Zhu, L.M.*. (2019). A chitosan-based cascade-responsive drug delivery system for triple-negative breast cancer therapy. Journal of Nanobiotechnology, 17: 1-18. IF 6.518

8. Li, Y., Wu, J., Williams, G. R., Niu, S., Zhou, J., Yang, Y., Zhu, L.M.*. (2019). Synergistic Chemo-Photothermal Suppression of Cancer by Melanin Decorated MoOx Nanosheets. ACS Applied Bio Materials, 2(10), 4356-4366.

9. Wang, H., Wu, J., Williams, G. R., Fan, Q., Niu, S., Wu, J., Zhu, L.M.*. (2019). Platelet-membrane-biomimetic nanoparticles for targeted antitumor drug delivery. Journal of Nanobiotechnology, 17(1), 60.IF 6.518

10. Wu, J., Williams, G.R., Niu, S., Gao F., Tang, R., Zhu, L.M.* (2019). A multifunctional biodegradable nanocomposite for cancer theranostics. Advanced Science, 10.1002/advs.201802001.IF 15.804,  Q1

11. Zhang, X., Wu, J., Williams, G.R., Yang Y., Niu, S., Qian Q., Zhu, L.M.* (2019). Dual-responsive molybdenum disulfide/copper sulfide-based delivery systems for enhanced chemo-photothermal therapy. Journal of Colloid and Interface Science, 539: 433-441.IF 5.091

12. Wang H., Williams, G. R., Wu J., Wu J., Niu S., Xie X.,Li S., Zhu, L.M.* (2019). Pluronic F127-based micelles for tumortargeted bufalin delivery. International Journal of Pharmaceutics 559 : 289–298.IF 3.850

13. Wu, J., Bremner, D. H., S., Wu, Shi, M., Wang, H., Tang, R., Zhu, L.M.* (2018). Chemodrug- Gated Biodegradable Hollow Mesoporous Organosilica Nanotheranostics for Multimodal Imaging- Guided LowTemperature Photothermal Therapy/Chemotherapy of Cancer. ACS Applied Materials  Interfaces,10 : 42115-42126.IF 8.097  

14 Wu, J., Bremner, D. H., Niu, S., Wu, H., Wu, J., Wang, H., Wang, H., Li, H., Zhu, L.M.* (2018). Functionalized MoS2 nanosheet-capped periodic mesoporous organosilicas as a multifunctional platform for synergistic targeted chemo- photothermal therapy. Chemical Engineering Journal342 : 90–102.IF 10.652, Q1

15. Niu, S., Bremner, D. H., Wu, J., Wu, J., Wang, H., Li, H., Qian Q., Zheng, H., Zhu, L.M.* (2018). l-Peptide functionalized dual-responsive nanoparticles for controlled paclitaxel release and enhanced apoptosis in breast cancer cells. Drug Delivery, 25(1):1275–1288. IF 6.095

16. Wu, H., Williams, G.R., Wu, J., Wu, J., Niu, S., Li, H., Zhu, L.M.*. (2018). Regenerated chitin fibers reinforced with bacterial cellulose nanocrystals as suture biomaterials. Carbohydrate Polymers. 180 : 304-313.IF 7.182Q1

17. Zhang, X., Wu, J., Williams, G.R., Niu, S., Qian Q., Zhu, L.M.*. (2018). Functionalized MoS2-nanosheets for targeted drug delivery and chemophotothermal therapy. Colloids and Surfaces B: Biointerfaces, 173 : 101–108.IF 4.997

18. Wu, J., Williams, G.R., Li, H., Wang, D., Wu, H., Li, S. D., Zhu, L.M.*. (2017). Glucose- and temperature-sensitive nanoparticles for insulin delivery. International Journal of Nanomedicine, 12:4037-4057.IF 4.370

19. Wu, J., Bremner, D. H., Li, H., Niu, S., Li, S., Zhu, L.M.*. (2017). Phenylboronic acid- diolcrosslinked 6-o-vinylazeloyl-dgalactose nanocarriers for insulin delivery. Materials Science  EngineeringC, 76 : 845-855.IF 5.080

20. Wu, H., Bremner, D. H., Wang, H., Wu, J., Li, H., Wu, J., Zhu, L.M.*.(2017). Fabrication and investigation of a biocompatible microfilament with high mechanical performance based on regenerated bacterial cellulose and bacterial cellulose. Materials Science Engineering C, 79 : 516-524.IF 5.080

21. Sang, Q., Williams, G.R., Wu, H., Liu, K., Li, H., Zhu, L.M.*. (2017). Electrospun gelatinsodium bicarbonate and poly(lactide-co-ε-caprolactone)/sodium bicarbonate nanofibers as drug delivery systems. Materials Science  Engineering C, 81 : 359-365.IF 5.080

22. Li,H., Williams, G.R.*, Wu,J., Lv,Y., Sun,X.Z., Wu,H.L., Zhu, L.M.* (2017). Thermosensitive nanofibers loaded with ciprofloxacin as antibacterial wound dressing materials.International Journal of Pharmaceutics. 517 : 135–147.IF 3.850

23. Li, H., Liu, K., Sang, Q., Williams, G.R.*, Wu, J., Zhu, L.M.*. (2017). A thermosensitive drug delivery system prepared by blend electrospinning. Colloids  Surfaces B: Biointerfaces, 159 : 277- 283.IF 4.997

24. Li, H., Williams, G. R., Wu, J., Wang, H., Sun, X., Zhu, L.M.*. (2017). Poly(n-isopropylacry- lamide)/poly(l-lactic acid-co-caprolactone) fibers loaded with ciprofloxacin as wound dressing materials. Materials Science  Engineering C, 79 : 245-254.IF5.080

25. Hu, J., Li, H. Y., Williams, G.R.*, Yang, H. H., Tao, L., Zhu, L.M.* (2016). ElectrospunPoly (N-isopropylacrylamide)/Ethyl Cellulose Nanofibers as Thermoresponsive Drug Delivery Systems. Journal of Pharmaceutical Sciences, 105 : 1104-1112.IF 3.850

26. Gong, X., Branford-White, C., Tao, L., Li, S., Quan, J., Nie, H., Zhu, L.M.* (2016). Preparation and characterization of a novel sodium alginate incorporated self-assembled Fmoc-FF composite hydrogel. Materials Science and Engineering: C, 58 : 478-486.IF 5.080

27 . Pan, Q., Lv, Y., Williams, G.R., Tao, L., Yang, H., Li, H., Zhu, L.M.* (2016). Lactobionic acid and carboxymethyl chitosan functionalized graphene oxide nanocomposites as targeted anticancer drug delivery systems. Carbohydrate Polymers, 151 : 812-820.IF 7.182Q1  

 

主要学术兼职:

目前主要学术兼职:英国生物化学学会会员;英国皇家化学学会会员(MRSC);英国皇家化学学会注册化学家(CChem);英国高等学校执业教师学会会员(MITLHE)

国际交流与合作:

建立东华大学-英国伦敦都市大学中英药用纺织品联合实验室并担任中方主持。

其他愿在网上公布的信息:

朱利民教授于1992年获得英国 Strathclyde 大学哲学博士学位。东华大学生物医学工程学科教授、博导。现任东华大学校特聘教授、博士生导师;东华大学侨联主席并担任中国侨联第十届委员会委员、上海市侨联第十一届常委、上海市欧美同学会第十届常务理事等职务。

朱利民博士是东华大学化学化工与生物工程学院缓释材料课题组组长,中英药用纺织品联合实验室中方主持,上海市第一届浦江人才计划获得者,东华大学教育部“111”引智计划主要研究骨干。朱利民领导的课题组目前有博士、硕士研究生近20人。

在人才培养方面,已经培养出站博士后8名,毕业博士18名,毕业硕士72,其中1名获得2011年度上海市优秀博士论文,国家奖学金获得者8名,几十名分别获得各年度东华大学优秀博士和硕士论文,毕业研究生获得上海市优秀研究生干部称号、校优秀研究生称号东华大学研究生综合奖学金一等奖、东华大学研究生学术科研优秀奖等奖励和称号,另有1名出站博士后获得东华大学优秀博士后称号。

    回国前后曾任:中国科学院长春应用化学研究所实习和助理研究员(1982-1989);英国Strathclyde大学纯碎和应用化学系生物有机化学研究所研究员(1992-1994);英国Dundee大学生物化学系高级研究员(1994-1996);英国Abertay大学科学和工程学院分子和生命科学系讲师(1996-1999);英国伦敦都市大学健康和生命科学系(原北伦敦大学生物和应用科学系)终身高级讲师(1999-2003)。

联系电话:021-67792655          EMAIL:lzhu@dhu.edu.cn


关于东华大学

东华大学是教育部直属、国家“211工程”、国家“双一流”建设高校。学校秉承“崇德博学、砺志尚实”的校训,不断开拓奋进,
已发展成为以纺织、材料、设计为优势,特色鲜明的多科性、高水平大学。

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