郭兆彬 青年研究员

发布者:交叉科学研究院-01发布时间:2022-06-19浏览次数:2027

基本信息

  办公电话:021-51323185

  电子信箱:guozhaobin@shutcm.edu.cn

  通讯地址:上海市浦东新区蔡伦路1200号科技创新楼8楼A801   

  研究方向:类器官芯片

招生专业

 

院系名称专业大类一级学科专业代码/专业名称学位类型招生类型
交叉科学研究院医学中药学100800/中药学学术学位硕士
交叉科学研究院医学中药学105600/中药学专业学位硕士


教育及任职经历

2007.09-2011.07   南京体育学院运动健康科学学院   运动人体科学专业,获学士学位

2011.09-2014.09   东南大学生物科学与医学工程学院  生物医学工程专业,获硕士学位

2015.02-2015.08   香港城市大学           科研助理

2015.09-2019.12   南澳大利亚大学          生物医学工程专业,获博士学位

2020.01-2023.01   约翰霍普金斯大学         博士后研究员

2023.2-至今     上海中医药大学交叉科学研究院                青年研究员

研究方向

1、通过类器官芯片及微流控技术,开发人源化高仿生正常组织或疾病组织模型

2、通过类器官芯片进行高分辨率单细胞成像,揭示疾病发生发展过程的关键机制

3、通过类器官芯片对中药效应物质进行高通量分析筛选

近五年以第一负责人承担的科研课题与经费

序号

课题类型

课题名称

项目时间

项目经费

(万元)

备注

1上海中医药大学上海中医药大学高水平大学人才引进
2023.02-2028.0250主持
2上海市级上海市海外高层次(青年)人才计划2023.03-2026.0375主持
3国家自然科学基金青年基金新型人源高仿生血管-肿瘤类器官芯片的构建及其在抗肺癌转移药物发现中的应用
2024.01-2026.12
30主持
4开放课题基金
基于肿瘤血管类器官芯片的抗肺癌转移中药活性物质筛选方法构建及机制研究2023.10
6主持

代表性文章

1. Z. Guo, N. Zhao, T. D Chung, A. Singh, I. Pandey, L. Wang, X. Gu, A. Ademola, R. Linville, U. Pal, J. S. Dumler, P. C. Searson, Visualization of the Dynamics of Invasion and Intravasation of the Bacterium That Causes Lyme Disease in a Tissue Engineered Dermal Microvessel Model, Advanced Science, 2022,  202204395. (IF=17.5)

2. Z. Guo, C. Yang, C. Chien, L. Selth, P. Bagnaninchi and B. Thierry, Optical Cellular Micromotion: A New Paradigm to Measure Tumor Cells Invasion within Gels Mimicking the 3D Tumor Environments. Small Methods, 2022, 2200471. (IF=15.3)

3. Z. Guo, C. Yang, M.F. Maritz. H. Wu, P. Wilson, M. Warkiani, C. Chien, I. Kempson, A. Aref, and B. Thierry. Validation of a Vasculogenesis Microfluidic Model for Radiobiological Studies of the Human Microvasculature. Advanced Materials Technologies, 2019, 1800726. (IF=8.8)

被选为Advanced Materials Technologies 2019年度最佳文章:

https://onlinelibrary.wiley.com/page/journal/2365709x/homepage/best-of-advanced-materials-technologies-2019.html

专题报道: 

PhysOrg https://phys.org/news/2019-03-microfluidic-chip-radiotherapy-side-effects.html

4. Z. Guo, K. Hu, J. Sun, T. Zhang, Q. Zhang, L. Song, X. Zhang, and N. Gu, Fabrication of Hydrogel with Cell Adhesive Micropatterns for Mimicking the Oriented Tumor-Associated Extracellular Matrix. ACS applied materials & interfaces, 2014, 6, 10963-10968. (IF=10.3)

5. Zhang, Y#., Guo, Z. B#., Nie, Y. M., Feng, G. P., Deng, M. J., Hu, Y. M., ... & Hu, K. Self-Organization Formation of Multicellular Spheroids Mediated by Mechanically Tunable Hydrogel Platform: Toward Revealing the Synergy of Chemo‐and Noninvasive Photothermal Therapy against Colon Microtumor. Macromolecular Bioscience, 2022. 22(4), 2100498. (IF=5.3)

6. N. Zhao, Z. Guo, S. Kulkarni, D. Norman, S. Zhang, T. D. Chung, R. F. Nerenberg, R. M. Linville, P. C. Searson, Engineering the Human Blood-Brain Barrier at the Capillary Scale using a Double-Templating Technique, Advanced Functional Materials, 2022, 202110289. (IF=19.9)

7. L. Delon, Z. Guo, A. Oszmiana, C. Chien, R. Gibson, C. Prestidge and B. Thierry, A systematic investigation of the effect of fluid shear stress on the structure and functions of Caco-2 cells towards the optimization of epithelial organ-on-a-chip models. Biomaterials, 2019,225, 119521. (IF=15.3)

8. Jia, Z., Guo, Z., Yang, C. T., Prestidge, C., & Thierry, B. (2021). “Mucus-on-Chip”: A new tool to study the dynamic penetration of nanoparticulate drug carriers into mucus. International Journal of Pharmaceutics, 2021, 598, 120391. (IF=6.3)

9. K. Hu, J. Sun, Z. Guo, P. Wang, Q. Chen, M. Ma, and N. Gu, A novel magnetic hydrogel with aligned magnetic colloidal assemblies showing controllable enhancement of magnetothermal effect in the presence of alternating magnetic field, Advanced Materials, 2015, 27, 2507-2514. (IF=31.3)

10. K. Hu, T. Yu, S. Tang, X. Xu, Z. Guo, J. Qian, Y. Cheng, Y. Zhao, S. Yan, H. Zhang, M. Wan, C. Du, Y. Feng, Q. Liu, Z. Gu, B. Chen, F. Zhang and N. Gu (2021). Dual anisotropicity comprising 3D printed structures and magnetic nanoparticle assemblies: towards the promotion of mesenchymal stem cell osteogenic differentiation. NPG Asia Materials, 2021, 13(1), 19. (IF=10.8)