纳米化新型荧光染料的构筑及成像任务书

 2021-10-21 17:13:28

1. 毕业设计(论文)的内容和要求

1.文献查阅掌握文献查阅的一般方法,学会使用计算机在中国期刊网,维普数据库,超星数字图书馆,Elsevier、NCBI电子期刊,Springer Link全文电子期刊,Web of Science等检索资源上查阅关于光疗和磁共振成像的相关文献。

2.文献阅读及综述阅读与课题相关的外文及中文文献,了解国内外的研究动态,撰写文献综述。

3.明确实验任务,拟定实验方案根据所查阅文献的内容,确定实验内容及方案,拟定科学可行的研究计划。

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2. 参考文献

[1] W. Miao, G. Shim, G. Kim, S. Lee, H.J. Lee, Y.B. Kim, Y. Byun, Y.K. Oh, Image-guided synergistic photothermal therapy using photoresponsive imaging agent-loaded graphene-based nanosheets, J Control Release, 211 (2015) 28-36..[2] Q. Miao, C. Xie, X. Zhen, Y. Lyu, H. Duan, X. Liu, J.V. Jokerst, K. Pu, Molecular afterglow imaging with bright, biodegradable polymer nanoparticles, Nat Biotechnol, 35 (2017) 1102-1110..[3] C. Zhang, J. Zhao, S. Wu, Z. Wang, W. Wu, J. Ma, S. Guo, L. Huang, Intramolecular RET enhanced visible light-absorbing bodipy organic triplet photosensitizers and application in photooxidation and triplet杢riplet annihilation upconversion, J Am Chem Soc, 135 (2013) 10566-10578..[4] G. Ulrich, R. Ziessel, A. Harriman, The chemistry of fluorescent bodipy dyes: versatility unsurpassed, Angew Chem Int Ed, 47 (2008) 1184-1201.[5] J. Zhang, F. An, Y. Li, C. Zheng, Y. Yang, X. Zhang, X. Zhang, Simultaneous enhanced diagnosis and photodynamic therapy of photosensitizer-doped perylene nanoparticles via doping, fluorescence resonance energy transfer, and antenna effect, Chem Commun, 49 (2013) 8072-8074..[6] A. Jana, K.T. Nguyen, X. Li, P. Zhu, N.S. Tan, H. 舋ren, Y. Zhao, Perylene-derived Single-component organic nanoparticles with tunable emission: efficient anticancer drug carriers with real-time monitoring of drug release, ACS Nano, 8 (2014) 5939-5952.[7] S. Sivaramapanicker, J. James, L. Manjing, V.M. Nishanth, B. Parijat, J.N. Hao, X.L. Yun, J.K. Yue, W.Y. Sidney, L.Z. Yan, Near-infrared squaraine dye encapsulated micelles for in vivo fluorescence and photoacoustic bimodal imaging, ACS Nano, 9 (2015) 5695-5704.[8] D.M. Shcherbakova, M.A. Hink, L. Joosen, T.W.J. Gadella, V.V. Verkhusha, An Orange Fluorescent Protein with a Large Stokes shift for single-excitation multicolor FCCS and FRET imaging, J Am Chem Soc, 134 (2012) 7913-7923.[9] E.V. Batrakova, A.V. Kabanov, Pluronic block copolymers: evolution of drug delivery concept from inert nanocarriers to biological response modifiers, J Control Release, 130 (2008) 98-106..[10] Pan H, Fan D, Duan Z, Zhu C, Fu R, Li X. Non-stick hemostasis hydrogels as dressings with bacterial barrier activity for cutaneous wound healing. Materials science 105:110118.

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