欢迎登录材料期刊网

材料期刊网

高级检索

光动力疗法作为一种非侵入性治疗手段已广泛应用于肿瘤的临床治疗.然而其疗效却深受紫外-可见光组织穿透深度的限制.镧系掺杂上转换纳米颗粒可以将近红外光转换为紫外-可见光,被广泛用于与传统光敏剂结合实现更为高效的光动力治疗.近年来,以上转换纳米颗粒和光动力疗法为基础的肿瘤联合治疗研究备受关注,本文重点介绍了该领域的最新研究进展,并对其未来发展方向作出了展望.

参考文献

[1] Liang Cheng;Chao Wang;Liangzhu Feng;Kai Yang;Zhuang Liu.Functional Nanomaterials for Phototherapies of Cancer[J].Chemical Reviews,201421(21):10869-10939.
[2] Shibu, E.S.;Hamada, M.;Murase, N.;Biju, V..Nanomaterials formulations for photothermal and photodynamic therapy of cancer[J].Journal of photochemistry and photobiology, C. Photochemistry reviews,2013:53-72.
[3] Master, A.;Livingston, M.;Sen Gupta, A..Photodynamic nanomedicine in the treatment of solid tumors: Perspectives and challenges[J].Journal of Controlled Release: Official Journal of the Controlled Release Society,20131(1):88-102.
[4] Brown SB;Brown EA;Walker I.The present and future role of photodynamic therapy in cancer treatment.[J].The lancet oncology,20048(8):497-508.
[5] Zhu Z;Tang ZW;Phillips JA;Yang RH;Wang H;Tan WH.Regulation of singlet oxygen generation using single-walled carbon nanotubes[J].Journal of the American Chemical Society,200833(33):10856-10857.
[6] Nishiyama N;Morimoto Y;Jang WD.Design and development of dendrimer photosensitizer-incorporated polymeric micelles for enhanced photodynamic therapy.[J].Advanced drug delivery reviews,20094(4):327-338.
[7] 雷万华;王雪松.光动力抗菌光敏剂的研究进展[J].影像科学与光化学,2013(5):321-334.
[8] Lin, Liangwu;Xiong, Li;Wen, Yu;Lei, Sanlin;Deng, Xiaofeng;Liu, Zhipeng;Chen, Wei;Miao, Xiongying.Active Targeting of Nano-Photosensitizer Delivery Systems for Photodynamic Therapy of Cancer Stem Cells[J].Journal of biomedical nanotechnology,20154(4):531-554.
[9] Lu, Kuangda;He, Chunbai;Lin, Wenbin.Nanoscale Metal-Organic Framework for Highly Effective Photodynamic Therapy of Resistant Head and Neck Cancer[J].Journal of the American Chemical Society,201448(48):16712-16715.
[10] Christopher V. Synatschke;Takahiro Nomoto;Horacio Cabral;Melanie F?rtsch;Kazuko Toh;Yu Matsumoto;Kozo Miyazaki;Andreas Hanisch;Felix H. Schacher;Akihiro Kishimura;Nobuhiro Nishiyama;Axel H. E. Müller;Kazunori Kataoka.Multicompartment Micelles with Adjustable Poly(ethylene glycol) Shell for Efficient in Vivo Photodynamic Therapy[J].ACS nano,20142(2):1161-1172.
[11] Alejro Sosnik;Angel M. Carcaboso.Nanomedicines in the future of pediatric therapy[J].Advanced drug delivery reviews,2014:140-161.
[12] Ho, M.;Lo, E. C. F.;Young, A. L.;Liu, D. T. L..Outcome of polypoidal choroidal vasculopathy at 1 year by combined therapy of photodynamic therapy with ranibizumab and predictive factors governing the outcome[J].Eye,201412(12):1469-1476.
[13] Yang, Y.;Guo, Q.;Chen, H.;Zhou, Z.;Guo, Z.;Shen, Z..Thienopyrrole-expanded BODIPY as a potential NIR photosensitizer for photodynamic therapy[J].Chemical communications,201338(38):3940-3942.
[14] Frangois Auzel.Upconversion and Anti-Stokes Processes with f and d Ions in Solids[J].Chemical Reviews,20041(1):139-173.
[15] Jing Zhou;Zhuang Liu;Fuyou Li.Upeonversion nanophosphors for small-animal imaging[J].Chemical Society Reviews,20123(3):1323-1349.
[16] Wu, Xiang;Chen, Guanying;Shen, Jie;Li, Zhanjun;Zhang, Yuanwei;Han, Gang.Upconversion Nanoparticles: A Versatile Solution to Multiscale Biological Imaging[J].Bioconjugate Chemistry,20152(2):166-175.
[17] Peng Zhang;Wim Steelant;Manoj Kumar;Matthew Scholfield.Versatile Photosensitizers for Photodynamic Therapy at Infrared Excitation[J].Journal of the American Chemical Society,200715(15):4526-4527.
[18] Qian, HS;Guo, HC;Ho, PCL;Mahendran, R;Zhang, Y.Mesoporous-Silica-Coated Up-Conversion Fluorescent Nanoparticles for Photodynamic Therapy[J].Small,200920(20):2285-2290.
[19] Wang C;Tao H;Cheng L;Liu Z.Near-infrared light induced in vivo photodynamic therapy of cancer based on upconversion nanoparticles.[J].Biomaterials,201126(26):6145-6154.
[20] Kai Liu;Xiaomin Liu;Qinghui Zeng;Youlin Zhang;Langping Tu;Tao Liu;Xianggui Kong;Yinghui Wang;Feng Cao;Saskia A. G. Lambrechts;Maurice C. G. Aalders;Hong Zhang.Covalently Assembled NIR Nanoplatform for Simultaneous Fluorescence Imaging and Photodynamic Therapy of Cancer Cells[J].ACS nano,20125(5):4054-4062.
[21] Tu, D.;Liu, Y.;Zhu, H.;Chen, X..Optical/magnetic multimodal bioprobes based on lanthanide-doped inorganic nanocrystals[J].Chemistry: A European journal,201318(18):5516-5527.
[22] Zhou,A.;Wei,Y.;Wu,B.;Chen,Q.;Xing,D..Pyropheophorbide A and c(RGDyK) comodified chitosan-wrapped upconversion nanoparticle for targeted near-infrared photodynamic therapy[J].Molecular pharmaceutics,20126(6):1580-1589.
[23] Liu, X.;Zheng, M.;Kong, X.;Zhang, Y.;Zeng, Q.;Sun, Z.;Buma, W.J.;Zhang, H..Separately doped upconversion-C_(60) nanoplatform for NIR imaging-guided photodynamic therapy of cancer cells[J].Chemical communications,201331(31):3224-3226.
[24] Shan Jin;Liangjun Zhou;Zhanjun Gu.A new near infrared photosensitizing nanoplatform containing blue-emitting up-conversion nanoparticies and hypocrellin A for photodynamic therapy of cancer cells[J].Nanoscale,201323(23):11910-11918.
[25] Chou TC.Drug combination studies and their synergy quantification using the Chou-Talalay method.[J].Cancer research: The official organ of the American Association for Cancer Research, Inc,20102(2):440-446.
[26] Lehar J;Krueger AS;Avery W;Heilbut AM;Johansen LM;Price ER;Rickles RJ;Short GF 3rd;Staunton JE;Jin X;Lee MS;Zimmermann GR;Borisy AA.Synergistic drug combinations tend to improve therapeutically relevant selectivity.[J].Nature biotechnology,20097(7):659-666.
[27] Greco F;Vicent MJ.Combination therapy: opportunities and challenges for polymer-drug conjugates as anticancer nanomedicines.[J].Advanced drug delivery reviews,200913(13):1203-1213.
[28] Lammers T.Improving the efficacy of combined modality anticancer therapy using HPMA copolymer-based nanomedicine formulations.[J].Advanced drug delivery reviews,20102(2):203-230.
[29] Tian, G.;Ren, W.;Yan, L.;Jian, S.;Gu, Z.;Zhou, L.;Jin, S.;Yin, W.;Li, S.;Zhao, Y..Red-emitting upconverting nanoparticles for photodynamic therapy in cancer cells under near-infrared excitation[J].Small,201311(11):1929-1938.
[30] Niagara Muhammad Idris;Muthu Kumara Gnanasammandhan;Jing Zhang;Paul C Ho;Ratha Mahendran;Yong Zhang.In vivo photodynamic therapy using upconversion nanoparticles as remote-controlled nanotransducers.[J].Nature medicine,201210(10):1580-1585.
[31] Severyn, B.;Liehr, R.A.;Wolicki, A.;Nguyen, K.H.;Hudak, E.M.;Ferrer, M.;Caldwell, J.S.;Hermes, J.D.;Li, J.;Tudor, M..Parsimonious discovery of synergistic drug combinations.[J].ACS Chemical Biology,201112(12):1391-1398.
[32] Chen, Qian;Wang, Xin;Wang, Chao;Feng, Liangzhu;Li, Yonggang;Liu, Zhuang.Drug-Induced Self-Assembly of Modified Albumins as Nano-theranostics for Tumor-Targeted Combination Therapy[J].ACS nano,20155(5):5223-5233.
[33] Gan Tian;Zhanjun Gu;Liangjun Zhou;Wenyan Yin;Xiaoxiao Liu;Liang Yan;Shan Jin;Wenlu Ren;Gengmei Xing;Shoujian Li;Yuliang Zhao.Mn~(2+) Dopant-Controlled Synthesis of NaYF_4:Yb/Er Upconversion Nanoparticles for in vivo Imaging and Drug Delivery[J].Advanced Materials,20129(9):1226-1231.
[34] Yuan, H.;Chong, H.;Wang, B.;Zhu, C.;Liu, L.;Yang, Q.;Lv, F.;Wang, S..Chemical molecule-induced light-activated system for anticancer and antifungal activities[J].Journal of the American Chemical Society,201232(32):13184-13187.
[35] Shun Yang;Najun Li;Zhuang Liu.Amphophilic copolymer coated upconversion nanoparticles for near-infrared light-triggered dual anticancer treatment[J].Nanoscale,201424(24):14903-14910.
[36] Arian, D.;Kovbasyuk, L.;Mokhir, A..1,9-dialkoxyanthracene as a ~1O_2-sensitive linker[J].Journal of the American Chemical Society,201111(11):3972-3980.
[37] Lucky, Sasidharan Swarnalatha;Soo, Khee Chee;Zhang, Yong.Nanoparticles in Photodynamic Therapy[J].Chemical Reviews,20154(4):1990-2042.
[38] Tian, B.;Wang, C.;Zhang, S.;Feng, L.;Liu, Z..Photothermally enhanced photodynamic therapy delivered by nano-graphene oxide[J].ACS nano,20119(9):7000-7009.
[39] Wang,Y.;Wang,H.;Liu,D.;Song,S.;Wang,X.;Zhang,H..Graphene oxide covalently grafted upconversion nanoparticles for combined NIR mediated imaging and photothermal/photodynamic cancer therapy[J].Biomaterials,201331(31):7715-7724.
[40] Chen,Q.;Wang,C.;Cheng,L.;He,W.;Cheng,Z.;Liu,Z..Protein modified upconversion nanoparticles for imaging-guided combined photothermal and photodynamic therapy[J].Biomaterials,20149(9):2915-2923.
[41] Xiao, Zeyu.CuS nanoparticles: clinically favorable materials for photothermal applications?[J].Nanomedicine,20143(3):373-375.
[42] Mintzer, M.A.;Simanek, E.E..Nonviral vectors for gene delivery[J].Chemical Reviews,20092(2):259-302.
[43] Ferrer-Miralles N;Vazquez E;Villaverde A.Membrane-active peptides for non-viral gene therapy: making the safest easier.[J].Trends in biotechnology,20085(5):267-275.
[44] Muthu Kumara Gnanasammandhan Jayakumar;Akshaya Bansal;Kai Huang;Risheng Yao;Bing Nan Li;Yong Zhang.Near-Infrared-Light-Based Nano- Platform Boosts Endosomal Escape and Controls Gene Knockdown in Vivo[J].ACS nano,20145(5):4848-4858.
[45] Wenyi Gu;Zhongfan Jia;Nghia P. Truong.Polymer Nanocarrier System for Endosome Escape and Timed Release of siRNA with Complete Gene Silencing and Cell Death in Cancer Cells[J].Biomacromolecules,201310(10):3386-3389.
[46] Thariat,J.;Hannoun-Levi,J.-M.;SunMyint,A.;Vuong,T.;Gérard,J.-P..Past, present, and future of radiotherapy for the benefit of patients[J].Nature reviews. Clinical oncology,20131(1):52-60.
[47] Hainfeld,JF;Dilmanian,FA;Slatkin,DN;Smilowitz,HM.Radiotherapy enhancement with gold nanoparticles.[J].Journal of Pharmacy and Pharmacology,20088(8):977-985.
[48] Zhang, Chen;Zhao, Kuaile;Bu, Wenbo;Ni, Dalong;Liu, Yanyan;Feng, Jingwei;Shi, Jianlin.Marriage of Scintillator and Semiconductor for Synchronous Radiotherapy and Deep Photodynamic Therapy with Diminished Oxygen Dependence[J].Angewandte Chemie,20156(6):1770-1774.
[49] Lv, Ruichan;Yang, Piaoping;He, Fei;Gai, Shili;Li, Chunxia;Dai, Yunlu;Yang, Guixin;Lin, Jun.A Yolk-like Multifunctional Platform for Multimodal Imaging and Synergistic Therapy Triggered by a Single Near-Infrared Light[J].ACS nano,20152(2):1630-1647.
[50] Wang, Y.-F.;Liu, G.-Y.;Sun, L.-D.;Xiao, J.-W.;Zhou, J.-C.;Yan, C.-H..Nd3+-sensitized upconversion nanophosphors: Efficient in vivo bioimaging probes with minimized heating effect[J].ACS nano,20138(8):7200-7206.
[51] Zhan, QQ;Qian, J;Liang, HJ;Somesfalean, G;Wang, D;He, SL;Zhang, ZG;Andersson-Engels, S.Using 915 nm Laser Excited Tm(3+)/Er(3+)/Ho(3+)-Doped NaYbF4 Upconversion Nanoparticles for in Vitro and Deeper in Vivo Bioimaging without Overheating Irradiation[J].ACS nano,20115(5):3744-3757.
[52] Wenqiang Zou;Cindy Visser;Jeremio A.Maduro;Maxim S. Pshenichnikov;Jan C. Hummelen.Broadband dye-sensitized upconversion of near-infrared light[J].Nature photonics,20128(8):560-564.
[53] Jin, J.;Gu, Y.-J.;Man, C.W.-Y.;Cheng, J.;Xu, Z.;Zhang, Y.;Wang, H.;Lee, V.H.-Y.;Cheng, S.H.;Wong, W.-T..Polymer-coated NaYF_4:Yb~(3+), Er~(3+) upconversion nanoparticles for charge-dependent cellular imaging[J].ACS nano,201110(10):7838-7847.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%