[1] | Torre L A,Bray F,Siegel R L,et al. Global Cancer Statistics,2012[J]. CA Cancer J Clin,2015,65(2):87-108. | [2] | Chen W,Zheng R,Baade P D,et al. Cancer Statistics in China,2015[J]. CA Cancer J Clin,2016,66(2):115-132. | [3] | LI Shihong,WANG Shaojun. Doxorubicin Cardiotoxicity Pathogenesis Recent Exhibition[J]. J Clin Cardiol,2005,21(4):249-252.(in Chinese) 李世红,王绍军. 阿霉素心脏毒性发病机制新近展[J]. 临床心血管病杂志,2005,21(4):249-252. | [4] | HAN Linlin,LIU Ying. Evaluation of Cisplatin on Renal Toxicity Using Integrated Backscatter Parameters[J]. J Ultrasound Tradit Chinese Med,2008,24(7):638-640(in Chinese). 韩琳琳,刘颖. 超声背向散射积分参数评价顺铂对肾脏毒性的临床研究[J]. 中国超声医学杂志,2008,24(7):638-640. | [5] | TIAN Jie,YU Pei,SUN Wenxuan,et al.Effects of Cyclophosphamide on Bone Marrow Hematopoietic Cells in Normal Mice and Its Mechanism[J]. Chinese J Exp Hematol,2012,20(6):1316-1321(in Chinese). 田杰,于沛,孙文宣,等. 环磷酰胺对正常小鼠骨髓造血细胞的影响及其作用机制[J]. 中国实验血液学杂志,2012,20(6):1316-1321. | [6] | WU Cuifang,LIU Yulan,JIA Sujie. Effect of Vincristine Chemotherapy on Neurotoxicity in 3 Patients[J]. Adver Drug React J,2009,11(5):362-363(in Chinese). 吴翠芳,刘玉兰,贾素洁. 长春新碱化疗方案引起神经毒性反应3例[J]. 药物不良反应杂志,2009,11(5):362-363. | [7] | YIN Yatao,PENG Ying. Advances in the Research of Nanomaterials in the Treatment of Glioma[J]. Int J Neurol Neurosurg,2014,41(3):242-245(in Chinese). 訚亚涛,彭英. 纳米载体在胶质瘤治疗中的研究进展[J]. 国际神经病学神经外科学杂志,2014,41(3):242-245. | [8] | XU Hongyan,LIU Jianfeng,SONG Naling. Application of Organic Nanomaterials as Drug Carriers in Treatment of Brain Gliomas[J]. Cancer Res Prevent Treat,2013,40(11):1101-1104(in Chinese). 徐宏艳,刘鉴峰,宋娜玲. 有机纳米材料作为药物载体在脑胶质瘤治疗中的应用[J]. 肿瘤防治研究,2013,40(11):1101-1104. | [9] | ZHANG Zhenyu,XU Jian,ZHONG Ping. Progress in the Treatment of Malignant Glioma with Nano-carrier System[J]. Int J Neurol Neurosurg,2011,38(3):250-253(in Chinese). 张振宇,徐健,钟平. 纳米载体系统治疗恶性胶质瘤研究进展[J]. 国际神经病学神经外科学杂志,2011,38(3):250-253. | [10] | CUI Changchang,KE Xue,LYU Huixia. Advances in Targeted Therapy of Cancer Stem Cells[J]. Prog Pharm Sci,2016,(1):20-29(in Chinese). 崔畅畅,柯学,吕慧侠. 肿瘤干细胞靶向治疗研究进展[J]. 药学进展,2016,(1):20-29. | [11] | Hanahan D,Weinberg R A. Hallmarks of Cancer:The Next Generation[J]. Cell,2011,144(5):646-674. | [12] | DING Yanping,JI Tianjiao,SONG Xiao,et al. Advances in the Application of Nanotechnology to Identify and Regulate Tumor Microenvironment for Tumor Diagnosis and Treatment[J]. Chinese Sci Bull,2013,(24):2436-2448(in Chinese). 丁艳萍,季天骄,宋晓,等. 纳米技术识别和调控肿瘤微环境用于肿瘤诊疗的研究进展[J]. 科学通报,2013,(24):2436-2448. | [13] | Jin S,Li S,Wang C,et al. Biosafe Nanoscale Pharmaceutical Adjuvant Materials[J]. J Biomed Nanotechnol,2014,10(9):2393-2419. | [14] | Chen M,Yin M. Design and Development of Fluorescent Nanostructures for Bioimaging[J]. Prog Polym Sci,2013,39(2):365-395. | [15] | Sun M,Mullen K,Yin M. Water-soluble Perylenediimides: Design Concepts and Biological Applications[J]. Chem Soc Rev,2016,45(6):1513-1528 | [16] | Wang K R,An H W,Rong R X,et al. Fluorescence Turn-on Sensing of Protein Based on Mannose Functionalized Perylene Bisimides and Its Fluorescence Imaging[J]. Biosens Bioelectron,2014,58(1):27-32. | [17] | Sharma P,Brown S,Walter G,et al. Nanoparticles for Bioimaging[J]. Adv Colloid Interface Sci,2006,123/124/125/126:471-485. | [18] | Kahveci Z,Vazquez-Guillo R,Martinez-Tome M J,et al. New Red-Emitting Conjugated Polyelectrolyte:Stabilization by Interaction with Biomolecules and Potential Use as Drug Carriers and Bioimaging Probes[J]. ACS Appl Mater Interfaces,2016,8(3):1958-1969. | [19] | Guo Z,Park S,Yoon J,et al. Recent Progress in the Development of Near-infrared Fluorescent Probes for Bioimaging Applications[J]. Chem Soc Rev,2014,43(1):16-29. | [20] | Peng F,Su Y,Zhong Y,et al. Silicon Nanomaterials Platform for Bioimaging, Biosensing, and Cancer Therapy[J]. Acc Chem Res,2014,47(2):612-623. | [21] | Liu K,Xu Z,Yin M. Perylenediimide-cored Dendrimers and Their Bioimaging and Gene Delivery Applications[J]. Prog Polym Sci,2015,2015(46):25-54. | [22] | Huang Y,Quan B,Wei Z,et al. Self-Assembled Organic Functional Nanotubes and Nanorods and Their Sensory Properties[J]. J Phys Chem C,2009,113(10):3929-3933. | [23] | Huang Y,Hu J,Kuang W,et al. Modulating Helicity Through Amphiphilicity-Tuning Supramolecular Interactions for the Controlled Assembly of Perylenes[J]. Chem Commun(Camb),2011,47(19):5554-5556. | [24] | Hu J,Kuang W,Deng K,et al. Self-Assembled Sugar-Substituted Perylene Diimide Nanostructures with Homochirality and High Gas Sensitivity[J]. Adv Funct Mater,2012,22(19):4149-4158. | [25] | Huang Y,Wang J,Wei Z. Modulating Supramolecular Helicity and Electrical Conductivity of Perylene Dyes Through an Achiral Alkyl Chain[J]. Chem Commun(Camb),2014,50(61):8343-8345. | [26] | Huang Y,Wang J,Zhai H,et al. Helical Supramolecular Aggregates of Sugar-based Perylene Dyes:The Effect of Core-substituted Groups[J]. Soft Matter,2014,10(40):7920-7924. | [27] | Fan Q,Cheng K,Yang Z,et al. Perylene-diimide-based Nanoparticles as Highly Efficient Photoacoustic Agents for Deep Brain Tumor Imaging in Living Mice[J]. Adv Mater,2015,27(5):843-847. | [28] | Le U M,Shaker D S,Sloat B R,et al. A Thermo-sensitive Polymeric Gel Containing a Gadolinium(Gd) Compound Encapsulated into Liposomes Significantly Extended the Retention of the Gd in Tumors[J]. Drug Dev Ind Pharm,2008,34(4):413-418. | [29] | Quan C Y,Chen J X,Wang H Y,et al. Core-shell Nanosized Assemblies Mediated by the Alpha-beta Cyclodextrin Dimer with a Tumor-triggered Targeting Property[J]. ACS Nano,2010,4(7):4211-4219. | [30] | Lee W H,Bebawy M,Loo C Y,et al. Fabrication of Curcumin Micellar Nanoparticles with Enhanced Anti-cancer Activity[J]. J Biomed Nanotechnol,2015,11(6):1093-1105. | [31] | Jana A,Nguyen K T,Li X,et al. Perylene-derived Single-component Organic Nanoparticles with Tunable Emission:Efficient Anticancer Drug Carriers with Real-time Monitoring of Drug Release[J]. ACS Nano,2014,8(6):5939-5952. | [32] | Liu F,Li X,Zhang L,et al. Stimuli-Responsive Nanocarriers for Drug Delivery to the Central Nervous System[J]. Curr Nanosci,2016,12(1):4-17. | [33] | Xu Z,He B,Shen J,et al. Fluorescent Water-soluble Perylenediimide-cored Cationic Dendrimers:Synthesis, Optical Properties, and Cell Uptake[J]. Chem Commun,2013,49(35):3646-3648. | [34] | He B,Chu Y,Yin M,et al. Fluorescent Nanoparticle Delivered dsRNA Toward Genetic Control of Insect Pests[J]. Adv Mater,2013,25(33):4580-4584. | [35] | Jana A,Nguyen K T,Li X,et al. Perylene-derived Single-component Organic Nanoparticles with Tunable Emission:Efficient Anticancer Drug Carriers with Real-time Monitoring of Drug Release[J]. ACS Nano,2014,8(6):5939-5952. | [36] | Jin S,Li S,Wang C,et al. Biosafe Nanoscale Pharmaceutical Adjuvant Materials[J]. J Biomed Nanotechnol,2014,10(9):2393-2419. | [37] | Jones C H,Chen C K,Ravikrishnan A,et al. Overcoming Nonviral Gene Delivery Barriers:Perspective and Future[J]. Mol Pharm,2013,10(11):4082-4098. | [38] | Niven R,Pearlman R,Wedeking T,et al. Biodistribution of Radiolabeled Lipid-DNA Complexes and DNA in Mice[J]. J Pharm Sci,1998,87(11):1292-1299. | [39] | Wong P T,Tang K,Coulter A,et al. Multivalent Dendrimer Vectors with DNA Intercalation Motifs for Gene Delivery[J]. Biomacromolecules,2014,15(11):4134-4145. | [40] | Watakabe A,Sadakane O,Hata K,et al. Application of Viral Vectors to the Study of Neural Connectivities and Neural Circuits in the Marmoset Brain[J]. Dev Neurobiol,2016,77(3):354-372. | [41] | Chabaud P,Camplo M,Payet D,et al. Cationic Nucleoside Lipids for Gene Delivery[J]. Bioconjug Chem,2006,17(2):466-472. | [42] | Bell P C,Bergsma M,Dolbnya I P,et al. Transfection Mediated by Gemini Surfactants:Engineered Escape from the Endosomal Compartment[J]. J Am Chem Soc,2003,125(6):1551-1558. | [43] | Ewert K K,Evans H M,Zidovska A,et al. A Columnar Phase of Dendritic Lipid-based Cationic Liposome-DNA Complexes for Gene Delivery:Hexagonally Ordered Cylindrical Micelles Embedded in a DNA Honeycomb Lattice[J]. J Am Chem Soc,2006,128(12):3998-4006. | [44] | Ewert K,Ahmad A,Evans H M,et al. Efficient Synthesis and Cell-transfection Properties of a New Multivalent Cationic Lipid for Nonviral Gene Delivery[J]. J Med Chem,2002,45(23):5023-5029. | [45] | Takahashi T,Hirose J,Kojima C,et al. Synthesis of Poly(amidoamine) Dendron-bearing Lipids with Poly(ethylene glycol) Grafts and Their Use for Stabilization of Nonviral Gene Vectors[J]. Bioconjug Chem,2007,18(4):1163-1169. | [46] | Choi S H,Jin S E,Lee M K,et al. Novel Cationic Solid Lipid Nanoparticles Enhanced p53 Gene Transfer to Lung Cancer Cells[J]. Eur J Pharm Biopharm,2008,68(3):545-554. | [47] | Kim T I,Baek J U,Zhe B C,et al. Arginine-conjugated Polypropylenimine Dendrimer as a Non-toxic and Efficient Gene Delivery Carrier[J]. Biomaterials,2007,28(11):2061-2067. | [48] | Liu Z,Winters M,Holodniy M,et al. siRNA Delivery into Human T Cells and Primary Cells with Carbon-Nanotube Transporters[J]. Angew Chem Int Ed Engl,2007,46(12):2023-2027. | [49] | Jones C H,Chen C K,Ravikrishnan A,et al. Overcoming Nonviral Gene Delivery Barriers: Perspective and Future[J]. Mol Pharm,2013,10(11):4082-4098. | [50] | You S,Cai Q,Zheng Y,et al. Perylene-cored Star-Shaped Polycations for Fluorescent Gene Vectors and Bioimaging[J]. ACS Appl Mater Interfaces,2014,6(18):16327-16334. | [51] | Xu Z,Guo K,Yu J,et al. A Unique Perylene-based DNA Intercalator:Localization in Cell Nuclei and Inhibition of Cancer Cells and Tumors[J]. Small,2014,10(20):4087-4092. | [52] | Fan Q,Cheng K,Yang Z,et al. Perylene-diimide-based Nanoparticles as Highly Efficient Photoacoustic Agents for Deep Brain Tumor Imaging in Living Mice[J]. Adv Mater,2015,27(5):843-847. | [53] | Wang Q Q,Cheng N,Zheng X W,et al. Synthesis of Organic Nitrates of Luteolin as a Novel Class of Potent Aldose Reductase Inhibitors[J]. Bioorg Med Chem,2013,21(14):4301-4310. | [54] | GUO Jia,LI Fengran,LIU Yang,et al. Advances in DNA and RNA G-quadruplexes and Their Small Molecule Ligands[J]. Int J Pharm,2012,39(5):358-367(in Chinese). 郭佳,李凤然,刘洋,等. DNA和RNA G-四链体及其小分子配体研究进展[J]. 国际药学研究杂志,2012,39(5):358-367. | [55] | Lyu Y,Fang Y,Miao Q,et al. Intraparticle Molecular Orbital Engineering of Semiconducting Polymer Nanoparticles as Amplified Theranostics for in Vivo Photoacoustic Imaging and Photothermal Therapy[J]. ACS Nano,2016,10(4):4472-4481. | [56] | Daublain P,Siegmund K,Hariharan M,et al. Photoinduced Charge Separation in Pyrenedicarboxamide-linked DNA Hairpins[J]. Photochem Photobiol Sci,2008,7(12):1501-1508. | [57] | Menacher F,Wagenknecht H A. Ratiometric Molecular Beacons Based on the Perylene Bisimide as a Dimer Internal DNA Base Substitution[J]. Photochem Photobiol Sci,2011,10(8):1275-1278. | [58] | XU Yewei,ZHU Fanghua,ZHANG Lin. Synthesis and Application of Perylene Imide Derivatives[J]. Mater Rev,2010,24(21):79- 85( in Chinese). 徐业伟,朱方华,张林. 苝酰亚胺衍生物的合成及其应用进展[J]. 材料导报,2010,24(21):79-85. | [59] | Liu H,Xu Y,Li F,et al. Light-driven Conformational Switch of I-motif DNA[J]. Angew Chem Int Ed,2007,46(14):2515-2517. | [60] | Yin M,Zhang S. A Unique Perylene-based DNA Intercalator:Localization in Cell Nuclei and Inhibition of Cancer Cells and Tumors[J]. Small,2016,12(2):4087-4092. | [61] | Casagrande L,Cordeiro M M,Nor S A,et al. Dental Pulp Stem Cells in Regenerative Dentistry[J]. Odontology,2011,99(1):1-7. | [62] | Aslan A,Gulluce M,Agar G,et al. Mutagenic and Antimutagenic Properties of Some Lichen Species Grown in the Eastern Anatolia Region of Turkey[J]. Tsitol Genet,2012,46(5):36-42. | [63] | Gao F,Chao H,Wang J Q,et al. Targeting Topoisomerase Ⅱ with the Chiral DNA-intercalating Ruthenium(Ⅱ) Polypyridyl Complexes[J]. J Biol Inorg Chem,2007,12(7):1015-1027. | [64] | Xue L,Ranjan N,Arya D P. Synthesis and Spectroscopic Studies of the Aminoglycoside(neomycin)-perylene Conjugate Binding to Human Telomeric DNA[J]. Biochemistry,2011,50(14):2838-2849. | [65] | Tuntiwechapikul W,Salazar M. Cleavage of Telomeric G-Quadruplex DNA with Perylene-EDTA*Fe(Ⅱ)[J]. Biochemistry,2001,40(45):13652-13658. | [66] | Tuntiwechapikul W,Lee J T,Salazar M. Design and Synthesis of the G-Quadruplex-specific Cleaving Reagent Perylene-EDTA·Iron(Ⅱ)[J]. J Am Chem Soc,2001,123(23):5606-5607. | [67] | Fedoroff O Y,Salazar M,Han H,et al. NMR-Based Model of a Telomerase-inhibiting Compound Bound to G-Quadruplex DNA[J]. Biochemistry,1998,37(36):12367-12374. | [68] | Rossetti L,Franceschin M,Bianco A,et al. Perylene Diimides with Dfferent Side Chains are Selective in Inducing Different G-Quadruplex DNA Structures and in Inhibiting Telomerase[J]. Bioorg Med Chem Lett,2002,12(18):2527-2533. | [69] | Hsiang Y H,Hertzberg R,Hecht S,et al. Camptothecin Induces Protein-linked DNA Breaks via Mammalian DNA Topoisomerase Ⅰ[J]. J Biol Chem,1985,260(27):14873-14878. | [70] | Sun M,Yin W,Dong X,et al. Fluorescent Supramolecular Micelles for Imaging-guided Cancer Therapy[J]. Nanoscale,2016,8(9):5302-5312. | [71] | Reichardt N C,Martin-Lomas M,Penades S. Glyconanotechnology[J]. Chem Soc Rev,2013,42(10):4358-4376. | [72] | Jayaraman N. Multivalent Ligand Presentation as a Central Concept to Study Intricate Carbohydrate-protein Interactions[J]. Chem Soc Rev,2009,38(12):3463-3483. | [73] | Grunstein D,Maglinao M,Kikkeri R,et al. Hexameric Supramolecular Scaffold Orients Carbohydrates to Sense Bacteria[J]. J Am Chem Soc,2011,133(35):13957-13966. | [74] | Dube D H,Bertozzi C R. Glycans in Cancer and Inflammation-potential for Therapeutics and Diagnostics[J]. Nat Rev Drug Discov,2005,4(6):477-488. | [75] | Liu F T,Rabinovich G A. Galectins as Modulators of Tumour Progression[J]. Nat Rev Cancer,2005,5(1):29-41. | [76] | Ohtsubo K,Marth J D. Glycosylation in Cellular Mechanisms of Health and Disease[J]. Cell,2006,126(5):855-867. | [77] | Ellis G A,Palte M J,Raines R T. Boronate-mediated Biologic Delivery[J]. J Am Chem Soc,2012,134(8):3631-3634. | [78] | Peri F. Clustered Carbohydrates in Synthetic Vaccines[J]. Chem Soc Rev,2013,42(11):4543-4556. | [79] | Tanaka K,Fukase K. Chemical Approach to a Whole Body Imaging of Sialo-N-Linked Glycans[J]. Top Curr Chem,2015,367:201-230. | [80] | Akagi T,Ichiki T. Cell Electrophoresis on a Chip:What Can We Know from the Changes in Electrophoretic Mobility?[J]. Anal Bioanal Chem,2008,391(7):2433-2441. | [81] | Yin M,Shen J,Gropeanu R,et al. Fluorescent Core/Shell Nanoparticles for Specific Cell-nucleus Staining[J]. Small,2008,4(7):894-898. | [82] | Yin M,Feng C,Shen J,et al. Dual-responsive Interaction to Detect DNA on Template-based Fluorescent Nanotubes[J]. Small,2011,7(12):1629-1634. | [83] | Gorl D,Zhang X,Wurthner F. Molecular Assemblies of Perylene Bisimide Dyes in Water[J]. Angew Chem Int Ed,2012,51(26):6328-6348. | [84] | Krieg E,Shirman E,Weissman H,et al. Supramolecular Gel Based on a Perylene Diimide Dye:Multiple Stimuli Responsiveness, Robustness, and Photofunction[J]. J Am Chem Soc,2009,131(40):14365-14373. | [85] | Kasprzak M M,Laerke H N,Knudsen K E. Changes in Molecular Characteristics of Cereal Carbohydrates after Processing and Digestion[J]. Int J Mol Sci,2012,13(12):16833-16852. | [86] | Wang K R,An H W,Rong R X,et al. Synthesis of Biocompatible Glycodendrimer Based on Fluorescent Perylene Bisimides and Its Bioimaging[J]. Macromol Rapid Commun,2014,35(7):727-734. | [87] | Petkau K,Kaeser A,Fischer I,et al. Pre- and Postfunctionalized Self-assembled Pi-conjugated Fluorescent Organic Nanoparticles for Dual Targeting[J]. J Am Chem Soc,2011,133(42):17063-17071. | [88] | Ruff Y,Buhler E,Candau S J,et al. Glycodynamers: Dynamic Polymers Bearing Oligosaccharides Residues-Generation, Structure, Physicochemical, Component Exchange, and Lectin Binding Properties[J]. J Am Chem Soc,2010,132(8):2573-2584. | [89] | Yin M,Feng C,Shen J,et al. Dual-Responsive Interaction to Detect DNA on Template-based Fluorescent Nanotubes[J]. Small,2011,7(12):1629-1634. | [90] | Yin M,Shen J,Pflugfelder G O,et al. A Fluorescent Core-Shell Dendritic Macromolecule Specifically Stains the Extracellular Matrix[J]. J Am Chem Soc,2008,130(25):7806-7807. | [91] | Ozawa T,YoshimuraH,Kim S B. Advances in Fluorescence and Bioluminescence Imaging[J]. Anal Chem,2013,85(2):590-609. | [92] | You S,Cai Q,Müllen K,et al. pH-Sensitive Unimolecular Fluorescent Polymeric Micelles: From Volume Phase Transition to Optical Response[J]. Chem Commun(Cambridge,U.K.),2014,50(7):823-825. | [93] | Yin M,Feng C,Shen J,et al. Dual-Responsive Interaction to Detect DNA on Template-Based Fluorescent Nanotubes[J]. Small,2011,7(12):1629-1634. | [94] | Wang K R,An H W,Rong R X,et al. Fluorescence Turn-on Sensing of Protein Based on Mannose Functionalized Perylene Bisimides and Its Fluorescence Imaging[J]. Biosens Bioelectron,2014,58:27-32. | [95] | Fan Q,Cheng K,Yang Z,et al. Perylene-Diimide-Based Nanoparticles as Highly Efficient Photoacoustic Agents for Deep Brain Tumor Imaging in Living Mice[J]. Adv Mater,2015,27(5):843-847. | [96] | Huang Y,Wang J,Zhai H,et al. Helical Supramolecular Aggregates of Sugar-based Perylene Dyes:The Effect of Core-substituted Groups[J]. Soft Matter,2014,10(40):7920-7924. | [97] | Huang Y,Hu J,Kuang W,et al. Modulating Helicity Through Amphiphilicity-Tuning Supramolecular Interactions for the Controlled Assembly of Perylenes[J]. Chem Commun(Camb),2011,47(19):5554-5556. | [98] | Huang Y,Wang J,Wei Z. Modulating Supramolecular Helicity and Electrical Conductivity of Perylene Dyes Through an Achiral Alkyl Chain[J]. Chem Commun(Camb),2014,50(61):8343-8345. | [99] | Huang Y,Zhang W,Wang J,et al. Probing the Sensory Property of Perylenediimide Derivatives in Hydrazine Gas:Core-substituted Aromatic Group Effect[J]. ACS Appl Mater Interfaces,2014,6(12):9307-9313. | [100] | Reeke G J,Becker J W,Cunningham B A,et al. Structure and Function of Concanavalin A[J]. Adv Exp Med Biol,1975,55:13-33. | [101] | Rusin O,Kral V,Escobedo J O,et al. A Supramolecular Approach to Protein Labeling. A Novel Fluorescent Bioassay for Concanavalin a Activity[J]. Org Lett,2004,6(9):1373-1376. | [102] | Lundquist J J,Toone E J. The Cluster Glycoside Effect[J]. Chem Rev,2002,102(2):555-578. | [103] | Sansone F,Casnati A. Multivalent Glycocalixarenes for Recognition of Biological Macromolecules:Glycocalyx Mimics Capable of Multitasking[J]. Chem Soc Rev,2013,42(11):4623-4639. | [104] | Wang K R,An H W,Rong R X,et al. Fluorescence Turn-on Sensing of Protein Based on Mannose Functionalized Perylene Bisimides and Its Fluorescence Imaging[J]. Biosens Bioelectron,2014,58:27-32. | [105] | Heek T,Nikolaus J,Schwarzer R,et al. An Amphiphilic Perylene Imido Diester for Selective Cellular Imaging[J]. Bioconjug Chem,2013,24(2):153-158. | [106] | Yang S K,Shi X,Park S,et al. Monovalent, Clickable, Uncharged, Water-soluble Perylenediimide-cored Dendrimers for Target-specific Fluorescent Biolabeling[J]. J Am Chem Soc,2011,133(26):9964-9967. |
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