[1] | Miller R A,Presley A D,Francis M B.Self-Assembling Light-Harvesting Systems from Synthetically Modified Tobacco Mosaic Virus Coat Proteins[J]. J Am Chem Soc,2007,129(11):3104-3109. | [2] | Luckanagul J,Lee L A,Nguyen Q L,et al.Porous Alginate Hydrogel Functionalized with Virus as Three-Dimensional Scaffolds for Bone Differentiation[J]. Biomacromolecules,2012,13(12):3949-3958. | [3] | Zan X J,Feng S,Balizan E,et al.Facile Method for Large Scale Alignment of One Dimensional Nanoparticles and Control over Myoblast Orientation and Differentiation[J]. ACS Nano,2013,7(10):8385-8396. | [4] | McCormick A A,Corbo T A,Wykoff-Clary S,et al. Chemical Conjugate TMV-Peptide Bivalent Fusion Vaccines Improve Cellular Immunity and Tumor Protection[J]. Bioconjug Chem,2006,17(5):1330-1338. | [5] | McCormick A A,Palmer K E. Genetically Engineered Tobacco Mosaic Virus as Nanoparticle Vaccines[J]. Expert Rev Vaccines,2008,7(1):33-41. | [6] | Fan X Z,Pomerantseva E,Gnerlich M,et al.Tobacco Mosaic Virus:A Biological Building Block for Micro/Nano/Bio Systems[J]. J Vac Sci Technol A,2013,31(5):050815. | [7] | Niu Z W,Liu J,Lee L A,et al.Biological Templated Synthesis of Water-Soluble Conductive Polymeric Nanowires[J]. Nano Lett,2007,7(12):3729-3733. | [8] | Kaur G,Valarmathi M T,Potts J D,et al.Regulation of Osteogenic Differentiation of Rat Bone Marrow Stromal Cells on 2D Nanorod Substrates[J]. Biomaterials,2010,31(7):1732-1741. | [9] | Chen L M,Zhao X,Lin Y,et al.A Supramolecular Strategy to Assemble Multifunctional Viral Nanoparticles[J]. Chem Commun,2013,49(83):9678-9680. | [10] | Lee S Y,Royston E,Culver J N,et al.Improved Metal Cluster Deposition on A Genetically Engineered Tobacco Mosaic Virus Template[J]. Nanotechnology,2005,16(7):S435-S441. | [11] | Lim J S,Kim S M,Lee S Y,et al.Biotemplated Aqueous-Phase Palladium Crystallization in the Absence of External Reducing Agents[J]. Nano Lett,2010,10(10):3863-3867. | [12] | Smith M L,Lindbo J A,Dillard-Telm S,et al.Modified Tobacco Mosaic Virus Particles as Scaffolds for Display of Protein Antigens for Vaccine Applications[J]. Virology,2006,348(2):475-488. | [13] | Wei D Q,Zhao X,Chen L M,et al.Viral Nanoparticles as Antigen Carriers:Influence of Shape on Humoral Immune Responses in Vivo[J]. RSC Adv,2014,4(44):23017-23021. | [14] | Atabekov J,Nikitin N,Arkhipenko M,et al.Thermal Transition of Native Tobacco Mosaic Virus and RNA-Free Viral Proteins into Spherical Nanoparticles[J]. J Gen Virol,2011,92(2):453-456. | [15] | Karpova O,Nikitin N,Chirkov S,et al.Immunogenic Compositions Assembled from Tobacco Mosaic Virus-Generated Spherical Particle Platforms and Foreign Antigens[J]. J Gen Virol,2012,93(2):400-407. | [16] | Trifonova E,Nikitin N,Gmyl A,et al.Complexes Assembled from TMV-Derived Spherical Particles and Entire Virions of Heterogeneous Nature[J]. J Biomol Struct Dyn,2014,32(8):1193-1201. | [17] | Higuchi R,Krummel B,Saiki R K.A General-Method of in Vitro Preparation and Specific Mutagenesis of DNA Fragments-Study of Protein and DNA Interactions[J]. Nucleic Acids Res,1988,16(15):7351-7367. | [18] | Bruckman M A,Kaur G,Lee L A,et al.Surface Modification of Tobacco Mosaic Virus with “Click” Chemistry[J]. Chembiochem,2008,9(4):519-523. | [19] | Dobrov E N,Nikitin N A,Trifonova E A,et al.Beta-Structure of the Coat Protein Subunits in Spherical Particles Generated by Tobacco Mosaic Virus Thermal Denaturation[J]. J Biomol Struct Dyn,2014,32(5):701-708. |
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