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81por Lin, Chenxiang, Perrault, Steven D., Kwak, Minseok, Graf, Franziska, Shih, William M.“…Most previously reported methods for purifying DNA-origami nanostructures rely on agarose-gel electrophoresis (AGE) for separation. …”
Publicado 2013
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83por Udomprasert, Anuttara, Bongiovanni, Marie N., Sha, Ruojie, Sherman, William B., Wang, Tong, Arora, Paramjit S., Canary, James W., Gras, Sally L., Seeman, Nadrian C.“…Here we show that DNA origami nanotubes can sheathe amyloid fibrils formed within them. …”
Publicado 2014
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84por Kocabey, Samet, Kempter, Susanne, List, Jonathan, Xing, Yongzheng, Bae, Wooli, Schiffels, Daniel, Shih, William M., Simmel, Friedrich C., Liedl, Tim“…Different sets of multimerization oligonucleotides added to bilayer-bound origami block structures induced the growth of either linear polymers or two-dimensional lattices on the membrane. …”
Publicado 2015
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85por Henning-Knechtel, Anja, Wiens, Matthew, Lakatos, Mathias, Heerwig, Andreas, Ostermaier, Frieder, Haufe, Nora, Mertig, Michael“…Here we study manipulation and positioning of pristine and of gold nanoparticle-conjugated tubular DNA origami structures using ac dielectrophoresis. The dielectrophoretic behavior was investigated employing fluorescence microscopy. …”
Publicado 2016
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86por Hemmig, Elisa A., Creatore, Celestino, Wünsch, Bettina, Hecker, Lisa, Mair, Philip, Parker, M. Andy, Emmott, Stephen, Tinnefeld, Philip, Keyser, Ulrich F., Chin, Alex W.“…Here, we present a programmable antenna array on a DNA origami platform that enables the implementation of rationally designed antenna structures. …”
Publicado 2016
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87“…Origami-inspired engineering design is increasingly used in the development of self-folding structures. …”
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88por Funke, Jonas J., Ketterer, Philip, Lieleg, Corinna, Schunter, Sarah, Korber, Philipp, Dietz, Hendrik“…We accomplish this in a direct measurement by integrating two nucleosomes into a DNA origami–based force spectrometer, which enabled subnanometer-resolution measurements of nucleosome-nucleosome distance frequencies via single-particle electron microscopy imaging. …”
Publicado 2016
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89“…We use our coarse-grained model with a set of secondary structural motifs to predict the equilibrium solution structures of 45 DX-based DNA origami nanoparticles including a tetrahedron, octahedron, icosahedron, cuboctahedron and reinforced cube. …”
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90por Zhang, Kan, Jung, Yei Hwan, Mikael, Solomon, Seo, Jung-Hun, Kim, Munho, Mi, Hongyi, Zhou, Han, Xia, Zhenyang, Zhou, Weidong, Gong, Shaoqin, Ma, Zhenqiang“…Here we report a simple origami approach for fabricating single-crystalline silicon-based focal plane arrays and artificial compound eyes that have hemisphere-like structures. …”
Publicado 2017
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91por Strauss, Maximilian T., Schueder, Florian, Haas, Daniel, Nickels, Philipp C., Jungmann, Ralf“…Here we use DNA-PAINT super-resolution microscopy to quantify both incorporation and accessibility of all individual strands in DNA origami with molecular resolution. We find that strand incorporation strongly correlates with the position in the structure, ranging from a minimum of 48% on the edges to a maximum of 95% in the center. …”
Publicado 2018
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92“…But the physical correspondence between the cosmic web and structural engineering or textile ‘spiderwebs’ is even deeper than previously known, and also extends to origami tessellations. Here, we explain that in a good structure-formation approximation known as the adhesion model, threads of the cosmic web form a spiderweb, i.e. can be strung up to be entirely in tension. …”
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93“…Origami-inspired mechanical metamaterials have recently drawn increasing attention since their flexible mechanical performance has been greatly enhanced by introducing origami patterns to the thin-shell structures. …”
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94por Snodin, Benedict E K, Schreck, John S, Romano, Flavio, Louis, Ard A, Doye, Jonathan P K“…We use the oxDNA coarse-grained model to provide a detailed characterization of the fundamental structural properties of DNA origami, focussing on archetypal 2D and 3D origami. …”
Publicado 2019
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95“…We provide a comprehensive reference dataset of the kinetics of a multilayer DNA origami folding. To this end, we measured the folding kinetics of every staple strand and its two terminal segments during constant-temperature assembly of a multilayer DNA origami object. …”
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96por Gabler, Felix, Karnaushenko, Dmitriy D., Karnaushenko, Daniil, Schmidt, Oliver G.“…This form of magnetic Origami creates micro energy storage devices with excellent performance and high yield unleashing the full potential of magnetic field assisted assembly for on-chip manufacturing processes.…”
Publicado 2019
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97por Li, Min, Shen, Lian, Jing, Liqiao, Xu, Su, Zheng, Bin, Lin, Xiao, Yang, Yihao, Wang, Zuojia, Chen, Hongsheng“…Here, a mechanically tunable metawall capable of either absorbing light energy or modulating light momentum, by incorporating the magnetic meta‐atoms into a 3D printed origami grating, is theoretically designed and experimentally realized. …”
Publicado 2019
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98por Dunn, Katherine E.Enlace del recurso
Publicado 2020
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99“…Temporal and spatial control over polydopamine formation on the nanoscale can be achieved by installing an irradiation‐sensitive polymerization system on DNA origami. Precisely distributed G‐quadruplex structures on the DNA template serve as anchors for embedding the photosensitizer protoporphyrin IX, which—upon irradiation with visible light—induces the multistep oxidation of dopamine to polydopamine, producing polymeric structures on designated areas within the origami framework. …”
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100por Zhang, Ping, Liu, Xiaoguo, Liu, Pi, Wang, Fei, Ariyama, Hirotaka, Ando, Toshio, Lin, Jianping, Wang, Lihua, Hu, Jun, Li, Bin, Fan, Chunhai“…The DNA origami epitopes (DOEs) allows programmed spatial distribution of epitope spikes, which enables direct imaging of functional complexes with atomic force microscopy (AFM). …”
Publicado 2020
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