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Titlebook: RNA Nanotechnology and Therapeutics; Methods and Protocol Peixuan Guo,Farzin Haque Book 2015 Springer Science+Business Media New York 2015

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Laetitia Evadé,Eric Dausse,Said Taouji,Emilie Daguerre,Eric Chevet,Jean-Jacques Toulméavy mass and low mobility of 3d-electrons (as compared to the values for these parameters in the “conventional” semiconductors), the question arises whether the band model is a legitimate representation of the energy states. Several features of the transition metal compounds have slowed down progres
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er systems. The aim of the Insti~ute was to bring together specialists in this subject. An important outcome of this Conference, as many of the delegates have pointed out to me, was complementing theoretical concepts and practical applications in both software and hardware. The reader will find pape
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,Aptamer-Mediated Nanoparticle Interactions: From Oligonucleotide–Protein Complexes to SELEX Screensonto the chemiluminescer-containing bead. Using this technology we have screened oligonucleotide libraries and monitored aptamer–protein interactions. This constitutes the basis for aptamer-based analytical assays.
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,Methods for Assembling B-Cell Lymphoma Specific and Internalizing Aptamer–siRNA Nanoparticles Via trs and are localized to the cytoplasm, resulting in robust gene silencing of STAT3 mRNAs in a variety of B-cell lines. Moreover, these nanoparticles do not induce cell proliferation and apoptosis. Collectively, aptamer-mediated delivery strategies provide a toolset to become a more widely used therapeutic modality for the treatment of diseases.
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Overview of Methods in RNA Nanotechnology: Synthesis, Purification, and Characterization of RNA Nanize, structure, and stoichiometry; this pioneering concept demonstrated in 1998 (Guo et al., . 2:149–155, 1998; featured in .) has emerged as a new field that also involves materials engineering and synthetic structural biology (Guo, . 5:833–842, 2010). The field of RNA nanotechnology has skyrockete
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