DNA Analogues Modified at the Nonlinking Positions of Phosphorus.
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[1] Ryan L Setten,et al. The current state and future directions of RNAi-based therapeutics , 2019, Nature Reviews Drug Discovery.
[2] M. Manoharan,et al. Re-Engineering RNA Molecules into Therapeutic Agents. , 2019, Accounts of chemical research.
[3] C. Bennett. Therapeutic Antisense Oligonucleotides Are Coming of Age. , 2019, Annual review of medicine.
[4] S. Dowdy,et al. GalNAc-siRNA Conjugates: Leading the Way for Delivery of RNAi Therapeutics. , 2018, Nucleic acid therapeutics.
[5] S. Crooke,et al. RNA-Targeted Therapeutics. , 2018, Cell metabolism.
[6] D. Corey,et al. Chemistry, mechanism and clinical status of antisense oligonucleotides and duplex RNAs , 2017, Nucleic acids research.
[7] anastasia. khvorova,et al. The chemical evolution of oligonucleotide therapies of clinical utility , 2017, Nature Biotechnology.
[8] M. Caruthers,et al. Boranephosphonate DNA-Mediated Metallization of Single-Walled Carbon Nanotubes , 2017 .
[9] M. Caruthers,et al. Pyridinium Boranephosphonate Modified DNA Oligonucleotides. , 2017, The Journal of organic chemistry.
[10] M. Caruthers,et al. Peptide-substituted oligonucleotide synthesis and non-toxic, passive cell delivery , 2016, Signal Transduction and Targeted Therapy.
[11] P. Seth,et al. The Medicinal Chemistry of Therapeutic Oligonucleotides. , 2016, Journal of medicinal chemistry.
[12] M. Caruthers,et al. Solid-Phase Synthesis, Hybridizing Ability, Uptake, and Nuclease Resistant Profiles of Position-Selective Cationic and Hydrophobic Phosphotriester Oligonucleotides. , 2015, The Journal of organic chemistry.
[13] Israel Steinfeld,et al. Chemically modified guide RNAs enhance CRISPR-Cas genome editing in human primary cells , 2015, Nature Biotechnology.
[14] M. Caruthers,et al. Oxidative substitution of boranephosphonate diesters as a route to post-synthetically modified DNA. , 2015, Journal of the American Chemical Society.
[15] Fritz Eckstein,et al. Phosphorothioates, essential components of therapeutic oligonucleotides. , 2014, Nucleic acid therapeutics.
[16] Akiko Eguchi,et al. Efficient delivery of RNAi prodrugs containing reversible charge-neutralizing phosphotriester backbone modifications , 2014, Nature Biotechnology.
[17] Eric E. Swayze,et al. Synthesis, biophysical properties and biological activity of second generation antisense oligonucleotides containing chiral phosphorothioate linkages , 2014, Nucleic acids research.
[18] J. Homola,et al. 5′-O-Methylphosphonate nucleic acids—new modified DNAs that increase the Escherichia coli RNase H cleavage rate of hybrid duplexes , 2014, Nucleic acids research.
[19] M. Caruthers,et al. Silver nanoassemblies constructed from boranephosphonate DNA. , 2013, Journal of the American Chemical Society.
[20] M. Caruthers,et al. Reduction of metal ions by boranephosphonate DNA. , 2012, Organic & biomolecular chemistry.
[21] M. Caruthers,et al. Alkynyl phosphonate DNA: a versatile "click"able backbone for DNA-based biological applications. , 2012, Journal of the American Chemical Society.
[22] M. Caruthers,et al. Solid-phase synthesis, thermal denaturation studies, nuclease resistance, and cellular uptake of (oligodeoxyribonucleoside)methylborane phosphine-DNA chimeras. , 2011, Journal of the American Chemical Society.
[23] M. Caruthers,et al. Synthesis And Biological Activity of Borane Phosphonate DNA , 2011 .
[24] T. Brown,et al. Click chemistry with DNA. , 2010, Chemical Society reviews.
[25] Emily M. LeProust,et al. Synthesis of high-quality libraries of long (150mer) oligonucleotides by a novel depurination controlled process , 2010, Nucleic acids research.
[26] T. Wada,et al. Solid-phase synthesis of stereoregular oligodeoxyribonucleoside phosphorothioates using bicyclic oxazaphospholidine derivatives as monomer units. , 2008, Journal of the American Chemical Society.
[27] M. Caruthers,et al. Synthesis and Biochemical Activity of New Oligonucleotide Analogs , 2008 .
[28] M. Caruthers,et al. Synthesis and Biological Activity of Phosphonocarboxylate DNA , 2007, Nucleosides, nucleotides & nucleic acids.
[29] M. Dobrikov,et al. Nucleoside and oligonucleoside boranophosphates: chemistry and properties. , 2007, Chemical reviews.
[30] M. Caruthers,et al. Synthesis of mixed sequence borane phosphonate DNA. , 2006, Journal of the American Chemical Society.
[31] K. Alexander,et al. High potency silencing by single-stranded boranophosphate siRNA , 2006, Nucleic acids research.
[32] M. Caruthers,et al. Synthesis and biochemical evaluation of phosphonoformate oligodeoxyribonucleotides. , 2006, Journal of the American Chemical Society.
[33] M. Caruthers,et al. Biochemical properties of phosphonoacetate and thiophosphonoacetate oligodeoxyribonucleotides. , 2003, Nucleic acids research.
[34] M. Caruthers,et al. Solid-phase chemical synthesis of phosphonoacetate and thiophosphonoacetate oligodeoxynucleotides. , 2003, Journal of the American Chemical Society.
[35] D. Barawkar,et al. Synthesis, biophysical properties, and nuclease resistance properties of mixed backbone oligodeoxynucleotides containing cationic internucleoside guanidinium linkages: deoxynucleic guanidine/DNA chimeras. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[36] B. Shaw,et al. H-PHOSPHONATE APPROACH FOR SOLID-PHASE SYNTHESIS OF OLIGODEOXYRIBONUCLEOSIDE BORANOPHOSPHATES AND THEIR CHARACTERIZATION , 1998 .
[37] W. Stec,et al. Diastereomers of Nucleoside 3'-O-(2-Thio-1,3,2-oxathia(selena)phospholanes): Building Blocks for Stereocontrolled Synthesis of Oligo(nucleoside phosphorothioate)s , 1995 .
[38] M. Caruthers,et al. Chemical synthesis of DNA and DNA analogs , 1991 .
[39] P. Miller. Oligonucleoside Methylphosphonates as Antisense Reagents , 1991, Bio/Technology.
[40] B. Shaw,et al. Boron-containing nucleic acids. 2. Synthesis of oligodeoxynucleoside boranophosphates , 1990 .
[41] M. Caruthers,et al. Synthesis of deoxyoligonucleotides on a polymer support , 1981 .
[42] K. Alexander,et al. RNA interference using boranophosphate siRNAs: structure-activity relationships. , 2004, Nucleic acids research.