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Yakugaku Zasshi : Journal of the Pharmaceutical Society of Japan|February 26, 2000
[Syntheses and properties of conformationally restrained nucleosides and oligonucleotides analogues]S ObikaNucleosides, Nucleotides & Nucleic Acids|September 21, 2001
Promotion of triplex formation by 2'-O,4'-C-methylene bridged nucleic acid (2',4'-BNA) modification: thermodynamic and kinetic studiesH Torigoe, S Obika, T ImanishiNucleic Acids Symposium Series|August 9, 2003
Promotion of triplex formation by a fixed N-form sugar puckering: thermodynamic and kinetic studiesH Torigoe, S Obika, T ImanishiCarbohydrate Polymers|September 30, 2014
Nucleic acid delivery systems based on poly(galactosyl ureaethyl methacrylate-b-dimethylamino ethyl methacrylate) diblock copolymersM C Munisso, S Obika, T YamaokaNucleic Acids Research. Supplement (2001)|July 3, 2003
Triplex formation involving 2',4'-BNA with 2-pyridone base analogue: efficient and selective recognition of C:G interruptionH Torigoe, Y Hari, S Obika, et al.Nucleic Acids Symposium Series|August 9, 2003
Synthesis and triplex forming ability of conformationally locked oligonucleotides containing unnatural nucleobases: efficient recognition of a C.G interruptionS Obika, Y Hari, M Sekiguchi, et al.Nucleic Acids Research. Supplement (2001)|July 3, 2003
2',4'-BNA bearing unnatural nucleobases: toward the expansion of the target sequence of double-stranded DNA in triplex formationS Obika, Y Hari, H Inohara, et al.Bioorganic & Medicinal Chemistry Letters|March 31, 1999
Preparation and properties of 2',5'-linked oligonucleotide analogues containing 3'-O,4'-C-methyleneribonucleosidesS Obika, K Morio, Y Hari, et al.The Journal of Biological Chemistry|October 18, 2000
2'-O,4'-C-methylene bridged nucleic acid modification promotes pyrimidine motif triplex DNA formation at physiological pH: thermodynamic and kinetic studiesH Torigoe, Y Hari, M Sekiguchi, et al.Organic & Biomolecular Chemistry|April 9, 2015
C5-azobenzene-functionalized locked nucleic acid uridine: isomerization properties, hybridization ability, and enzymatic stabilityK Morihiro, O Hasegawa, S Mori, et al.Pageof 2