(en) Elayadi, Braasch et Corey, « Implications of High-Affinity Hybridization by Locked Nucleic Acid Oligomers for Inhibition of Human Telomerase † », Biochemistry, vol. 41, no 31, , p. 9973–9981 (ISSN0006-2960, PMID12146961, DOI10.1021/bi025907j, lire en ligne)
(en) Vester, Lundberg, Sørensen et Babu, « LNAzymes: Incorporation of LNA-Type Monomers into DNAzymes Markedly Increases RNA Cleavage », Journal of the American Chemical Society, vol. 124, no 46, , p. 13682–13683 (ISSN0002-7863, PMID12431091, DOI10.1021/ja0276220, lire en ligne)
doi.org
dx.doi.org
(en) Elayadi, Braasch et Corey, « Implications of High-Affinity Hybridization by Locked Nucleic Acid Oligomers for Inhibition of Human Telomerase † », Biochemistry, vol. 41, no 31, , p. 9973–9981 (ISSN0006-2960, PMID12146961, DOI10.1021/bi025907j, lire en ligne)
Kurreck, « Design of antisense oligonucleotides stabilized by locked nucleic acids », Nucleic Acids Research, vol. 30, no 9, , p. 1911–1918 (PMID11972327, PMCID113840, DOI10.1093/nar/30.9.1911)
(en) Morita, Hasegawa, Kaneko et Tsutsumi, « 2'-O, 4'-C-Ethylene-bridged nucleic acids (ENA) with nuclease-resistance and high affnity for RNA », Nucleic Acids Symposium Series, vol. 1, no 1, , p. 241–242 (ISSN0261-3166, PMID12836354, DOI10.1093/nass/1.1.241)
(en) Obika, Nanbu, Hari et Morio, « Synthesis of 2′-O,4′-C-methyleneuridine and -cytidine. Novel bicyclic nucleosides having a fixed C3, -endo sugar puckering », Tetrahedron Letters, vol. 38, no 50, , p. 8735–8738 (ISSN0040-4039, DOI10.1016/S0040-4039(97)10322-7, lire en ligne)
Koshkin, Fensholdt, Pfundheller et Lomholt, « A Simplified and Efficient Route to 2'-O, 4'-C-Methylene-Linked Bicyclic Ribonucleosides (Locked Nucleic Acid) », The Journal of Organic Chemistry, vol. 66, no 25, , p. 8504–8512 (ISSN0022-3263, PMID11735531, DOI10.1021/jo010732p, lire en ligne)
(en) Vester, Lundberg, Sørensen et Babu, « LNAzymes: Incorporation of LNA-Type Monomers into DNAzymes Markedly Increases RNA Cleavage », Journal of the American Chemical Society, vol. 124, no 46, , p. 13682–13683 (ISSN0002-7863, PMID12431091, DOI10.1021/ja0276220, lire en ligne)
(en) Schubert, Fürste, Werk et Grunert, « Gaining Target Access for Deoxyribozymes », Journal of Molecular Biology, vol. 339, no 2, , p. 355–363 (PMID15136038, DOI10.1016/j.jmb.2004.03.064)
Kubota, Ohashi, Imachi et Harada, « Improved in situ hybridization efficiency with locked-nucleic-acid-incorporated DNA probes », Applied and Environmental Microbiology, vol. 72, no 8, , p. 5311–5317 (ISSN0099-2240, PMID16885281, PMCID1538721, DOI10.1128/AEM.03039-05)
van Ravesteyn, Dekker, Fish et Sixma, « LNA modification of single-stranded DNA oligonucleotides allows subtle gene modification in mismatch-repair-proficient cells. », Proceedings of the National Academy of Sciences of the United States of America, vol. 113, no 15, , p. 4122–7 (PMID26951689, PMCID4839440, DOI10.1073/pnas.1513315113)
doi.org
Koshkin, Fensholdt, Pfundheller et Lomholt, « A Simplified and Efficient Route to 2'-O, 4'-C-Methylene-Linked Bicyclic Ribonucleosides (Locked Nucleic Acid) », The Journal of Organic Chemistry, vol. 66, no 25, , p. 8504–8512 (ISSN0022-3263, PMID11735531, DOI10.1021/jo010732p, lire en ligne)
(en) Elayadi, Braasch et Corey, « Implications of High-Affinity Hybridization by Locked Nucleic Acid Oligomers for Inhibition of Human Telomerase † », Biochemistry, vol. 41, no 31, , p. 9973–9981 (ISSN0006-2960, PMID12146961, DOI10.1021/bi025907j, lire en ligne)
(en) Morita, Hasegawa, Kaneko et Tsutsumi, « 2'-O, 4'-C-Ethylene-bridged nucleic acids (ENA) with nuclease-resistance and high affnity for RNA », Nucleic Acids Symposium Series, vol. 1, no 1, , p. 241–242 (ISSN0261-3166, PMID12836354, DOI10.1093/nass/1.1.241)
(en) Obika, Nanbu, Hari et Morio, « Synthesis of 2′-O,4′-C-methyleneuridine and -cytidine. Novel bicyclic nucleosides having a fixed C3, -endo sugar puckering », Tetrahedron Letters, vol. 38, no 50, , p. 8735–8738 (ISSN0040-4039, DOI10.1016/S0040-4039(97)10322-7, lire en ligne)
Koshkin, Fensholdt, Pfundheller et Lomholt, « A Simplified and Efficient Route to 2'-O, 4'-C-Methylene-Linked Bicyclic Ribonucleosides (Locked Nucleic Acid) », The Journal of Organic Chemistry, vol. 66, no 25, , p. 8504–8512 (ISSN0022-3263, PMID11735531, DOI10.1021/jo010732p, lire en ligne)
(en) Vester, Lundberg, Sørensen et Babu, « LNAzymes: Incorporation of LNA-Type Monomers into DNAzymes Markedly Increases RNA Cleavage », Journal of the American Chemical Society, vol. 124, no 46, , p. 13682–13683 (ISSN0002-7863, PMID12431091, DOI10.1021/ja0276220, lire en ligne)
(en) Dürig, Dührsen, Klein-Hitpass et Worm, « The novel antisense Bcl-2 inhibitor SPC2996 causes rapid leukemic cell clearance and immune activation in chronic lymphocytic leukemia », Leukemia, vol. 25, no 4, , p. 638–647 (ISSN1476-5551, PMID21358717, DOI10.1038/leu.2010.322)
Bonneau, Neveu, Kostantin et Tsongalis, « How close are miRNAs from clinical practice? A perspective on the diagnostic and therapeutic market », EJIFCC, vol. 30, no 2, , p. 114–127 (ISSN1650-3414, PMID31263388, PMCID6599191)
Kubota, Ohashi, Imachi et Harada, « Improved in situ hybridization efficiency with locked-nucleic-acid-incorporated DNA probes », Applied and Environmental Microbiology, vol. 72, no 8, , p. 5311–5317 (ISSN0099-2240, PMID16885281, PMCID1538721, DOI10.1128/AEM.03039-05)
nih.gov
ncbi.nlm.nih.gov
(en) Elayadi, Braasch et Corey, « Implications of High-Affinity Hybridization by Locked Nucleic Acid Oligomers for Inhibition of Human Telomerase † », Biochemistry, vol. 41, no 31, , p. 9973–9981 (ISSN0006-2960, PMID12146961, DOI10.1021/bi025907j, lire en ligne)
Kurreck, « Design of antisense oligonucleotides stabilized by locked nucleic acids », Nucleic Acids Research, vol. 30, no 9, , p. 1911–1918 (PMID11972327, PMCID113840, DOI10.1093/nar/30.9.1911)
(en) Morita, Hasegawa, Kaneko et Tsutsumi, « 2'-O, 4'-C-Ethylene-bridged nucleic acids (ENA) with nuclease-resistance and high affnity for RNA », Nucleic Acids Symposium Series, vol. 1, no 1, , p. 241–242 (ISSN0261-3166, PMID12836354, DOI10.1093/nass/1.1.241)
Koshkin, Fensholdt, Pfundheller et Lomholt, « A Simplified and Efficient Route to 2'-O, 4'-C-Methylene-Linked Bicyclic Ribonucleosides (Locked Nucleic Acid) », The Journal of Organic Chemistry, vol. 66, no 25, , p. 8504–8512 (ISSN0022-3263, PMID11735531, DOI10.1021/jo010732p, lire en ligne)
(en) Vester, Lundberg, Sørensen et Babu, « LNAzymes: Incorporation of LNA-Type Monomers into DNAzymes Markedly Increases RNA Cleavage », Journal of the American Chemical Society, vol. 124, no 46, , p. 13682–13683 (ISSN0002-7863, PMID12431091, DOI10.1021/ja0276220, lire en ligne)
(en) Schubert, Fürste, Werk et Grunert, « Gaining Target Access for Deoxyribozymes », Journal of Molecular Biology, vol. 339, no 2, , p. 355–363 (PMID15136038, DOI10.1016/j.jmb.2004.03.064)
Bonneau, Neveu, Kostantin et Tsongalis, « How close are miRNAs from clinical practice? A perspective on the diagnostic and therapeutic market », EJIFCC, vol. 30, no 2, , p. 114–127 (ISSN1650-3414, PMID31263388, PMCID6599191)
Kubota, Ohashi, Imachi et Harada, « Improved in situ hybridization efficiency with locked-nucleic-acid-incorporated DNA probes », Applied and Environmental Microbiology, vol. 72, no 8, , p. 5311–5317 (ISSN0099-2240, PMID16885281, PMCID1538721, DOI10.1128/AEM.03039-05)
van Ravesteyn, Dekker, Fish et Sixma, « LNA modification of single-stranded DNA oligonucleotides allows subtle gene modification in mismatch-repair-proficient cells. », Proceedings of the National Academy of Sciences of the United States of America, vol. 113, no 15, , p. 4122–7 (PMID26951689, PMCID4839440, DOI10.1073/pnas.1513315113)
(en) Obika, Nanbu, Hari et Morio, « Synthesis of 2′-O,4′-C-methyleneuridine and -cytidine. Novel bicyclic nucleosides having a fixed C3, -endo sugar puckering », Tetrahedron Letters, vol. 38, no 50, , p. 8735–8738 (ISSN0040-4039, DOI10.1016/S0040-4039(97)10322-7, lire en ligne)