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- Q91096153 description "article scientifique publié en 2018" @default.
- Q91096153 description "artículu científicu espublizáu n'agostu de 2018" @default.
- Q91096153 description "scientific article published on 01 August 2018" @default.
- Q91096153 description "wetenschappelijk artikel" @default.
- Q91096153 description "наукова стаття, опублікована в серпні 2018" @default.
- Q91096153 name "Nucleic Acid-Targeted Small Molecules have Therapeutic Potential in the Treatment of Spinal Muscular Atrophy: Small-molecule drugs that can selectively bind RNA and modulate pre-mRNA splicing have potential as a treatment strategy for human disease," @default.
- Q91096153 name "Nucleic Acid-Targeted Small Molecules have Therapeutic Potential in the Treatment of Spinal Muscular Atrophy: Small-molecule drugs that can selectively bind RNA and modulate pre-mRNA splicing have potential as a treatment strategy for human disease," @default.
- Q91096153 type Item @default.
- Q91096153 label "Nucleic Acid-Targeted Small Molecules have Therapeutic Potential in the Treatment of Spinal Muscular Atrophy: Small-molecule drugs that can selectively bind RNA and modulate pre-mRNA splicing have potential as a treatment strategy for human disease," @default.
- Q91096153 label "Nucleic Acid-Targeted Small Molecules have Therapeutic Potential in the Treatment of Spinal Muscular Atrophy: Small-molecule drugs that can selectively bind RNA and modulate pre-mRNA splicing have potential as a treatment strategy for human disease," @default.
- Q91096153 prefLabel "Nucleic Acid-Targeted Small Molecules have Therapeutic Potential in the Treatment of Spinal Muscular Atrophy: Small-molecule drugs that can selectively bind RNA and modulate pre-mRNA splicing have potential as a treatment strategy for human disease," @default.
- Q91096153 prefLabel "Nucleic Acid-Targeted Small Molecules have Therapeutic Potential in the Treatment of Spinal Muscular Atrophy: Small-molecule drugs that can selectively bind RNA and modulate pre-mRNA splicing have potential as a treatment strategy for human disease," @default.
- Q91096153 P1433 Q91096153-D00C92B1-82DD-4E09-AB55-31D25D99206C @default.
- Q91096153 P1476 Q91096153-FE3A442E-4018-4507-BD69-6AA9E1423BC0 @default.
- Q91096153 P304 Q91096153-857A05CF-DDDA-4CAD-9E8D-A2E13C466F2B @default.
- Q91096153 P31 Q91096153-417CE56E-3B7E-4E37-AD2F-2E67BB8EEEA9 @default.
- Q91096153 P356 Q91096153-C8D7A498-5445-458A-9640-4E46ABFDF4A8 @default.
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- Q91096153 P478 Q91096153-77D6441B-3476-49D7-9189-A0E629F594E3 @default.
- Q91096153 P577 Q91096153-2526562F-CABD-4556-A5E7-BA1D26BB6D8E @default.
- Q91096153 P698 Q91096153-7813C848-2906-46A5-A3CE-E8493EF819FC @default.
- Q91096153 P921 Q91096153-4F5B2D9C-EC13-4EA2-8B4E-9C6317F6D513 @default.
- Q91096153 P921 Q91096153-B3779F37-60E6-4ADD-9524-2F4E254E7D81 @default.
- Q91096153 P356 AJMG.A.40520 @default.
- Q91096153 P698 30136439 @default.
- Q91096153 P1433 Q4744254 @default.
- Q91096153 P1476 "Nucleic Acid-Targeted Small Molecules have Therapeutic Potential in the Treatment of Spinal Muscular Atrophy: Small-molecule drugs that can selectively bind RNA and modulate pre-mRNA splicing have potential as a treatment strategy for human disease, including spinal muscular atrophy" @default.
- Q91096153 P304 "1698-1699" @default.
- Q91096153 P31 Q13442814 @default.
- Q91096153 P356 "10.1002/AJMG.A.40520" @default.
- Q91096153 P433 "8" @default.
- Q91096153 P478 "176" @default.
- Q91096153 P577 "2018-08-01T00:00:00Z" @default.
- Q91096153 P698 "30136439" @default.
- Q91096153 P921 Q2844600 @default.
- Q91096153 P921 Q580290 @default.