2'-O-Methyl–Modified Anti-MDR1 Fork-siRNA Duplexes Exhibiting High Nuclease Resistance and Prolonged Silencing Activity

NS Petrova, MI Meschaninova, AG Venyaminova… - …, 2010 - liebertpub.com
The thermodynamic asymmetry of siRNA duplexes determines their silencing activity.
Favorable asymmetry can be achieved by incorporation of mismatches into the 3'part of the …

2'-O-methyl-modified anti-MDR1 fork-siRNA duplexes exhibiting high nuclease resistance and prolonged silencing activity

MI Meschaninova, AG Venyaminova, MA Zenkova… - …, 2010 - go.gale.com
The thermodynamic asymmetry of siRNA duplexes determines their silencing activity.
Favorable asymmetry can be achieved by incorporation of mismatches into the 3'part of the …

2'-O-methyl-modified anti-MDR1 fork-siRNA duplexes exhibiting high nuclease resistance and prolonged silencing activity

NS Petrova, MI Meschaninova, AG Venyaminova… - Oligonucleotides, 2010 - elibrary.ru
The thermodynamic asymmetry of siRNA duplexes determines their silencing activity.
Favorable asymmetry can be achieved by incorporation of mismatches into the 3'part of the …

[PDF][PDF] 2'-O-Methyl–Modified Anti-MDR1 Fork-siRNA Duplexes Exhibiting High Nuclease Resistance and Prolonged Silencing Activity

NS Petrova, MI Meschaninova… - …, 2010 - researchgate.net
The thermodynamic asymmetry of siRNA duplexes determines their silencing activity.
Favorable asymmetry can be achieved by incorporation of mismatches into the 3'part of the …

2'-O-methyl-modified anti-MDR1 fork-siRNA duplexes exhibiting high nuclease resistance and prolonged silencing activity.

PK NS, MI Meschaninova, AG Venyaminova… - …, 2010 - europepmc.org
The thermodynamic asymmetry of siRNA duplexes determines their silencing activity.
Favorable asymmetry can be achieved by incorporation of mismatches into the 3'part of the …

2'-O-methyl-modified anti-MDR1 fork-siRNA duplexes exhibiting high nuclease resistance and prolonged silencing activity

NSP Kruglova, MI Meschaninova… - …, 2010 - pubmed.ncbi.nlm.nih.gov
The thermodynamic asymmetry of siRNA duplexes determines their silencing activity.
Favorable asymmetry can be achieved by incorporation of mismatches into the 3'part of the …

2'-O-Methyl-Modified Anti-MDR1 Fork-siRNA Duplexes Exhibiting High Nuclease Resistance and Prolonged Silencing Activity

NS Petrova, MI Meschaninova… - Nucleic Acid …, 2010 - search.proquest.com
The thermodynamic asymmetry of siRNA duplexes determines their silencing activity.
Favorable asymmetry can be achieved by incorporation of mismatches into the 3'part of the …

[引用][C] 2'-O-Methyl-modified anti-MDR1 Fork-siRNA duplexes exhibiting high nuclease resistance and prolonged silencing activity

PK NS - Oligonucleotides, 2010 - cir.nii.ac.jp
2'-O-Methyl-modified anti-MDR1 Fork-siRNA duplexes exhibiting high nuclease resistance
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