Journal ArticleDOI
Therapeutic silencing of an endogenous gene by systemic administration of modified siRNAs
Jürgen Soutschek,Akin Akinc,Birgit Bramlage,Klaus Charisse,Rainer Constien,Mary Donoghue,Sayda Elbashir,Anke Geick,Philipp Hadwiger,Jens Harborth,Matthias John,Venkitasamy Kesavan,Gary Lavine,Rajendra K. Pandey,Timothy Racie,Kallanthottathil G. Rajeev,Ingo Röhl,Ivanka Toudjarska,Gang Wang,Silvio Wuschko,David Bumcrot,Victor Koteliansky,Stefan Limmer,Muthiah Manoharan,Hans-Peter Vornlocher +24 more
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TLDR
In this article, chemically modified short interfering RNAs (siRNAs) were used to silence an endogenous gene encoding apolipoprotein B (apoB) after intravenous injection in mice.Abstract:
RNA interference (RNAi) holds considerable promise as a therapeutic approach to silence disease-causing genes, particularly those that encode so-called 'non-druggable' targets that are not amenable to conventional therapeutics such as small molecules, proteins, or monoclonal antibodies. The main obstacle to achieving in vivo gene silencing by RNAi technologies is delivery. Here we show that chemically modified short interfering RNAs (siRNAs) can silence an endogenous gene encoding apolipoprotein B (apoB) after intravenous injection in mice. Administration of chemically modified siRNAs resulted in silencing of the apoB messenger RNA in liver and jejunum, decreased plasma levels of apoB protein, and reduced total cholesterol. We also show that these siRNAs can silence human apoB in a transgenic mouse model. In our in vivo study, the mechanism of action for the siRNAs was proven to occur through RNAi-mediated mRNA degradation, and we determined that cleavage of the apoB mRNA occurred specifically at the predicted site. These findings demonstrate the therapeutic potential of siRNAs for the treatment of disease.read more
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Intracellular delivery of an anionic antisense oligonucleotide via receptor-mediated endocytosis
Rowshon Alam,Vidula Dixit,Hyunmin Kang,Zibo Li,Xiaoyuan Chen,JoAnn Trejo,Michael S. Fisher,Rudy L. Juliano +7 more
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siRNA nanoparticles targeting CaMKIIγ in lesional macrophages improve atherosclerotic plaque stability in mice.
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Sabrina Höbel,Ivette Koburger,Matthias John,Frank Czubayko,Philipp Hadwiger,Hans-Peter Vornlocher,Achim Aigner +6 more
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References
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TL;DR: This paper used gene expression profiling to characterize the specificity of gene silencing by siRNAs in cultured human cells and found that siRNA-specific rather than target-specific signatures revealed direct silencing of nontargeted genes containing as few as eleven contiguous nucleotides of identity to the siRNA.
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MicroRNA-directed cleavage of HOXB8 mRNA
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Cleavage of Scarecrow-like mRNA Targets Directed by a Class of Arabidopsis miRNA
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Journal ArticleDOI
RNA interference targeting Fas protects mice from fulminant hepatitis
Erwei Song,Sang-Kyung Lee,Jie Wang,Nedim Ince,Nengtai Ouyang,Jun Min,Jisheng Chen,Premlata Shankar,Judy Lieberman +8 more
TL;DR: In a more fulminant hepatitis induced by injecting agonistic Fas-specific antibody, 82% of mice treated with siRNA that effectively silenced Fas survived for 10 days of observation, whereas all control mice died within 3 days.