Antisense techniques are powerful tools for the inhibition of gene expression in the target discovery and validation phases of pharmaceutical research. In particular, RNA interference has become a method of choice to investigate the roles of putative target genes in models of disease states. This technique is technically demanding, particularly when it is applied in complex experiments such as high-throughput genome analysis or in animal models of disease. We describe here two areas of current research in our group, dedicated to advancing these techniques: the use of neural networks to predict the biological activity of short interfering RNAs, and the application of siRNAs in animal models of disease
During the past five years, RNA interference (RNAi) has emerged as arguably the best functional geno...
Abstract: The discovery of 21-23 nucleotide RNA duplexes, called small interference RNA (siRNA) may ...
RNA interference is a biological process that controls gene silencing in all living cells. Targeting...
One of the most exciting findings in recent years has been the discovery of RNA interference (RNAi)....
Since the first reports that double-stranded RNAs can efficiently silence gene expression in C. eleg...
Progress in the understanding of RNA biology has brought into focus the prospect of using RNA-based ...
AbstractProgress is being made in the development of RNA interference-based (RNAi-based) strategies ...
Over the past 20 years, RNA interference (RNAi) technology has provided a new regulatory paradigm in...
Experimental RNA interference (RNAi) leading to the selective knockdown of gene function is induced ...
Experimental RNA interference (RNAi) leading to the selective knockdown of gene function is induced ...
RNA interference (RNAi) is a robust method of post-transcriptional silencing of genes using double-s...
The discovery of 21 – 23 nucleotide RNA duplexes, called small interference RNA (siRNA) may well be ...
1. RNA interference (RNAi) is a robust method of post-transcriptional silencing of genes using doubl...
Sequencing of whole genomes has provided new perspectives into the blueprints of diverse organisms. ...
The use of RNA interference (RNAi) to evoke gene silencing in mammalian cell systems is rapidly beco...
During the past five years, RNA interference (RNAi) has emerged as arguably the best functional geno...
Abstract: The discovery of 21-23 nucleotide RNA duplexes, called small interference RNA (siRNA) may ...
RNA interference is a biological process that controls gene silencing in all living cells. Targeting...
One of the most exciting findings in recent years has been the discovery of RNA interference (RNAi)....
Since the first reports that double-stranded RNAs can efficiently silence gene expression in C. eleg...
Progress in the understanding of RNA biology has brought into focus the prospect of using RNA-based ...
AbstractProgress is being made in the development of RNA interference-based (RNAi-based) strategies ...
Over the past 20 years, RNA interference (RNAi) technology has provided a new regulatory paradigm in...
Experimental RNA interference (RNAi) leading to the selective knockdown of gene function is induced ...
Experimental RNA interference (RNAi) leading to the selective knockdown of gene function is induced ...
RNA interference (RNAi) is a robust method of post-transcriptional silencing of genes using double-s...
The discovery of 21 – 23 nucleotide RNA duplexes, called small interference RNA (siRNA) may well be ...
1. RNA interference (RNAi) is a robust method of post-transcriptional silencing of genes using doubl...
Sequencing of whole genomes has provided new perspectives into the blueprints of diverse organisms. ...
The use of RNA interference (RNAi) to evoke gene silencing in mammalian cell systems is rapidly beco...
During the past five years, RNA interference (RNAi) has emerged as arguably the best functional geno...
Abstract: The discovery of 21-23 nucleotide RNA duplexes, called small interference RNA (siRNA) may ...
RNA interference is a biological process that controls gene silencing in all living cells. Targeting...