Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

A programmable dual-targeting di-valent siRNA scaffold supports potent multi-gene modulation in the central nervous system

View through CrossRef
ABSTRACT Di-valent short interfering RNA (siRNA) is a promising therapeutic modality that enables sequence-specific modulation of a single target gene in the central nervous system (CNS). To treat complex neurodegenerative disorders, where pathogenesis is driven by multiple genes or pathways, di-valent siRNA must be able to silence multiple target genes simultaneously. Here we present a framework for designing unimolecular “dual-targeting” di-valent siRNAs capable of co-silencing two genes in the CNS. We reconfigured di-valent siRNA – in which two identical, linked siRNAs are made concurrently – to create linear di-valent siRNA – where two siRNAs are made sequentially attached by a covalent linker. This linear configuration, synthesized using commercially available reagents, enables incorporation of two different siRNAs to silence two different targets. We demonstrate that this dual-targeting di-valent siRNA is fully functional in the CNS of mice, supporting at least two months of maximal target silencing. Dual-targeting di-valent siRNA is highly programmable, enabling simultaneous modulation of two different disease-relevant gene pairs (e.g., Huntington’s disease: MSH3 and HTT ; Alzheimer’s disease: APOE and JAK1 ) with similar potency to a mixture of single-targeting di-valent siRNAs against each gene. This work potentiates CNS modulation of virtually any pair of disease-related targets using a simple unimolecular siRNA.
Title: A programmable dual-targeting di-valent siRNA scaffold supports potent multi-gene modulation in the central nervous system
Description:
ABSTRACT Di-valent short interfering RNA (siRNA) is a promising therapeutic modality that enables sequence-specific modulation of a single target gene in the central nervous system (CNS).
To treat complex neurodegenerative disorders, where pathogenesis is driven by multiple genes or pathways, di-valent siRNA must be able to silence multiple target genes simultaneously.
Here we present a framework for designing unimolecular “dual-targeting” di-valent siRNAs capable of co-silencing two genes in the CNS.
We reconfigured di-valent siRNA – in which two identical, linked siRNAs are made concurrently – to create linear di-valent siRNA – where two siRNAs are made sequentially attached by a covalent linker.
This linear configuration, synthesized using commercially available reagents, enables incorporation of two different siRNAs to silence two different targets.
We demonstrate that this dual-targeting di-valent siRNA is fully functional in the CNS of mice, supporting at least two months of maximal target silencing.
Dual-targeting di-valent siRNA is highly programmable, enabling simultaneous modulation of two different disease-relevant gene pairs (e.
g.
, Huntington’s disease: MSH3 and HTT ; Alzheimer’s disease: APOE and JAK1 ) with similar potency to a mixture of single-targeting di-valent siRNAs against each gene.
This work potentiates CNS modulation of virtually any pair of disease-related targets using a simple unimolecular siRNA.

Related Results

EPD Electronic Pathogen Detection v1
EPD Electronic Pathogen Detection v1
Electronic pathogen detection (EPD) is a non - invasive, rapid, affordable, point- of- care test, for Covid 19 resulting from infection with SARS-CoV-2 virus. EPD scanning techno...
Rationale design of polymeric siRNA delivery systems
Rationale design of polymeric siRNA delivery systems
<p>Regulation of gene expression using small interfering RNA (siRNA) is a promising strategy for research and treatment of numerous diseases. However, siRNA cannot easily cro...
Abstract 1515: Combination siRNA and gene delivery to SKOV-3 cancer cells by a customizable HER2 targeted biopolymeric vector
Abstract 1515: Combination siRNA and gene delivery to SKOV-3 cancer cells by a customizable HER2 targeted biopolymeric vector
Abstract INTRODUCTION: The major hurdle in successful targeted cancer gene therapy is the lack of a suitable gene delivery vehicle, leaving room for research into in...
A Web-based design center for vector-based siRNA and siRNA cassette
A Web-based design center for vector-based siRNA and siRNA cassette
Abstract Summary: To facilitate the designing process for vector-based siRNA and siRNA cassette, a tool set has been developed consisting of a siRNA target finder, a...
Study in the Effect of EZH2 Gene Targeting siRNA on Cell Death in HL-60 Cell Line
Study in the Effect of EZH2 Gene Targeting siRNA on Cell Death in HL-60 Cell Line
Abstract Objective: To study small interfering RNA (siRNA) targeting EZH2 gene effect on cell proliferation, apoptosis and histone modulation in HL-60 cells line. ...
Silencing of NILCO by Small Interfering RNA Effects MDR1 in Colon Cancer Cells
Silencing of NILCO by Small Interfering RNA Effects MDR1 in Colon Cancer Cells
The aim of the study is to investigate the effect of silencing of NILCO by siRNA on the MDR1 gene, which plays a role in chemoresistance. Cells of the human colon cancer lines Caco...
Synthesis and Investigation into Apatite-forming Ability of Hydroxyapatite/Chitosan-based Scaffold
Synthesis and Investigation into Apatite-forming Ability of Hydroxyapatite/Chitosan-based Scaffold
In this study, porous scaffolds were fabricated using inorganic material-hydroxyapatite and chitosan for bone-tissue engineering. The combination of hydroxyapatite and chitosan may...

Back to Top