Javascript must be enabled to continue!
Transgene Expression in Cultured Cells Using Unpurified Recombinant Adeno-Associated Viral Vectors
View through CrossRef
Abstract
Recombinant adeno-associated viral vectors (rAAV) can achieve potent and durable transgene expression without integration in a broad range of tissue types, making them a popular choice for gene delivery in animal models and in clinical settings. In addition to therapeutic applications, rAAVs are a useful laboratory tool for delivering transgenes tailored to the researcher’s experimental needs and scientific goals in cultured cells. Some examples include exogenous reporter genes, overexpression cassettes, RNA interference, and CRISPR-based tools including those for genome-wide screens. rAAV transductions are less harmful to cells than electroporation or chemical transfection and moreover do not require any special equipment or expensive reagents to produce. Crude lysates or conditioned media containing rAAVs can be added directly to cultured cells without further purification to transduce many cell types – an underappreciated feature of rAAVs. Here, we provide protocols for basic transgene cassette cloning and demonstrate how to produce and apply crude rAAV preparations to cultured cells. As proof-of-principle, we demonstrate transduction of three cell types that have not yet been reported in rAAV applications. We discuss appropriate uses for crude rAAV preparations, the limitations of rAAVs for gene delivery, and considerations for capsid choice. The simplicity of production, exceedingly low cost, and often potent results make crude rAAV a primary choice for researchers to achieve effective DNA delivery.
Summary
Recombinant adeno-associated virus (rAAV) is widely used for clinical and preclinical gene delivery. An underappreciated use for rAAVs is the robust transduction of cultured cells without the need for purification. For researchers new to rAAV, we provide a protocol for transgene cassette cloning, crude vector production, and cell culture transduction.
Title: Transgene Expression in Cultured Cells Using Unpurified Recombinant Adeno-Associated Viral Vectors
Description:
Abstract
Recombinant adeno-associated viral vectors (rAAV) can achieve potent and durable transgene expression without integration in a broad range of tissue types, making them a popular choice for gene delivery in animal models and in clinical settings.
In addition to therapeutic applications, rAAVs are a useful laboratory tool for delivering transgenes tailored to the researcher’s experimental needs and scientific goals in cultured cells.
Some examples include exogenous reporter genes, overexpression cassettes, RNA interference, and CRISPR-based tools including those for genome-wide screens.
rAAV transductions are less harmful to cells than electroporation or chemical transfection and moreover do not require any special equipment or expensive reagents to produce.
Crude lysates or conditioned media containing rAAVs can be added directly to cultured cells without further purification to transduce many cell types – an underappreciated feature of rAAVs.
Here, we provide protocols for basic transgene cassette cloning and demonstrate how to produce and apply crude rAAV preparations to cultured cells.
As proof-of-principle, we demonstrate transduction of three cell types that have not yet been reported in rAAV applications.
We discuss appropriate uses for crude rAAV preparations, the limitations of rAAVs for gene delivery, and considerations for capsid choice.
The simplicity of production, exceedingly low cost, and often potent results make crude rAAV a primary choice for researchers to achieve effective DNA delivery.
Summary
Recombinant adeno-associated virus (rAAV) is widely used for clinical and preclinical gene delivery.
An underappreciated use for rAAVs is the robust transduction of cultured cells without the need for purification.
For researchers new to rAAV, we provide a protocol for transgene cassette cloning, crude vector production, and cell culture transduction.
Related Results
CONSTRUCTION OF RECOMBINANT ADENO-ASSOCIATED VIRUS SEROTYPE 9 WITH RIBOZYME GENE TARGETING NF-κB AND ITS SUPPRESSION OF NF-κB ACTIVITY IN HELA CELLS
CONSTRUCTION OF RECOMBINANT ADENO-ASSOCIATED VIRUS SEROTYPE 9 WITH RIBOZYME GENE TARGETING NF-κB AND ITS SUPPRESSION OF NF-κB ACTIVITY IN HELA CELLS
Objectives
To construct the recombinant adeno-associated virus serotype 9 containing ribozyme gene (R65) targeting nuclear factor-κ B (NF-κB), and investigate the...
Disulfram/Copper Complex May Enhance Its Cytotoxic Effect on CD34+CD38- KG1-Alpha Cells By Down Regulating the Expression of HIF1-Alpha in the Co-Cultured MSCs
Disulfram/Copper Complex May Enhance Its Cytotoxic Effect on CD34+CD38- KG1-Alpha Cells By Down Regulating the Expression of HIF1-Alpha in the Co-Cultured MSCs
Abstract
Backgroud We had reported that Disulfram/copper complex (DS/ Cu) had a potent and selective anti-leukemia property in vitro against leukemia stem-like cells...
Targeted Modifications in Adeno-Associated Virus Serotype (AAV)- 8 Capsid Improves Its Hepatic Gene Transfer Efficiency in Vivo
Targeted Modifications in Adeno-Associated Virus Serotype (AAV)- 8 Capsid Improves Its Hepatic Gene Transfer Efficiency in Vivo
Abstract
Abstract 2045
Recombinant adeno-associated virus vectors based on serotype (AAV)-8 have shown significant promise for liver directed gene the...
5′ transgenes drive leaky expression of 3′ transgenes in inducible bicistronic vectors
5′ transgenes drive leaky expression of 3′ transgenes in inducible bicistronic vectors
Abstract
Molecular cloning techniques enabling contemporaneous expression of two or more protein-coding sequences in a cell type of interest prov...
An engineered AAVrh10 vector containing an optimized factor IX transgene improves therapeutic response during hemophilia b gene therapy
An engineered AAVrh10 vector containing an optimized factor IX transgene improves therapeutic response during hemophilia b gene therapy
Abstract
Background: Gene therapy using Adeno-associated virus (AAV) vectors has emerged as a promising alternative to f...
Supplementary Data from Targeted BiTE Expression by an Oncolytic Vector Augments Therapeutic Efficacy Against Solid Tumors
Supplementary Data from Targeted BiTE Expression by an Oncolytic Vector Augments Therapeutic Efficacy Against Solid Tumors
<p>Supplementary Methods, Supplementary Figures S1-S15 Fig. S1. Purification and binding specificity of MV-encoded BiTEs. (A) Purification of MV-expressed BiTEs. Vero cells w...
The Use of Adeno-associated virus (AAV) in Vaccine Development
The Use of Adeno-associated virus (AAV) in Vaccine Development
Adeno-associated virus (AAV) is a very tiny (20-26 nm) icosahedral and non-enveloped virus, and it belongs to the Parvoviridae family. AAV vectors are the most widely used ...
Biosafety of Adenoviral Vectors
Biosafety of Adenoviral Vectors
Adenoviral vectors can efficiently transduce a broad variety of different cell types and have been used extensively in preclinical and clinical studies. However, early generation o...

