Exogenous Dna Delivery

Exogenous DNA delivery is the process of introducing DNA from outside a cell into its interior, enabling researchers to alter cellular function or study gene activity. In biological techniques, delivery may use chemical carriers, physical methods such as electroporation, or viral vectors; these approaches help DNA cross the plasma membrane and reach the nucleus, where it can be expressed or maintained under suitable conditions. The method supports transient transfection, stable genetic modification, recombinant protein production, and functional studies in cultured cells and tissues. Delivery efficiency, cell viability, DNA dosage, and expression duration are key factors when selecting and optimizing a system.

Exogenous Dna Delivery - Related Videos

Research

JoVE EoE - Gene Transfer Techniques

Hydrodynamic Gene Delivery: A Technique for In Vivo Transfection of Exogenous DNA in Murine Hepatocytes via Tail Vein Injection

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2025

This video describes the technique of genetic in vivo transfection of murine hepatocytes by hydrodynamic tail vein injection. This transfection system generates a long-term expression of the transgene in the hepatocytes.

Skin Tattooing As A Novel Approach For DNA Vaccine Delivery

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Cited by 6 •

2012

Skin tattooing is a potent and safe way to delivery DNA vaccine intradermally. Here, a DNA plasmid encoding EGFP is delivered by tattooing to the skin of a laboratory mouse, and the expression of EGFP in the skin cells is then inspected by confocal microscopy.

Mosquito Embryo Microinjection: A Technique to Deliver Exogenous DNA into Embryo Yolk of Anopheles Gambiae to Generate Germline Mutations

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2025

In this video, we demonstrate the delivery of gene drive construct into the embryo of Anopheles gambiae mosquito through embryo microinjection technique. This procedure allows for integration of delivered DNA construct, through homologous recombination, into the germline cells to generate transformed mosquito population.

Development of an Economical DNA Delivery System by "Acufection" and its Application to Skin Research

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2017

This protocol is a cost-effective alternative for expressing naked plasmid DNA in mouse skin. The overall goal of the protocol is to deliver immune-related genes into skin tissue to delineate the functional role of a specific gene in cutaneous inflammation.

Exogenous Mitochondrial Transfer in Differentiating Brown Adipocytes and AGPAT2-Deficient Preadipocytes

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2026

Exogenous mitochondria of human and murine origin can be internalized by differentiating preadipocytes and tracked throughout adipogenic differentiation using imaging and genetic tools. While these mitochondria physically interact with the endogenous mitochondrial network, they do not increase the expression of markers associated with mature brown adipocytes.

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