In Vivo Delivery

In vivo delivery is the administration of biological molecules, drugs, genes, or cells directly into a living organism to reach a target tissue and produce a defined effect. It works through routes such as injection, ingestion, or local administration, followed by transport through biological fluids, passage across tissue barriers, cellular uptake, and release or activity at the intended site. In biology, in vivo delivery supports studies of gene function, therapeutic development, vaccination, and regenerative medicine. Its effectiveness depends on biodistribution, stability, targeting specificity, and the organism’s immune and physiological responses, making delivery design central to translating laboratory discoveries into biological and clinical applications.

In Vivo Delivery - Related Videos

Research

JoVE Journal - Medicine

Ex Vivo Culture of Patient Tissue & Examination of Gene Delivery

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Cited by 4 •

2010

This article describes the culture of patient tissue slices for gene delivery studies and subsequent analysis of gene expression using IVIS bioluminescence imaging.

Synthesis, Cellular Delivery and In vivo Application of Dendrimer-based pH Sensors

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Cited by 4 •

2013

Fluorescence sensors are powerful tools in life science. Here we describe a methodology to synthesize and use dendrimer-based fluorescent sensors to measure pH in living cells and in vivo. The dendritic scaffold enhances the properties of conjugated fluorescent dyes leading to improved sensing properties.

In Vitro and In Vivo Delivery of Magnetic Nanoparticle Hyperthermia Using a Custom-Built Delivery System

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Cited by 2 •

2020

This protocol presents techniques and methodology necessary for the accurate delivery of magnetic nanoparticle hyperthermia using a sophisticated delivery and monitoring system.

In Vivo Nanovector Delivery of a Heart-specific MicroRNA-sponge

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Cited by 6 •

2018

Tissue-specific microRNA inhibition is a technology that is underdeveloped in the microRNA field. Herein, we describe a protocol to successfully inhibit the miR-181 microRNA family in myoblast cells from the heart. Nanovector technology is used to deliver a microRNA sponge that demonstrates significant in vivo cardio-specific miR-181 family inhibition.

Ex Vivo Red Blood Cell Hemolysis Assay for the Evaluation of pH-responsive Endosomolytic Agents for Cytosolic Delivery of Biomacromolecular Drugs

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Cited by 359 •

2013

A hemolysis assay can be used as a rapid, high-throughput screen of drug delivery systems' cytocompatibility and endosomolytic activity for intracellular cargo delivery. The assay measures the disruption of erythrocyte membranes as a function of environmental pH.

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