Intracellular Delivery

Intracellular delivery is the transport of therapeutic molecules, genetic material, proteins, or other cargo across the plasma membrane into living cells, where access to internal targets can determine biological function. In bioengineering, delivery systems overcome membrane and endosomal barriers through mechanisms such as lipid fusion, receptor-mediated endocytosis, membrane permeabilization, or engineered nanoparticles that protect cargo and promote endosomal escape. These strategies support gene editing, RNA-based therapies, protein replacement, vaccine development, and cell-based engineering. Efficient intracellular delivery can improve potency while reducing off-target exposure, making control of cargo release, cellular uptake, toxicity, and tissue specificity central goals for research and clinical translation.

Intracellular Delivery - Related Videos

Research

JoVE Journal - Bioengineering

Cell Squeezing as a Robust, Microfluidic Intracellular Delivery Platform

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Cited by 40 •

2013

Rapid mechanical deformation of cells has emerged as a promising, vector-free method for intracellular delivery of macromolecules and nanomaterials. This protocol provides detailed steps on how to use the system for a broad range of applications.

Microinjection of Drosophila Nurse Cells: A Method of Intracellular Delivery

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2023

Due to their large size and relatively simple organization, Drosophila nurse cells are ideally suited for live cell imaging studies. This video describes a microinjection method for exogenous compounds delivery into the cells, and the featured protocol demonstrates the procedure with fluorescent oligonucleotide probes called molecular beacons (MBs) used to visualize endogenous mRNA transcripts.

Intracellular Refolding Assay

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Cited by 9 •

2012

In this protocol a method to measure intracellular protein refolding after heat shock is described. This method can be used to study foldases like molecular chaperones and their co-factors or compounds able to influence their activity. Firefly luciferase activity is used as reporter to measure chaperone refolding activity.

Imaging the Intracellular Trafficking of APP with Photoactivatable GFP

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Cited by 6 •

2015

While the transport of cell surface proteins is relatively easily studied, visualizing the trafficking of intracellular proteins is much more difficult. Here, we use constructs incorporating photoactivatable GFP and demonstrate a method to accurately follow the amyloid precursor protein from the Golgi apparatus to down-stream compartments and follow its clearance.

Simultaneous Measurement of Intracellular Calcium and Membrane Potential in a Mouse Cerebral Endothelium

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2025

The video demonstrates the simultaneous measurement of intracellular calcium levels and changes in membrane potential in endothelial cells of mouse cerebral artery segments. The isolated endothelial tube is loaded with a fluorescent calcium indicator and treated with a drug that induces intracellular calcium release, resulting in a change in membrane potential. The indicator's fluorescence enables the measurement of calcium levels, and a recording electrode is inserted into a cell to measure...

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