Pressure-assisted Delivery

Pressure-assisted delivery is a biological method that uses applied pressure to introduce substances into cells, tissues, or other biological systems, enabling controlled transport when passive diffusion is insufficient. A pressure gradient drives a cargo-containing fluid through a narrow interface, membrane, or tissue barrier, with delivery influenced by pressure, exposure time, cargo properties, and the target’s physical structure. Applications include introducing nucleic acids, proteins, drugs, or experimental reagents for genetic manipulation, imaging, and functional studies. By supporting spatially targeted and dose-controlled delivery, this approach helps researchers investigate cell behavior and develop more effective laboratory and therapeutic strategies.

Pressure-assisted Delivery - Related Videos

Research

JoVE EoE - Antibody-Based Technologies

An Ultrasound-Assisted Delivery of Antibodies in a Mouse Model

0 Views •

2025

This video demonstrates a procedure of ultrasound-assisted antibody delivery in a mouse model. Retro-orbitally injected microbubbles oscillate under ultrasound, creating a transient disruption in the blood-brain barrier, permitting labeled antibodies to enter the brain.

Microscale Vortex-assisted Electroporator for Sequential Molecular Delivery

0 Views •

Cited by 2 •

2014

A microfluidic vortex assisted electroporation platform was developed for sequential delivery of multiple molecules into identical cell populations with precise and independent dosage control. The system’s size based target cell purification step preceding electroporation aided to enhance molecular delivery efficiency and processed cell viability.

Laser-Assisted Lentiviral Gene Delivery: A Technique to Permeabilize Mouse Fertilized Eggs to Facilitate Lentiviral Gene Delivery

0 Views •

2025

In this video, we demonstrate the laser-assisted permeation of the protective layer of zona pellucida in mouse fertilized eggs for facilitating lentiviral gene delivery. Lentivirus enables the generation of transgenic animals with a gene of interest stably integrated into their genome.

Synthesis and Microdiffraction at Extreme Pressures and Temperatures

0 Views •

Cited by 5 •

2013

The laser heated diamond anvil cell combined with synchrotron micro-diffraction techniques allows researchers to explore the nature and properties of new phases of matter at extreme pressure and temperature (PT) conditions. Heterogeneous samples can be characterized in situ under high pressure by 2D mapping and combined powder, single-crystal and multigrain diffraction approaches.

Laser-assisted Lentiviral Gene Delivery to Mouse Fertilized Eggs

0 Views •

Cited by 2 •

2018

Mouse fertilized eggs and early stage embryos are protected by the zona pellucida, a glycoprotein matrix that forms a barrier against gene delivery. This article describes a protocol for perforating the zona with a laser to transduce embryonic cells with lentiviral vectors and to create transgenic mice.

View All Results

FAQs

Related Topics