Polyplex Nanoparticles

Polyplex nanoparticles are nanoscale complexes formed by combining nucleic acids with positively charged polymers, creating carriers that can protect and transport genetic material in bioengineering. Their formation relies primarily on electrostatic attraction between anionic DNA or RNA and cationic polymers, which condenses the nucleic acid into particles whose size, charge, and stability can be adjusted through formulation conditions. These properties support applications in nonviral gene delivery, including the transport of plasmid DNA, messenger RNA, or small interfering RNA into cells. By offering a tunable alternative to viral vectors, polyplex nanoparticles contribute to research in gene regulation, therapeutic development, and tissue engineering.

Polyplex Nanoparticles - Related Videos

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JoVE EoE - Immunotherapy

Formulating mRNA-Loaded Nanoparticles for Vaccination Purposes

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2025

This video demonstrates a method for generating an mRNA vaccine candidate using polymeric nanoparticles. The cationic polymer interacts with negatively charged mRNA, forming polyplexes. The formation of polyplexes stabilizes the mRNA, making it a potential candidate for future mRNA vaccines in immunotherapeutic applications.

Intranasal Delivery of mRNA Polyplexes via Rayleigh Breakup Aerosols: An In Vitro Method for Nasal Deposition and Functional Testing

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2026

This protocol presents Rayleigh breakup as a mild process for aerosolizing non-viral mRNA vectors. Regional deposition for aerosolized mRNA vectors is evaluated by the Alberta Idealized Nasal Inlet (AINI) model. Green fluorescence protein (GFP) expression in human lung cells represents maintenance of physicochemical and biological functions of post-aerosolized mRNA vectors.

Magnetofection-Based Transfection In Vitro: A Magnetic Field-Assisted Technique to Deliver Plasmids Into Primary Mouse Neuronal Cells Using Magnetic Nanoparticles

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2025

In this video, we demonstrate magnetically-guided transfection of plasmid DNA in primary neuronal cell culture. Magnetofection uses an external magnetic field to guide the delivery of plasmids bound to magnetic nanoparticles into cell cytoplasm.

Harmonic Nanoparticles for Regenerative Research

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Cited by 1 •

2014

Protocol details are provided for in vitro labeling human embryonic stem cells with second harmonic generating nanoparticles. Methodologies for hESC investigation by multi-photon microscopy and their differentiation into cardiac clusters are also presented.

Research

JoVE Journal - Engineering
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Optical Trapping of Nanoparticles

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Cited by 7 •

2013

The following setup approach details low power optical trapping of dielectric nanoparticles using a double-nanohole in metal film.

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