Particle Cell Interactions

Particle-cell interactions describe how engineered or naturally occurring particles contact, bind to, enter, and influence living cells, making them central to bioengineering and biomedical research. Their behavior depends on particle size, shape, surface chemistry, charge, and the proteins that adsorb from surrounding biological fluids; these features regulate membrane binding, receptor-mediated endocytosis, phagocytosis, intracellular trafficking, and potential toxicity. Understanding these interactions helps researchers design nanoparticles for targeted drug and gene delivery, diagnostic imaging, biosensing, and tissue engineering. It also supports safer material development by revealing how particles affect cell viability, signaling, inflammation, and tissue-level responses.

Particle Cell Interactions - Related Videos

Research

JoVE Journal - Chemistry

Quantitative and Qualitative Examination of Particle-particle Interactions Using Colloidal Probe Nanoscopy

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Cited by 3 •

2014

Colloidal probe nanoscopy can be used within a variety of fields to gain insight into the physical stability and coagulation kinetics of colloidal systems and aid in drug discovery and formulation sciences using biological systems. The method described within provides a quantitative and qualitative means to study such systems.

Education

JoVE Core - Molecular Biology

The Nucleosome Core Particle

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2020

Nucleosomes are the DNA-histone complex, where the DNA strand is wound around the histone core. The histone core is an octamer containing two copies of H2A, H2B, H3, and H4 histone proteins. The paradox Nucleosomes, paradoxically, perform two opposite functions simultaneously. On the one hand, their main responsibility is to protect the delicate DNA strands from physical damage and help achieve a higher compaction ratio. While on the other hand, they must allow polymerase enzymes to access DNA...

Production and Collection of Pseudovirus Particles Using Mammalian Cell Culture

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2026

Source: Jamieson, T. R., et al. Detection of SARS-CoV-2 Neutralizing Antibodies using High-Throughput Fluorescent Imaging of Pseudovirus Infection. J. Vis. Exp. (2021)This video demonstrates the procedure for infecting mammalian cells with green fluorescent protein (GFP)-encoding pseudovirus, monitoring viral replication and spread by fluorescence microscopy, and collecting virus-containing supernatant for downstream applications.

Harvesting Hepatitis E Virus Particles from Human Liver Cancer Cells

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2026

Source: Meister, T. L., et al. A Cell Culture Model for Producing High Titer Hepatitis E Virus Stocks. J. Vis. Exp. (2020).This video demonstrates the process of isolating hepatitis E virus (HEV) particles from transfected human hepatocellular carcinoma cells. Extracellular viral particles are collected from filtered supernatants, while intracellular particles are released by subjecting the cells to repeated freeze-thaw cycles. The lysate is centrifuged, and the supernatant containing HEV...

Generation of Recombinant Viral Particles Using Embryonic Kidney Cells

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2026

Source: Vijayraghavan, S., Kantor, B. A Protocol for the Production of Integrase-deficient Lentiviral Vectors for CRISPR/Cas9-mediated Gene Knockout in Dividing Cells. J. Vis. Exp. (2017).This video demonstrates the procedure for generating recombinant viral particles by transfecting embryonic kidney cells with plasmids encoding viral proteins and a gene of interest.

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