Dual Hit Model

The Dual Hit Model is a framework for explaining how two sequential or interacting challenges can produce a stronger disease response than either challenge alone, making it useful for interpreting complex host-pathogen interactions. The first hit alters immune cell activation, tissue state, or barrier function; a subsequent infection or inflammatory stimulus then acts on this primed system, amplifying cytokine signaling, immune dysfunction, or tissue injury. In immunology and infection research, the model helps organize studies of susceptibility, disease severity, experimental timing, and therapeutic intervention, while highlighting how host history can shape outcomes.

Dual Hit Model - Related Videos

Research

JoVE Journal - Medicine
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Establishment of a Rat Model for Intrauterine Adhesions via Dual Injury: Curettage and Infection

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Cited by 1 •

2025

Intrauterine adhesions (IUAs), the most common pathological consequence of endometrial injury, severely impair reproductive function. Trauma and infection are widely recognized as key risk factors for IUA development. We have successfully established a reproducible rat model of IUAs by combining two critical injury methods: mechanical curettage and infectious induction with lipopolysaccharide.

Research

JoVE EoE - Neurotherapeutics

Synergistic Photobiomodulation with a Dual-Wavelength Laser in an In Vitro Disease Model

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2025

Divide the transwell system into five groups that undergo various treatments.The first group serves as the control and consists of a co-culture of neuroblastoma and microglia cells.In the second group, treat the co-culturer with fibrillar β-amyloid (fAβ) alone. fAβ induces damage in neuroblastoma cells.In the third group, treat neuroblastoma cells with an 808-nanometer laser, then co-culture them with untreated microglia.The laser reduces oxidative stress, improving neuronal survival.In the...

Research

JoVE Journal - Biochemistry
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High-Throughput Screening to Obtain Crystal Hits for Protein Crystallography

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Cited by 16 •

2023

This protocol details high-throughput crystallization screening, ranging from the 1,536 microassay plate preparation to the end of a 6 week experimental time window. Details are included about the sample setup, the imaging obtained, and how users can perform analyses using an artificial intelligence-enabled graphical user interface to quickly and efficiently identify macromolecular crystallization conditions.

High-throughput Functional Screening using a Homemade Dual-glow Luciferase Assay

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Cited by 45 •

2014

We present a rapid and inexpensive screening method for identifying transcriptional regulators using high-throughput robotic transfections and a homemade dual-glow luciferase assay. This protocol rapidly generates direct side-by-side functional data for thousands of genes and is easily modifiable to target any gene of interest.

Research

JoVE Journal - Medicine
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Dorsal Column Steerability with Dual Parallel Leads using Dedicated Power Sources: A Computational Model

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Cited by 16 •

2011

Using a mathematical model of spinal cord stimulation, we found that a multi-source system with independent power sources for each contact can target more central points of stimulation on the dorsal column (100 vs 3) and has 50-fold more field steering resolution (0.02mm vs 1mm) than a single-source system.

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