Checkerboard Array Method

The Checkerboard Array Method is a two-dimensional dilution technique used to evaluate how two antimicrobial agents interact, making it valuable for studying combination therapies in infectious disease research. Serial concentrations of each agent are combined across a microplate, creating a checkerboard of treatment conditions; microbial growth inhibition is then measured to determine each combination’s minimum inhibitory concentration and fractional inhibitory concentration index. Comparing these values reveals synergistic, additive, indifferent, or antagonistic interactions. The method helps identify effective drug combinations against pathogens, assess resistance-management strategies, and guide follow-up studies of antimicrobial mechanisms and therapeutic potential.

Checkerboard Array Method - Related Videos

Research

JoVE Journal - Biology

Quadruple-Checkerboard: A Modification of the Three-Dimensional Checkerboard for Studying Drug Combinations

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Cited by 3 •

2021

This protocol describes how to study all possible combinations that can be obtained between four drugs in one single experiment. This method is based on the standard 96-well plate micro dilution assay and the calculation of fractional inhibitory concentrations (FICs) to evaluate the results.

Research

JoVE Journal - Immunology and Infection
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Antimicrobial Synergy Testing by the Inkjet Printer-assisted Automated Checkerboard Array and the Manual Time-kill Method

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Cited by 42 •

2019

Antimicrobial synergy testing is used to evaluate the effect of two or more antibiotics used in combination and is typically performed by one of two methods: the checkerboard array or the time-kill assay. Here, we present an automated, inkjet printer-assisted checkerboard array synergy technique and a classic time-kill synergy study.

UV Irradiation: A Method to Integrate Extrachromosomal Arrays

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2023

Microinjection of transgenes usually results in C. elegans strains with large extrachromosomal arrays, which result in variable expression and transmission of the transgene. UV Irradiation can induce chromosomal integration of the array and more stable transgene transmission.

Measurement of X-ray Beam Coherence along Multiple Directions Using 2-D Checkerboard Phase Grating

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Cited by 10 •

2016

The measurement protocol and data analysis procedure are given for obtaining transverse coherence of a synchrotron radiation X-ray source along four directions simultaneously using a single 2-D checkerboard phase grating. This simple technique can be applied for complete transverse coherence characterization of X-ray sources and X-ray optics.

A Micro-drive Array Method for Electrophysiological Recording from Multiple Brain Regions

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2025

The video demonstrates simultaneous electrophysiological recording from multiple brain regions in a rat using an integrative micro-drive array. Recording electrodes are placed in the olfactory bulb, reference electrodes in the frontal cortex, and micro-drive array electrodes in the hippocampus. The rat is allowed to forage freely, and simultaneous recording from all the implanted electrodes is recorded using the array.

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