Calorimetric Vials

Calorimetric vials are specialized containers used to hold samples during calorimetry, allowing researchers to measure heat released or absorbed by a biological system. In a calorimetric experiment, a reaction, binding event, or metabolic process changes the temperature of the vial and its surroundings; the instrument detects this change and converts it into thermal energy using calibration and the system’s heat capacity. In biology, these vials support measurements of enzyme activity, microbial metabolism, biomolecular interactions, and cellular energy use. Careful control of sample volume, sealing, and thermal equilibration improves reproducibility and helps link heat changes to underlying biological processes.

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JoVE EoE - Bacterial Growth and Techniques

Isothermal Microcalorimetry to Monitor Metabolic Activity in Bacteria

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2025

Take serial dilutions of a bacterial culture and add aliquots into calorimetric vials containing growth medium.Load the sealed vials into the multi-well plate of an isothermal microcalorimeter to measure metabolic heat production.The device is held at a constant temperature to ensure the detected heat originates solely from bacterial metabolism.As bacteria metabolize nutrients and proliferate, they release heat that sensors detect in real time.In parallel, incubate identical vials in an...

Research

JoVE Journal - Biology
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Detecting Estrogenic Ligands in Personal Care Products using a Yeast Estrogen Screen Optimized for the Undergraduate Teaching Laboratory

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Cited by 1 •

2018

This article presents an optimized yeast estrogen screen for quantifying ligands in Personal Care Products (PCPs) that bind estrogen receptors alpha (ERα) and/or beta (ERβ). The method incorporates two colorimetric substrate options, a six-day refrigerated incubation for use in undergraduate courses, and statistical tools for data analysis.

An Inexpensive, Scalable Behavioral Assay for Measuring Ethanol Sedation Sensitivity and Rapid Tolerance in Drosophila

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Cited by 14 •

2015

Straightforward assays for measuring ethanol sensitivity and rapid tolerance in Drosophila facilitate the use of this model organism for investigating these important ethanol-related behaviors. Here, a relatively simple, scalable assay for measuring ethanol sensitivity and rapid tolerance in flies is described.

A Method to Inflict Closed Head Traumatic Brain Injury in Drosophila

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2025

The video demonstrates the use of a High-Impact Trauma (HIT) device to induce closed-head traumatic brain injury (TBI) in Drosophila. TBI causes mechanical brain trauma affecting neuronal function, which over time leads to neurodegeneration and mortality.

A Method to Inflict Closed Head Traumatic Brain Injury in Drosophila

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Cited by 37 •

2015

Here we describe a method to inflict closed head traumatic brain injury (TBI) in Drosophila. This method provides a gateway to investigate the cellular and molecular mechanisms that underlie TBI pathologies using the vast array of experimental tools and techniques available for flies.

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