Glycerol

Glycerol is a three-carbon alcohol that serves as a versatile chemical component and an important metabolite in biology. Its three hydroxyl groups allow it to form ester bonds with fatty acids, creating triglycerides for energy storage, while enzymatic hydrolysis of these lipids releases glycerol for further metabolism through conversion to glycerol-3-phosphate and dihydroxyacetone phosphate. In cells, glycerol therefore links lipid storage with carbohydrate metabolism and can contribute to energy production. Its ability to retain water and reduce ice-crystal formation also supports laboratory applications, including preservation of cells, enzymes, and biological samples.

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Research

JoVE EoE - Bacterial Growth and Techniques

Long-Term Cryopreservation of Cyanobacterial Strains Using Glycerol or Dimethyl Sulfoxide

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2025

Source: Lea-Smith, D. J., et al. Generation of Marked and Markerless Mutants in Model Cyanobacterial Species. J. Vis. Exp. (2016)This video demonstrates the cryopreservation of cyanobacterial strains by combining concentrated cell suspensions with glycerol or DMSO and storing them at low temperatures, enabling long-term maintenance of viable cultures for photosynthesis and genetic studies.

Archimedes-Based Glycerol Displacement for Electrode Porosity Measurement in Lead-Acid Batteries

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2026

Here, we present a simple and low-cost glycerol displacement method based on Archimedes' principle for measuring lead-acid battery electrode porosities. The method demonstrates good reproducibility and is safer than traditional techniques, requiring low-hazard chemicals and equipment. Combining the technique with microstructural analysis by X-ray diffraction provides information on battery electrode properties and degradation.

Electrospun Fibrous Scaffolds of Poly(glycerol-dodecanedioate) for Engineering Neural Tissues From Mouse Embryonic Stem Cells

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Cited by 9 •

2014

Synthesis and fabrication of electrospun long fibers spanning a larger deposit area via a newly designed collector from a novel biodegradable polymer named poly(glycerol-dodecanoate) (PGD) was reported. The fibers were able to support the growth of cells derived from mouse pluripotent stem cells.

In Vitro Disassembly of the Influenza A Virus Core Using pH-Controlled Gradient Centrifugation

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2026

Source: Stauffer, S. et al. In Vitro Disassembly of Influenza A Virus Capsids by Gradient Centrifugation. J. Vis. Exp. (2016)This video demonstrates the pH-dependent disassembly of influenza A virus (IAV) cores using gradient ultracentrifugation. It outlines glycerol gradient preparation, ultracentrifugation, and how different pH conditions affect IAV core disassembly.

Purification and Visualization of Influenza A Viral Ribonucleoprotein Complexes

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Cited by 8 •

2009

The genome of the influenza A virus consists of eight separate complexes of RNA and proteins, termed viral ribonucleoprotein complexes (vRNPs). This paper describes the glycerol gradient purification and transmission electron microscopy visualization of influenza A vRNPs.

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