Hydrophobic Tails

Hydrophobic tails are nonpolar regions of molecules that interact poorly with water, making them important structural components in chemistry and biology. Because water cannot readily form favorable interactions with these regions, hydrophobic tails cluster together to minimize their exposure to the surrounding solvent, producing the hydrophobic effect; weak dispersion forces also help stabilize the resulting assemblies. In amphiphilic molecules, this behavior drives the formation of micelles, lipid bilayers, and other organized structures. These principles explain how surfactants remove oils, how liposomes form, and how biological membranes maintain selective barriers for cellular communication and transport.

Hydrophobic Tails - Related Videos

Research

JoVE Journal - Neuroscience

The Tail Suspension Test

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Cited by 534 •

2012

The tail-suspension test is validated as an experimental procedure to assess antidepressant efficacy of drug treatments in mice. Mice are suspended by their tails for six minutes and escape-related behaviors are assessed. We describe procedures used in conducting the tail suspension test.

Calcium-Dependent Hydrophobic Interaction Chromatography: A Technique to Purify Calcium-Binding Proteins Based on Hydrophobic Interactions

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2025

In this video, we demonstrate the purification of calcium-binding protein from a dialyzed cell lysate through calcium-dependent hydrophobic interaction chromatography. The calcium-binding proteins expose a hydrophobic region upon binding with calcium, facilitating interaction with a hydrophobic group on resin. Later these proteins are eluted using calcium chelator EDTA that reverses the interaction.

Butyl-Dependant Hydrophobic Interaction Liquid Chromatography: A Technique to Characterize Antibody-Drug Conjugates Based on Hydrophobic Interactions

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2025

This video demonstrates the hydrophobic interaction liquid chromatography-based characterization of antibody-drug conjugates. Using a butyl ligand-based chromatography column, the antibody-drug conjugates are characterized via hydrophobic interactions with the ligand.

Murine Tail Lymphedema Model: An In Vivo Technique to Generate Sustained Lymphedema in Murine Tail

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2025

This video describes an in vivo technique to generate murine tail lymphedema, an abnormal fluid accumulation in the interstitial tissue space leading to swelling in the tail. The model is applied to study mechanisms and therapy for lymphedema.

Isolation of Genomic DNA from Mouse Tails

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Cited by 23 •

2007

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