Inter-droplet Forces

Inter-droplet forces are the physical interactions that govern how separate liquid droplets attract, repel, collide, deform, or coalesce, making them central to emulsions and droplet-based biochemical systems. These interactions arise from interfacial tension, capillary effects, electrostatic interactions, van der Waals forces, surfactant layers, and fluid flow; together, they determine droplet stability and behavior during encounters. Understanding these forces helps researchers control droplet size, prevent unwanted coalescence, and regulate molecular exchange. In biochemistry, this knowledge supports emulsion formulation, microfluidic assays, compartmentalized reactions, and studies of liquid-liquid phase separation relevant to biomolecular condensates and cellular organization.

Inter-droplet Forces - Related Videos

Research

JoVE Journal - Biochemistry

Real-Time Force Measurement Between Emulsion Droplets During Enzymatic Breakdown

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2025

This protocol employs dual-trap optical tweezers to measure inter-droplet forces in real time during the enzymatic digestion of emulsions. It facilitates the study of emulsion stability and droplet dynamics, with applications in food science and pharmaceuticals.

Research

JoVE Journal - Bioengineering
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Fluorescence detection methods for microfluidic droplet platforms

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Cited by 20 •

2011

Droplet-based microfluidic platforms are promising candidates for high throughput experimentation since they are able to generate picoliter, self-compartmentalized vessels inexpensively at kHz rates. Through integration with fast, sensitive and high resolution fluorescence spectroscopic methods, the large amounts of information generated within these systems can be efficiently extracted, harnessed and utilized.

Measuring the Interaction Force Between a Droplet and a Super-hydrophobic Substrate by the Optical Lever Method

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2019

The protocol aims to investigate the interaction between droplets and super-hydrophobic substrates in the air. This includes calibrating the measurement system and measuring the interaction force at super-hydrophobic substrates with different grid fractions.

Force Spectroscopy of Single Protein Molecules Using an Atomic Force Microscope

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Cited by 4 •

2019

We describe the detailed procedures and strategies to measure the mechanical properties and mechanical unfolding pathways of single protein molecules using an atomic force microscope. We also show representative results as a reference for selection and justification of good single protein molecule recordings.

Research

JoVE Journal - Biology
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Reconstitution of Basic Mitotic Spindles in Spherical Emulsion Droplets

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Cited by 19 •

2016

The assembly and positioning of the mitotic spindle depend on the combined forces generated by microtubule dynamics, motor proteins and cross-linkers. Here we present our recently developed methods in which the geometrical confinement of spherical emulsion droplets is used for the bottom-up reconstitution of basic mitotic spindles.

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