Adhesive Forces

Adhesive forces are attractions between molecules or surfaces of different materials, and they help explain how substances attach, spread, or move across biological interfaces. These forces arise from intermolecular interactions such as hydrogen bonding, electrostatic attraction, and van der Waals forces; their effects depend on surface chemistry, contact area, and the surrounding environment. In biology, adhesion supports water movement through plant xylem, enables cells to attach to extracellular matrix proteins, and helps tissues, mucus, and biological coatings interact with their surroundings. Understanding adhesive forces is important for studying transport, tissue organization, biomaterials, and strategies for controlling cell-surface interactions.

Adhesive Forces - Related Videos

Research

JoVE Journal - Engineering

Investigating Single Molecule Adhesion by Atomic Force Spectroscopy

0 Views •

Cited by 5 •

2015

A protocol to couple a large variety of single molecules covalently onto an AFM tip is presented. Procedures and examples to determine the adhesion force and free energy of these molecules on solid supports and bio-interfaces are provided.

Education

JoVE Core - Biology

Adhesion

0 Views •

2019

Adhesion occurs when one type of molecule is attracted to a different molecule. Water exhibits adhesive properties in the presence of polar surfaces, such as glass or cellulose in plants. For instance, when water is poured into a glass, the positively charged hydrogen molecules of water are more attracted to the negatively charged oxygen molecules in the silica than to the oxygen in neighboring water molecules. Capillary action is a result of water’s adhesive tendencies. When a narrow glass...

Creation of Abdominal Adhesions in Mice

0 Views •

Cited by 9 •

2016

Abdominal adhesions that form after surgery are a major cause of pain, infertility, and hospitalization and reoperation for small bowel obstruction. Our surgical procedure for creating abdominal adhesions in mice is a reliable tool to study the mechanisms underlying the formation of adhesions.

Force Spectroscopy of Single Protein Molecules Using an Atomic Force Microscope

0 Views •

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 - Bioengineering
Free Sample

Control of Cell Adhesion using Hydrogel Patterning Techniques for Applications in Traction Force Microscopy

0 Views •

Cited by 2 •

2022

Near-UV lithography and traction force microscopy are combined to measure cellular forces on micropatterned hydrogels. The targeted light-induced release of single cells enables a high number of measurements on the same sample.

View All Results

FAQs

Related Topics