Smart Hydrogels

Smart hydrogels are water-rich, three-dimensional polymer networks that respond predictably to changes in their chemical or physical environment, making them useful biomaterials for controlled delivery and tissue engineering. They contain crosslinks that retain water while responsive groups alter network swelling or collapse in response to stimuli such as pH, temperature, ionic strength, or enzymes, enabling regulated transport and release of embedded molecules. In immunology and infection research, smart hydrogels can localize antimicrobial compounds, immunomodulators, or diagnostic probes at affected tissues, potentially improving treatment precision and reducing unwanted exposure. Their tunable mechanics, permeability, and degradation also support wound dressings and experimental models for studying host responses, pathogen interactions, and inflammation.

Smart Hydrogels - Related Videos

Education

JoVE Science Education - Engineering

Collagen Hydrogels

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2023

Collagen is another widely used biomaterial that has found popularity in commercial applications, such as photography. Collagen has more recently been used in tissue engineering applications, by creating hydrogels that provide structure to engineered tissue. This video introduces collagen as a biomaterial, demonstrates how it is harvested from porcine skin, and shows how the material is used to create a hydrogel for tissue engineering applications. Finally, several applications of the material...

Hydrogel Synthesis

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2023

Source: Amber N. Barron, Ashlea Patterson, and Taylor D. Sparks, Department of Materials Science and Engineering, The University of Utah, Salt Lake City, UT Hydrogels are a versatile class of cross-linked polymers produced through relatively simple procedures and with generally inexpensive materials. They can be formed from solution and involve a polymer backbone formed from monomer reagents, an initiator which makes the polymer reactive and a crosslinking species which binds the polymer chains...

Are You Smart or Hardworking? How Praise Influences Children's Motivation

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2023

Source: Laboratories of Judith Danovitch and Nicholaus Noles—University of Louisville Imagine teaching two children how to skate. It is a hard task for both of them, and they fall down frequently. After falling down for the first time, one child says that skating is too hard and wants to go home. The other child seems to enjoy the challenge and eagerly gets back up after falling down each time. Why do the children have such different attitudes about the same task? One reason may be that they...

Research

JoVE Journal - Biology
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FRET Imaging in Three-dimensional Hydrogels

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Cited by 3 •

2016

Förster resonance energy transfer (FRET) imaging is a powerful tool for real-time cell biology studies. Here a method for FRET imaging cells in physiologic three-dimensional (3D) hydrogel microenvironments using conventional epifluorescence microscopy is presented. An analysis for ratiometric FRET probes that yields linear ratios over the activation range is described.

Mechanical Stimulation of Chondrocyte-agarose Hydrogels

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Cited by 29 •

2012

The biosynthesis of cartilaginous extracellular matrix by chondrocytes can be affected by application of mechanical stimuli. This method describes the technique of applying dynamic compressive strains to chondrocytes encapsulated in 3D constructs and the evaluation of induced changes in chondrocyte metabolism.

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