Blue Light Crosslinking

Blue light crosslinking is a photochemical method that uses visible blue light to convert liquid or soluble biomaterials into stable, interconnected polymer networks. During irradiation, a compatible photoinitiator absorbs blue light and generates reactive species that link functional groups on neighboring polymer chains, forming a crosslinked hydrogel or solid matrix. In bioengineering, this approach enables precise control over material shape, stiffness, and curing location while operating under relatively mild conditions. It supports hydrogel fabrication, cell encapsulation, tissue-engineering scaffolds, drug delivery systems, and biofabrication, where rapid, spatially controlled solidification can improve construct design and reproducibility.

Blue Light Crosslinking - Related Videos

Research

JoVE EoE - Bacterial Pathogenesis and Host Interactions

Blue Light Therapy for Drug-Resistant Bacterial Infections in Burn Wounds in a Mouse Model

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2026

Source: Wang, Y., et al. In Vivo Investigation of Antimicrobial Blue Light Therapy for Multidrug-resistant Acinetobacter baumannii Burn Infections Using Bioluminescence Imaging. J. Vis. Exp. (2017)This video demonstrates the procedure for treating burn wound infections caused by bioluminescent, drug-resistant bacteria in mice using blue light therapy, followed by bioluminescence imaging to monitor treatment efficacy.

Crosslinking Neuronal Surface Proteins in the Mouse Brain using a Chemical Crosslinking Assay

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2025

This video demonstrates the crosslinking of neuronal surface proteins using Bis-sulfosuccinimidyl suberate or BS3. Isolated and chilled mouse brain is sectioned coronally. The desired region is extracted from the sections, minced, and treated with BS3. BS3 crosslinks surface proteins like GABA receptors, leaving internal proteins unaltered. The reaction is quenched with glycine before processing the samples for further analysis.

Nanosponge Tunability in Size and Crosslinking Density

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Cited by 1 •

2017

This article describes a process for tuning the size and crosslinking density of covalently crosslinked nanoparticles from linear polyesters containing pendant functionality. By tailoring synthesis parameters (polymer molecular weight, pendant functionality incorporation, and crosslinker equivalents), a desired nanoparticle size and crosslinking density can be achieved for drug delivery applications.

Investigation of a Blue Light LED Device to Suppress Wound Pathogens Using a Collagen-Based Synthetic Skin Model

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2026

A 405 nm blue light LED device demonstrates antimicrobial efficacy against a broad range of wound pathogens when evaluated on a collagen-based synthetic skin model. This simplified in vitro approach offers a reproducible and ethically viable alternative for early-phase evaluation of light-based antimicrobial therapies.

Preparation of DNA-crosslinked Polyacrylamide Hydrogels

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Cited by 5 •

2014

Our laboratory has developed DNA-crosslinked polyacrylamide hydrogels, a dynamic hydrogel system, to better understand the effects of modulating tissue stiffness on cell function. Here, we provide schematics, descriptions, and protocols to prepare these hydrogels.

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