B<sub>12</sub>-dependent photoresponsive protein hydrogels for controlled stem cell/protein release.
basic_science · Level V
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- Record sourced from PubMed, PMID 28533376.
- Also identified by DOI 10.1073/pnas.1621350114 and PMC identifier 5468657.
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Abstract
Thanks to the precise control over their structural and functional properties, genetically engineered protein-based hydrogels have emerged as a promising candidate for biomedical applications. Given the growing demand for creating stimuli-responsive "smart" hydrogels, here we show the synthesis of entirely protein-based photoresponsive hydrogels by covalently polymerizing the adenosylcobalamin (AdoB<sub>12</sub>)-dependent photoreceptor C-terminal adenosylcobalamin binding domain (CarH<sub>C</sub>) proteins using genetically encoded SpyTag-SpyCatcher chemistry under mild physiological conditions. The resulting hydrogel composed of physically self-assembled CarH<sub>C</sub> polymers exhibited a rapid gel-sol transition on light exposure, which enabled the facile release/recovery of 3T3 fibroblasts and human mesenchymal stem cells (hMSCs) from 3D cultures while maintaining their viability. A covalently cross-linked CarH<sub>C</sub> hydrogel was also designed to encapsulate and release bulky globular proteins, such as mCherry, in a light-dependent manner. The direct assembly of stimuli-responsive proteins into hydrogels represents a versatile strategy for designing dynamically tunable materials.
Medical subject headings
- Drug Delivery Systems
- Hydrogels
- Protein Engineering