Experimental data from a study on fabricating 3D-printed hydrogel microstructures with de novo designed heterodimeric coiled-coil peptides. The work demonstrates controlled peptide capture and release using external stimuli like pH, ionic strength, temperature, or peptide competitors. The dataset was authored by Niklas Schwegler and last updated on 2026-07-19.
Use Cases
- Modeling stimuli-responsive peptide binding and release based on pH, ionic strength, or temperature conditions described in the study.
- Designing multimaterial microstructures with spatially resolved coiled-coil functionalization for dynamic biomaterials.
- Developing programmable drug delivery systems based on the controlled assembly and disassembly of coiled-coil peptides.
- Engineering reconfigurable hydrogel microstructures using coiled-coil interactions as molecular handles.
Strengths
- Dataset is associated with a study demonstrating a novel method for stimuli-responsive 3D-printed microstructures.
- The description provides a specific methodological focus on de novo designed coiled-coil peptides and external stimuli.
Limitations
- Column-level documentation is absent; field semantics must be inferred after download.
- Row count is unknown, which may limit suitability assessment.
- Description metadata is limited; actual data quality requires manual inspection after download.
Provenance
- Source
- Schwegler, Niklas via heiDATA Harvested Dataverse
- Collection Method
- Likely contains experimental data from the described fabrication and testing of 3D-printed hydrogel microstructures.
- Freshness
- Last updated 2026-07-19 07:10:12; freshness should be verified.