Thermal Resilience Data for Ensilicated Lysozyme via Calorimetry and ELISA
by Aswin Doekhie / University of Bath
Available on 1 platform
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Description
Data from analytical methods including differential scanning calorimetry, circular dichroism spectroscopy, ELISA, and thermogravimetric analysis characterize the thermal resilience of ensilicated lysozyme. The dataset, associated with a research article from the University of Bath, includes raw data converted to CSV or Excel formats and MATLAB files for graph generation. Data is organized into folders corresponding to figure order from the article and its supplementary materials.
Use Cases
Modeling protein thermal denaturation based on differential scanning calorimetry data.
Analyzing secondary structure changes under heat stress using circular dichroism spectroscopy data.
Correlating enzymatic activity loss with temperature using enzyme-linked immunosorbent assay (ELISA) data.
Studying mass loss during heating for ensilicated samples via thermogravimetric analysis data.
Strengths
Data originates from multiple established analytical techniques (calorimetry, spectroscopy, ELISA).
Raw data is provided in editable CSV or Excel formats for accessibility.
Includes associated MATLAB code files for reproducing the graphs from the original research.
Limitations
Column-level documentation is absent; field semantics must be inferred after download.
Row count and overall dataset size are unknown, which may limit suitability assessment.
Last update date is unknown; freshness unverified.
Provenance
Source
University of Bath
Collection Method
Experimental data generated via differential scanning calorimetry, circular dichroism spectroscopy, ELISA, and thermogravimetric analysis.
Requires MATLAB to run the included graph generation scripts.