Related Experiment Video
Updated: Feb 2, 2026

Designing Silk-silk Protein Alloy Materials for Biomedical Applications
Published on: August 13, 2014
Silk Molecular Weight Influences the Kinetics of Enzymatically Cross-linked Silk Hydrogel Formation
A Pasha Tabatabai1,2, Benjamin P Partlow3, Nicole R Raia3
1Department of Physics , Georgetown University , Washington , District of Columbia 20057 , United States.
Abstract:
We transform reconstituted silk solutions into robust hydrogels through covalent dityrosine cross-linking resulting from an enzymatic reaction. The bulk rheological properties and the covalent dityrosine bond formation of these gels are measured during polymerization. We compare the time-resolved bond formation to the mechanical properties, where we find that the gelation process is consistent with a model of percolation. The molecular weight of the protein determines whether a secondary mode of growth postpercolation exists, indicating that molecular weight changes affect the mechanisms by which these gels polymerize.
Related Concept Videos
Kinetic Molecular Theory: Molecular Velocities, Temperature, and Kinetic Energy
Molecular Kinetic Energy
Polymers: Defining Molecular Weight
The number average molecular weight (Mn) is the summation of the number...
Polymers: Molecular Weight Distribution
Basic Postulates of Kinetic Molecular Theory: Particle Size, Energy, and Collision
Kinetic Molecular Theory and Gas Laws Explain Properties of Gas Molecules

