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◆ Biomacromolecules2026-05-23· Fibroin

Understanding Solid-State Structural Transitions and Stability of Silk Fibroin from a Bound Water Perspective

Zhenzhen Qi, Zhen Hu, Guohongfang Tan, Yanai Chen, Yu Liu, Shenzhou Lu

原始摘要(英文原文)· Original abstract
In this study, the crystalline structure of silk fibroin was regulated by controlling water molecule states under precise temperature and humidity. Low-field NMR revealed that strong bound water remained stable at 5-6%, while weak bound water varied significantly with environmental conditions. Thermal analysis showed that glass transition and crystallization temperatures decreased as weak bound water increased. X-ray diffraction indicated that weak bound water critically influences crystallization: at 4-60 °C, exceeding 4% weak bound water induced transformation to Silk I; below this threshold, the amorphous state remained. Above 70 °C, weak bound water dropped below 4%, leading to Silk II formation. Crystallization kinetics and molecular dynamics simulations confirmed that water molecules enhance chain segment mobility, accelerating structural transformation. This work provides a theoretical basis for regulating the processing, storage, and structural stability of protein-based biomaterials under nonphysiological conditions.
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Understanding Solid-State Structural Transitions and Stability of Silk Fibroin from a Bound Water Perspective — 科研速览 Science Skim