This study demonstrated that cryogelation of human hair keratin allows the development of 3D scaffolds with tunable properties, supporting cell adhesion and proliferation for potential biomedical applications.
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September 2023 in “International Journal of Biological Macromolecules” This study found that a novel in-situ crosslinked self-healing hydrogel made from oxidized Bletilla striata polysaccharide and cationic gelatin enhanced wound healing and showed strong hemostatic performance in animal models, suggesting its potential as an effective wound dressing for skin trauma.
January 2005 in “Zhonghua chuangshang guke zazhi” This study found that human hair keratin can effectively induce peripheral nerve regeneration in rats, showing good biocompatibility and a controllable degradation rate when used as a scaffold material.
August 2026 in “Journal of the American Chemical Society” This study designed a new bifunctional protein that successfully degrades the cancer target BCL-xL in cells, inducing apoptosis with high binding success rates.
January 2002 in “Academic Journal of Kunming Medical College” In this study, human-hair artificial tendon material showed good biocompatibility and variable degradation rates in rabbits, depending on treatment time, with minimal inflammatory reactions observed.