April 2025 in “International Journal of Cosmetic Science” This study found that using 1,4-butylenediamine bismaleimide for hair perming through thiol-Michael click chemistry offers comparable efficiency to conventional oxidative methods, with enhanced durability and reduced damage to hair fibres, preserving mechanical, color, and surface properties.
January 2018 in “ScholarWorks @UVM (University of Vermont)” This study provides evidence supporting the theory that the presence of selenocysteine in proteins, such as thioredoxin reductase, may confer chemical reversibility, which contributes to their oxidative resistance and potential catalytic functions.
January 2026 in “Molecules” In this study, the novel thiol-Michael click perming molecule, MA2-CySS, achieved repeatable perming with reduced oxidative damage, preserving hair keratin's structure while maintaining efficiency comparable to traditional oxidative methods.
March 2026 in “ACS Applied Materials & Interfaces” This study introduced an innovative nanozyme system called MCP@G, which was shown to improve diabetic wound healing in rats by alleviating mitochondrial oxidative stress, enhancing fibroblast migration, and promoting blood vessel and hair follicle regeneration, offering a promising approach for treating challenging diabetic wounds.
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January 2008 in “Photochemistry and Photobiology” This review discusses the effects of visible light on human skin, highlighting its role in pigmentation, thermal damage, and the treatment of several skin conditions, while noting limited sunscreen protection against it; no new clinical results are reported.