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January 2016 in “International Journal of Biological Macromolecules” Enzymatic phosphorylation of hair keratin improves the effectiveness of hair products with cationic ingredients.
January 2026 in “Beilstein Journal of Organic Chemistry” A new, efficient method creates sulfinimidate esters from sulfenamides and alcohols without metals.
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September 1990 in “The Anatomical Record” Human anagen hair follicles have unique carbohydrate patterns during keratinization.
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January 1998 in “Heterocycles” Researchers made two new compounds that could be used for medicine.
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July 2009 in “Experimental and Clinical Endocrinology & Diabetes” April 2026 in “Future Medicinal Chemistry” Proteolysis-Targeting Chimeras (PROTACs) have significantly transformed drug discovery by utilizing a unique catalytic degradation mechanism that targets and degrades specific proteins. This technology has progressed from a laboratory concept to achieving clinical breakthroughs, demonstrating its potential in treating various diseases. PROTACs offer advantages over traditional inhibitors by providing sustained protein degradation, which can lead to more effective and durable therapeutic outcomes. The development of PROTACs has opened new avenues for targeting previously "undruggable" proteins, marking a pivotal advancement in the field of medicinal chemistry and pharmacology.
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January 2000 in “Drug Development Research” New butyric acid prodrugs show promise for cancer treatment, anemia management, and protecting hair from chemotherapy damage.
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December 2018 in “International Journal of Cosmetic Science” CARB is a strong barrier in human hair that prevents dye penetration.
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March 2019 in “Environmental Chemistry Letters” Cyclodextrins improve how steroid drugs work and are used in marketed medications and environmental applications.
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May 2022 in “Research Square (Research Square)” Acetate helps reduce depression in rats with PCOS by lowering specific gene expression and DNA changes in the brain.
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December 2005 in “Journal of Medicinal Chemistry” A brominated phenoxy compound effectively inhibits a human enzyme and shows potential for clinical use.
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June 2025 in “Natural Product Communications” Researchers created 10 new compounds similar to cercidin, which could lead to new antibiotics.
November 2021 in “Pharmaceutical Sciences” New compounds were made and tested, with compound 6 showing potential for treating prostate-related diseases.