3 citations
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December 2022 in “Russian Journal of General Chemistry” CoCr2O4 catalysts effectively and sustainably produce diaminopyrimidine oxides with high yield.
October 1993 in “The Journal of Clinical Pharmacology” September 2016 in “Journal of Dermatological Science” Polarizing light microscopy can easily and reliably diagnose congenital keratinizing disorders like Netherton syndrome.
67 citations
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July 2000 in “Proceedings of the National Academy of Sciences” The model accurately simulates human hair growth and hair loss patterns.
1 citations
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January 2008
June 2010 in “Journal of Chemical Crystallography” The compound was successfully made and shows potential for treating prostate cancer.
March 2026 in “Zenodo (CERN European Organization for Nuclear Research)” Early diagnosis and lifestyle changes are crucial for managing PCOD.
June 2019 in “Problems of Cryobiology and Cryomedicine”
26 citations
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September 2018 in “Journal of Molecular Cell Biology” Endoglin is crucial for proper hair growth cycles and stem cell activation in mice.
Root hairs help us understand plant growth and the role of the actin cytoskeleton.
October 2017 in “The American Journal of Gastroenterology” Early diagnosis and nutritional support are crucial for managing Cronkhite-Canada Syndrome.
EDM is better for isolating and growing human foreskin fibroblasts, and PPP helps repair UVB damage.
September 2015 in “Photodiagnosis and Photodynamic Therapy” 193 citations
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May 2008 in “Development” Activating β-catenin can turn skin cells into hair follicles.
12 citations
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November 2014 in “PLOS Computational Biology” The study concluded that hair growth in mice is regulated by a stable interaction between skin cell types, and disrupting this can cause hair loss.
23 citations
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December 2006 in “Evaluation and Program Planning” The document suggests a new model for evaluating public research that better captures the full value of knowledge creation and use, using PCOS research as an example.
11 citations
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January 2024 in “Regenerative Biomaterials” A new 3D-printed hydrogel scaffold helps regenerate corneas and prevent scarring.
28 citations
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November 1987 in “Journal of the American Academy of Dermatology” The model successfully grew and differentiated hair follicle cells in the lab.
1 citations
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November 2023 in “Research Square (Research Square)” DiZyme accurately predicts nanozyme activities to aid in discovering new applications.
November 2022 in “Journal of Investigative Dermatology” A new molecule was found to be a safe and effective skin lightener and anti-aging product.
17 citations
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October 2024 in “Journal of the American Academy of Dermatology” Brepocitinib effectively reduces inflammation and improves symptoms in cicatricial alopecia with good safety.
36 citations
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September 2015 in “Orphanet Journal of Rare Diseases” Revertant cell therapy could be a future treatment for Ichthyosis with confetti.
19 citations
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August 2020 in “Gastroenterology report” There is no standard treatment for the rare Cronkhite–Canada syndrome, which can be fatal and lead to cancer.
1 citations
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July 2022 in “Plant Cell, Tissue and Organ Culture (PCTOC)” The study found that in Eclipta prostrata roots, coumestans come from acetate and shikimate pathways, and phenylpropanoid is made only through the shikimate pathway.
November 2025 in “Zenodo (CERN European Organization for Nuclear Research)” Repurposing existing drugs can quickly and cheaply find new treatments.
January 2024 in “SSRN Electronic Journal” 31 citations
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February 1972 in “Experientia” The diphosphonate was the most effective at preventing calcification in rats.
2 citations
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May 2020 in “Journal of the American Academy of Dermatology” Hair shaft changes may be linked to CCCA, but their role is unclear.
January 2015 in “Journal of clinical and investigative dermatology” Clipping is the best method to prepare rats for studying hair loss from chemotherapy because it causes less skin damage and effectively gets hair to the right growth phase.
22 citations
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January 2006 in “Journal of Structural Biology” Hair follicles form hard α-keratin filaments in four steps, showing structural differences.