3 citations
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March 2017 in “Pediatric Dermatology” FOXN1 duplication can cause excessive hair growth.
71 citations
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October 2008 in “The journal of investigative dermatology/Journal of investigative dermatology” HFMs can help study hair growth and test potential hair growth drugs.
January 2024 in “Asian Journal of Medical Sciences” Dermoscopes help tell FPHL apart from other hair loss types and can detect it early by identifying specific patterns.
May 2023 in “The Journal of Sexual Medicine” Flibanserin may help improve sexual symptoms in various conditions beyond its approved use.
14 citations
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July 2021 in “Bioinformatics” rPanglaoDB helps study rare cell types by merging RNA data, showing fibrocytes aid in healing.
February 2024 in “Skin research and technology” The research suggests that immune cells and a specific type of cell death called ferroptosis are involved in Frontal fibrosis alopecia.
2 citations
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October 2010 in “European Journal of Drug Metabolism and Pharmacokinetics” Researchers developed a quick and sensitive way to measure finasteride in blood using a small sample size.
November 2019 in “British Journal of Dermatology” FOL-005 peptide may help treat excessive hair growth safely.
FGF5 spliceosomes inhibit rabbit hair growth by affecting gene expression.
March 2023 in “Oxford University Press eBooks”
7 citations
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February 2016 in “Dermatology and therapy” t-Flavanone helps improve male pattern hair loss by making hair roots stronger.
Mechanical stress causes ligament thickening through WISP-1 and Hedgehog signaling.
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October 2022 in “Nature Communications” The DiLiCre mouse model is an effective tool for precise genome editing using light.
5 citations
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May 2001 in “Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIE” The DWLSM provides detailed imaging of hair shafts and follicles with high accuracy.
January 2025 in “Journal of Food Biochemistry” 2′‐Fucosyllactose reduces hair loss and promotes hair growth in mice.
May 2014 in “Journal of Investigative Dermatology” Scientists developed tools to observe hair regeneration in real time and assess skin health, using glowing mice and light-controlled genes.
Activin A and Follistatin affect how mouse hair follicles grow.
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August 2021 in “International Journal of Pharmaceutics” A new device, IVL-PPF Microsphere®, was created to deliver a hair loss drug for up to 3 months with one injection, potentially replacing daily pills.
29 citations
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January 2010 in “Methods in Enzymology” The document concludes that careful design of genetic fate mapping experiments is crucial for accurate cell lineage tracing in mice.
May 2025 in “Experimental Dermatology” A new genetic tool improves the study of hair growth and potential hair disorder treatments.
1 citations
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January 2024 in “Advanced science” Fibronectin-attached cell sheets improve wound healing and are safe and effective.
October 2014 in “Microscopy” The method using ionic liquid improves observation of cell structures with less damage.
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April 2022 in “African Health Sciences” The Fatty Liver Index (FLI) may not be enough to rule out non-alcoholic fatty liver disease in lean women with polycystic ovary syndrome.
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April 2024 in “Science China Materials” 15 citations
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September 2018 in “Frontiers in Plant Science” BcFLA1 protein is crucial for root hair growth in response to low phosphate in Brassica carinata.
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February 1994 in “Journal of Investigative Dermatology” 28 citations
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November 2017 in “New Phytologist” Roots adapt to uneven environments by changing growth and gene expression.
180 citations
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April 2002 in “Cell Death and Differentiation”