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June 2004 in “Critical Care Nurse” Genomics can improve patient care by using DNA to create personalized treatment plans.
A new easy-to-use biosensor was made to detect androgen receptor mRNA, which could help diagnose related conditions quickly.
December 2022 in “Zenodo (CERN European Organization for Nuclear Research)” Tofacitinib effectively treated severe alopecia areata in a 14-year-old girl.
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May 2008 in “Cancer Science” Cancer cells often have more copies of TERT and TERC genes, which helps them grow and could affect patient outcomes.
September 2025 in “Stem Cell Research & Therapy” TAZ boosts fat cell formation in goat stem cells by activating a specific signaling pathway.
January 2007 in “Frontiers in Medicine” Tofacitinib works well for treating alopecia areata, especially when combined with corticosteroids, but is less effective if the disease has lasted over 2 years.
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December 2015 in “International Journal of Dermatology” New and known mutations in the hairless gene cause a hair loss condition called Atrichia with papular lesions.
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February 2017 in “Scientific Reports” Certain variations of the HDAC9 gene can increase or decrease stroke risk in the Chinese population.
January 2014 in “生命科学(ISSN1934-7391)” A certain gene variation can affect protein production and is linked to male pattern baldness.
Newly designed proteins can effectively degrade specific proteins in cells, offering a promising alternative for targeted protein degradation.
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August 2024 in “Clinical and Experimental Dermatology” Upadacitinib is effective and safe for treating severe alopecia areata in teens.
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May 2004 in “Prenatal Diagnosis” Prenatal genetic diagnosis may not predict MELAS syndrome severity in offspring.
July 2025 in “The FASEB Journal” Human amniotic stem cell exosomes may effectively treat hair loss by promoting hair regrowth.
November 2020 in “UNC Libraries” Seven new genetic risk areas for prostate cancer were found.
July 2005 in “The American Journal of Human Genetics” The AR gene is linked to male-pattern baldness, TNFSF4 to heart disease, SLC19A3 to BBGD, MCT8 to a syndrome, and segmental duplications to genetic variation.
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January 2021 in “Translational Psychiatry” The research suggests that Tourette syndrome is linked to both brain signaling and immune system pathways.
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May 2019 in “Cytotherapy” ATIR101 improves survival in stem cell transplant patients; Australian stem cell treatment decisions are influenced by regulation changes.
April 2019 in “Journal of Investigative Dermatology” Non-coding RNA boosts retinoic acid production and signaling, aiding regeneration.
March 2026 in “Journal of the American Academy of Dermatology” The treatment significantly improved lymphocytic cicatricial alopecia symptoms in most patients.
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December 2025 in “Journal of the American Academy of Dermatology” January 2024 in “Skin Appendage Disorders” Serial Excision Technique improves appearance and quality of life for cicatricial alopecia patients.
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June 2017 in “Journal of Inherited Metabolic Disease” High-content screening is useful for finding new treatments for rare diseases and has led to FDA-approved drugs.
February 2013 in “Journal of Visualized Experiments” The document's conclusion cannot be provided because the document is not available for analysis.
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February 2023 in “Veterinary Sciences” Adhesive tape impression is a useful tool for diagnosing dermatophytosis in dogs and cats.
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September 2024 in “Development” Researchers converted human embryonic stem cells into trophoblast stem cells using specific transcription factors.
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April 2009 in “Human Genetics” A specific genetic mutation may increase male pattern baldness risk, especially in Europeans.
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October 2002 in “Journal of Investigative Dermatology” A specific gene mutation causes congenital hair loss.
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August 2020 in “CRC Press eBooks” Tabby mutations in mice affect hair follicle development and help study genetic mapping and certain medical conditions.
June 2025 in “Molecular Therapy — Nucleic Acids” A new treatment using a DNA aptamer can promote hair growth by targeting a specific receptor.