Targeting a specific lipid could help treat male pattern baldness.
March 2010 in “Hair transplant forum international” The workshop improved skills and knowledge in hair restoration surgery.
Finasteride's metabolites were identified, helping understand how the drug is processed in the body.
March 2008 in “European Urology Supplements” Finasteride and dutasteride can affect sexual function in BPH patients.
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March 2003 in “International Society of Hair Restoration Surgery” Lasers are now less popular for hair restoration.
January 2002 in “HAL (Le Centre pour la Communication Scientifique Directe)” Melatonin affects fur growth timing in chinchillas.
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July 1996 in “International Journal of Dermatology” The book "Hair Replacement" is a detailed guide on all methods of hair replacement, recommended for those interested in the field.
January 2022 in “Chemistry: A European Journal” SR-ECDi helps better understand and map the chiroptical properties of solid chiral materials.
March 2020 in “Zenodo (CERN European Organization for Nuclear Research)” Finasteride treatment changes certain urine metabolites in male pattern baldness patients.
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May 2001 in “Hair transplant forum international” The CapilliCARE® machine shows promise for diagnosing early hair loss.
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March 2006 in “Science” Understanding stem cell interactions with their environments is key for advancing regenerative medicine.
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December 2013 in “Nature” Two fibroblast types shape skin structure and repair differently.
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May 2007 in “Nature” Hair follicles can regrow in wounded adult mouse skin using a process like embryo development.
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June 2010 in “Nature” Alopecia areata involves both innate and adaptive immunity, with specific genes linked to the disease.
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February 2002 in “Current Opinion in Cell Biology” Keratin filaments are crucial for cell structure and protection, with ongoing discoveries about their genes and functions.
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February 2008 in “PLANT PHYSIOLOGY” OsPHR2 gene causes excessive phosphate in rice shoots, affecting plant growth and root development.
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May 2009 in “Cell stem cell” Lrig1 marks a unique group of stem cells in mouse skin that can become different skin cell types.
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June 2014 in “Science” Epithelial stem cells can adapt and help in tissue repair and regeneration.
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January 2005 in “BioEssays” Hair follicle development is controlled by interactions between skin tissues and specific molecular signals.
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August 2002 in “BioEssays” The cornified cell envelope forms a protective barrier in skin and hair, using specific proteins and lipids to maintain effectiveness.
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September 2012 in “Nature” African spiny mice can regenerate skin, hair, and cartilage, but not muscle, and their unique abilities could be useful for regenerative medicine.
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March 2000 in “Proceedings of the National Academy of Sciences” Overexpressing GLI-1 in mice skin can cause tumors like human basal cell carcinomas.
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March 2017 in “Nature Communications” Stem cells help heal wounds by rapidly dividing and migrating to the wound edge.
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February 2011 in “Genes & Development” EZH1 and EZH2 are crucial for healthy hair growth and skin repair.
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March 2015 in “Nature” Super-enhancers controlled by pioneer factors like SOX9 are crucial for stem cell adaptability and identity.
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September 2010 in “Nucleic acids research” Increasing mir-302 turns human hair cells into stem cells by changing gene regulation and demethylation.