1 citations
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December 2016 in “Rossijskij žurnal kožnyh i veneričeskih boleznej” A new treatment using unactivated platelet leukocyte autoplasma cured 80% of non-scarring alopecia patients.
May 2024 in “Brazilian Journal of Hair Health” Finasteride-loaded nanoparticles were successfully created for potential improved hair growth treatment.
April 2024 in “Journal of cosmetic dermatology” Platelet-rich fibrin might be a promising treatment for hair loss, but more research is needed to confirm its effectiveness.
15 citations
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February 2013 in “Pharmaceutical nanotechnology” Finasteride delivery through skin improved using invasomes and iontophoresis.
April 2025 in “Journal of Medical Residency Review” PRP combined with other treatments shows promise for skin rejuvenation.
26 citations
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January 2025 in “iScience” PRP helps tissue repair but lacks standard preparation methods.
4 citations
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September 2010 in “Medical Hypotheses”
11 citations
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September 2008 in “European Journal of Drug Metabolism and Pharmacokinetics” Finasteride helps reduce pain and inflammation in animals.
18 citations
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January 2013 in “Evidence-based Complementary and Alternative Medicine” Aconiti Lateralis Preparata Radix helps mouse stem cells grow and turn into bone cells faster than usual methods.
December 2024 in “Food Bioscience” Limosilactobacillus fermentum MF10 helps hair grow by activating certain cell signals in mice.
32 citations
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August 1996 in “Journal of Investigative Dermatology”
May 2024 in “Journal of cosmetic dermatology” Heat-treated Limosilactobacillus fermentum with menthol, salicylic acid, and panthenol promotes hair growth and balances scalp microbiome in people with androgenetic alopecia.
June 2019 in “PRISM (University of Calgary)” DPCs and new biomaterials can greatly improve skin healing.
1 citations
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January 2023 in “Chemical Engineering Journal” September 2025 in “Acta Biomaterialia” A new tissue adhesive helps wounds heal better by allowing more cells to enter.
7 citations
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May 2016 in “European Polymer Journal” The new nanocarriers improve how well water-insoluble drugs dissolve and allow for controlled drug release.
13 citations
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August 2022 in “Nanomaterials” The new wound dressing helps heal abdominal wall defects faster by improving the wound environment.
10 citations
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May 2016 in “Polymer” New nanocarriers improve skin drug delivery with low toxicity at certain concentrations.
21 citations
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January 2010 in “Skin pharmacology and physiology” Special creams can significantly reduce pollen allergens getting into hair follicles.
1 citations
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December 2023 in “Life” PRP helps skin heal, possibly through special cells called telocytes.
March 2023 in “International journal of pharmaceutical sciences review and research” The F2 Emulgel with Tridax procumbens extract showed good physical properties and antimicrobial effectiveness for wound healing.
4 citations
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February 2023 in “Stem Cell Research & Therapy” Mouse skin cells can become sperm-like cells in the lab.
32 citations
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December 2015 in “PloS one” P144® improves hypertrophic scars by reducing size and thickness and increasing elasticity.
February 2025 in “Archives of Dermatological Research” Injectable platelet-rich fibrin effectively improves hair density and scalp symptoms in androgenetic alopecia.
6 citations
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August 2013 in “한국응용생명화학회지” Certain natural compounds can block an enzyme linked to prostate enlargement and hair loss, showing potential for new treatments.
35 citations
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July 2022 in “Frontiers in Integrative Neuroscience” Formononetin may help protect the brain and treat neurological diseases.
31 citations
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June 2017 in “Regeneration” BMP2 needs periosteal tissue to help regenerate mouse middle finger bones within a specific time.
13 citations
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July 2016 in “BMC Complementary and Alternative Medicine” Hominis Placenta helps hair grow back by increasing cell growth and a specific growth factor.
March 2025 in “ACS Applied Materials & Interfaces” Ultrasonic microneedles improve hair regrowth treatment effectiveness without side effects.
1 citations
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April 2023 in “Science Advances” High levels of ERK activity are key for tissue regeneration in spiny mice, and activating ERK can potentially redirect scar-forming healing towards regenerative healing in mammals.