July 2020 in “Research Square (Research Square)” A 3D co-culture model improved stem cell function and wound healing.
December 2022 in “Himi, himijn tehnologijn hùrèèlèngijn èrdèm šinžilgèènij bùtèèl” Hair products with copper and zinc enriched yeast made hair thicker and denser.
15 citations
,
October 2010 in “Archives of Toxicology” A yeast-based test can detect the steroid methyltestosterone in urine longer than traditional methods.
January 1990 in “Medical Entomology and Zoology” A new method can quickly detect alcohol abuse by analyzing hair in under an hour.
1 citations
,
October 2022 in “Dermatology practical & conceptual” Isolated patchy heterochromia with pili annulati can occur without other health issues.
11 citations
,
August 2017 in “Journal of Chromatographic Science” The new method is rapid, sensitive, and accurate for evaluating the quality of the medicinal herb Platycladi cacumen.
17 citations
,
April 2022 in “Bioactive Materials” Continuous microfluidic processes can help scale up microtissue production for industrial and clinical use.
August 2019 in “Journal of The American Academy of Dermatology” The document concludes that using micropore tape on an 18-gauge needle can control depth in hair restoration surgery, reducing scalp trauma and complications.
3 citations
,
December 2021 in “Materials today communications” A new film made from human hair supports skin cell growth better than collagen.
132 citations
,
September 2009 in “Experimental Dermatology” A reliable system was developed to distinguish hair growth stages, aiding in identifying hair growth promoters or inhibitors.
March 2026 in “Materials Today Bio” The new cryo-MAP technique enables rapid and successful hair growth by transplanting hair follicle organoids.
3 citations
,
September 2013 in “Bioscience Biotechnology and Biochemistry” Type II porcine hair keratin supports cell growth but hinders cell differentiation.
3 citations
,
October 2025 in “Dentistry Journal” Low-speed protocols with certified centrifuges and FDA-approved glass tubes are best for effective PRF outcomes.
2 citations
,
November 1992 in “Journal of dermatology” Hair cells grown in a lab showed specific hair proteins.
August 2023 in “Cell Proliferation” Human cells in plasma-derived gels can potentially mimic hair follicle environments, improving hair regeneration therapies.
2 citations
,
January 2006 in “中国农业科学:英文版” January 2026 in “Cosmetics” The fermented solution from Platycladus orientalis leaves may boost hair growth and reduce inflammation.
8 citations
,
February 2022 in “PLoS ONE” Bacillus subtilis strain Ydj3 boosts sweet pepper growth, yield, and vitamin C by colonizing roots.
January 2019 in “CLINICAL AND EXPERIMENTAL MORPHOLOGY”
January 2024 in “Biomaterials Research” The new 3D system helps test hair growth treatments effectively.
7 citations
,
June 2021 in “Cell Proliferation” Low oxygen levels improve the function of hair and skin cells when they are in direct contact.
2 citations
,
July 2025 in “Scientific Reports” Acinetobacter strain A1-4-2 can safely clean water pollutants.
6 citations
,
August 2016 in “Journal of Visualized Experiments” The CUBIC protocol allows detailed 3D visualization of proteins in mouse skin biopsies.
23 citations
,
April 2016 in “Journal of Visualized Experiments” The method successfully isolates hair follicle stem cells from mice for research.
88 citations
,
July 2001 in “British journal of dermatology/British journal of dermatology, Supplement” The method effectively measures lipid changes and drug effects on skin follicles.
October 2022 in “bioRxiv (Cold Spring Harbor Laboratory)” Small changes in cell division and differentiation can activate blood progenitors.
2 citations
,
April 2022 in “Nusantara Bioscience” The method accurately measures vancomycin using silver nanoparticles.
28 citations
,
September 2011 in “Stem Cell Reviews and Reports” December 2011 in “The American Journal of Cosmetic Surgery” The brow-suspension suture is a quick, safe, and effective alternative to traditional brow lifts.
19 citations
,
October 2022 in “The Ocular Surface”