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January 2020 in “Stem Cells International” Epidermal stem cells help heal skin, but how they work is still unclear.
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April 2013 in “Stem cells” LGR5 helps maintain corneal cell characteristics and prevents unwanted changes by controlling specific cell signaling pathways.
April 2018 in “The journal of investigative dermatology/Journal of investigative dermatology” Researchers created a 3D-printed skin model that grew human hair when grafted onto mice by improving blood supply to the grafts.
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February 2024 in “Science Advances” Magnetic fields help create complex 3D soft structures for biomedical use.
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April 2017 in “Scientific Reports” Using a perfusion system and 3D spheroid culture improves the growth of corneal cell layers for tissue engineering.
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January 2022 in “Burns and trauma” Skin cell-derived vesicles can help heal skin injuries effectively.
January 2023 in “European journal of gynaecological oncology” KRT17 may be a new target for endometrial cancer treatment because it helps cancer cells move and form new blood vessels.
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November 2017 in “Scientific Reports” Tiny particles from stem cells help activate hair growth cells and encourage hair growth in mice without being toxic.
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July 2007 in “Development” TAF4 is important for skin cell growth and helps prevent skin cancer in mice.
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October 2021 in “International Journal of Molecular Sciences” The HATMSC1 cell line from fat tissue can produce helpful factors for regenerative and immune therapies.
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September 2025 in “Cosmetics” Extracellular vesicles could revolutionize skincare by improving skin repair and anti-aging, but face regulatory and cost challenges.
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Human hair keratins can be turned into useful 3D biomedical scaffolds through a freeze-thaw process.
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