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Research 31–60 of 585
- In vitro mesenchymal–epithelial interaction facilitates de novo hair follicle formation
- Optical Behavior of Human Skin Substitutes: Absorbance in the 200–400 nm UV Range
- Self Organized Skin Equivalent by Epithelial and Fibroblast Cells on Polycaprolactone Electrospun Mat with Porous Fibers
- Bioengineering Skin Constructs
- A Concise Review on Tissue Engineered Artificial Skin Grafts for Chronic Wound Treatment: Can We Reconstruct Functional Skin Tissue In Vitro?
- Functional Hair Follicle Regeneration by the Rearrangement of Stem Cells
- Regeneration of Human Hair Follicles by 3-D Bioprinting
- Ultrasound-Activated GelMA Hydrogel Loaded with MSC-EVs Promotes Functional Regeneration of Skin Vasculature, Nerves, and Appendages
- Recent Advances in Bioengineered Scaffolds for Cutaneous Wound Healing
- Advances in a rapidly emerging field of hair follicle stem cell research.
- Regenerative Cosmetics: Skin Tissue Engineering for Anti-Aging, Repair, and Hair Restoration
- Bioengineered polyester nanoparticles for the synergistic treatment of androgenic alopecia via the suppression of 5α-reductase and knockdown of androgen receptor
- Lidocaine-Loaded Solid Lipid Microparticles (SLMPs) Produced from Gas-Saturated Solutions for Wound Applications
- Fully functional hair follicle organ regeneration using organ-inductive potential stem cells with an accessory mesenchymal cell population in an in vitro culture system
- The Progress in Bioprinting and Its Potential Impact on Health-Related Quality of Life
- Faculty Opinions recommendation of Fully functional hair follicle regeneration through the rearrangement of stem cells and their niches.
- Effect of composite biodegradable biomaterials on wound healing in diabetes
- Bioengineering a 3D integumentary organ system from iPS cells using an in vivo transplantation model
- Current application of tissue-engineered dermal scaffolds mimicking the extracellular matrix microenvironment in wound healing
- ControlledRelease of Minoxidil through Hydrogel Cross-Linkingto Treat Androgenetic Alopecia
- Three-Dimensional Histological Structures of the Human Dermis
- Controlled Release of Minoxidil through Hydrogel Cross-Linking to Treat Androgenetic Alopecia
- Growth factor mimetics for skin regeneration: In vitro profiling of primary human fibroblasts and keratinocytes
- Hair-follicle dermal papilla and sheath fibroblasts provide a supportive microenvironment for human skin regeneration
- Bioengineering skin using mechanisms of regeneration and repair
- Next generation human skin constructs as advanced tools for drug development
- Prevascularization of dermal substitutes with adipose tissue-derived microvascular fragments enhances early skin grafting
- Advanced therapies of skin injuries
- Self‐organizing hair peg‐like structures from dissociated skin progenitor cells: New insights for human hair follicle organoid engineering and Turing patterning in an asymmetric morphogenetic field
- Epidermal stem cells and skin tissue engineering in hair follicle regeneration