Publication | Open Access
Incorporation of hair follicles in 3D bioprinted models of human skin
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Citations
43
References
2023
Year
Tissue EngineeringEngineeringBiofabricationBiomedical EngineeringDermatologyRegenerative MedicineHair FolliclesMatrix BiologyGeometric ModelingSkin DevelopmentVascular Tissue EngineeringCutaneous BiologyBioprintingSkin ModelsMorphogenesisSkin SubstituteFunctional Tissue EngineeringCell Biology3D BioprintingCellular Bioengineering3D PrintingBioprinted ModelsNative Skin TissueEngineered Skin TissuesStem Cell EngineeringHuman SkinMedicineBiomaterialsDermal Structure
Current approaches fail to adequately introduce complex adnexal structures such as hair follicles within tissue engineered models of skin. Here, we report on the use of 3D bioprinting to incorporate these structures in engineered skin tissues. Spheroids, induced by printing dermal papilla cells (DPCs) and human umbilical vein cells (HUVECs), were precisely printed within a pregelled dermal layer containing fibroblasts. The resulting tissue developed hair follicle–like structures upon maturation, supported by migration of keratinocytes and melanocytes, and their morphology and composition grossly mimicked that of the native skin tissue. Reconstructed skin models with increased complexity that better mimic native adnexal structures can have a substantial impact on regenerative medicine as grafts and efficacy models to test the safety of chemical compounds.
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