Publication | Closed Access
Skin and hair on-a-chip: in vitro skin models versus ex vivo tissue maintenance with dynamic perfusion
266
Citations
12
References
2013
Year
Tissue EngineeringEngineeringBiofabricationOrgan-on-a-chipBiomedical EngineeringDermatologyDynamic PerfusionStatic CultureRegenerative MedicineTissue MaintenanceSkin EquivalentsExperimental DermatologyMicrofluidicsCutaneous BiologyVitro Skin ModelsSkin SubstituteMicrofabricationBioengineering ModelBioelectronicsLab-on-a-chipWound HealingBiomemsMedicineDermal Structure
Substantial progress has been achieved over the last few decades in the development of skin equivalents to model the skin as an organ. However, their static culture still limits the emulation of essential physiological properties crucial for toxicity testing and compound screening. Here, we describe a dynamically perfused chip-based bioreactor platform capable of applying variable mechanical shear stress and extending culture periods. This leads to improvements of culture conditions for integrated in vitro skin models, ex vivo skin organ cultures and biopsies of single hair follicular units.
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