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The Application of Organs-on-a-Chip in Dental, Oral, and Craniofacial Research

Chu-Yi Huang, Farhad Sanaei, Wouter P. R. Verdurmen, Fang Yang, Wei Ji, X. Frank Walboomers

2023Journal of Dental Research54 citationsDOIOpen Access PDF

Abstract

The current development of microfluidics-based microphysiological systems (MPSs) will rapidly lead to a paradigm shift from traditional static 2-dimensional cell cultivation towards organized tissue culture within a dynamic cellular milieu. Especially organs-on-a-chip (OoCs) can very precisely re-create the mechanical and unique anatomical structures of the oral environment. This review provides an introduction to such technology, from commonly used chip materials and fabrication methods to the application of OoC in in vitro culture. OoCs are advantageous because of their small-scaled culture environment, the highly controlled dynamic experimental conditions, and the likeness to the in vivo structure. We specifically focus on current chip designs in dental, oral, and craniofacial (DOC) research. Also, future perspectives are discussed, like model standardization and the development of integrated platforms with advanced read-out functionality. By doing so, it will be possible for OoCs to serve as an alternative for animal testing and to develop highly predictive human models for clinical experiments and even personalized medicine.

Topics & Concepts

StandardizationComputer scienceCraniofacialOrgan-on-a-chipBiochemical engineeringNanotechnologyHuman–computer interactionMicrofluidicsMedicineEngineeringMaterials scienceOperating systemPsychiatry3D Printing in Biomedical ResearchInnovative Microfluidic and Catalytic Techniques InnovationMicrofluidic and Bio-sensing Technologies
The Application of Organs-on-a-Chip in Dental, Oral, and Craniofacial Research | Litcius