Microfluidic Devices


Reusable Multi-well Microfluidic Device
3D-printed using biocompatible polymer, overcomes limitations of traditional PDMS-based devices.
Features six wells with removable cell culture inserts and individual media collection ports for easy operation.
Optimized for improved handling and easy post-processing of tissues during experiments.
Validation: Validated for co-culture of cells of upper respiratory tract


Perfusion Microfluidic Mammalian Co-culture Device
Features a central culture chamber with a removable insert, enabling air-interface exposure of the cells.
Removable frame allows easy imaging and reinsertion for continued culture.
Fabrication: Compatible with 3D printing, injection molding, or CNC milling.
Validation: Validation for co-culture of skin fibroblasts and keratinocytes.


Microfluidic Cellular Communication Device
Designed with two interconnected chambers allowing media flow through microchannels.
Facilitates communication between chambers for experimental interaction studies.
Fabricated using PDMS for biocompatibility and ease of molding.
Validation: Supports co-culture of retinal epithelial cells and photoreceptor cells.
Microfluidic Platform for Developing In-vitro Co-cultures of Mammalian Tissues
Includes single cell culture chamber layer with porous membrane.
Supports media and scaffold-guided 3D tissue or organ-like cellular orientation.
Compatible with biopolymer scaffolds such as collagen, chitosan, and cellulose.
Fabricated using PDMS for biocompatibility and ease of molding.
Validation: Validation for co-culture of skin fibroblasts and keratinocytes.


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