EventsThe 7th International Multidisciplinary Conference on Optofluidics 2017
Published
This submission belongs to the session 16. Lab on a chip of the event The 7th International Multidisciplinary Conference on Optofluidics 2017
Published date
21 Jul, 2017
Citation
Ho Cheung (Anderson) Shum, Eye-chamber-on-a-chip by microfluidic co-culture of retinal cells, in Proceedings of The 7th International Multidisciplinary Conference on Optofluidics 2017, Singapore, 25 July–28 July 2017, MDPI: Basel, Switzerland, doi: 10.3390/optofluidics2017-04523
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Eye-chamber-on-a-chip by microfluidic co-culture of retinal cells

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1. Department of Mechanical Engineering- The University of Hong Kong (HKU), and HKU-Shenzhen Institute of Research and Innovation (HKU-SIRI)
Abstract

The human eye is an important and yet difficult organ to study in situ. Microfluidic technologies provide the tool to model the human eye and allow the simultaneous observation of cellular behaviors under different physiological conditions. In this talk, I will share some of the conditions that are needed for constructing a physiologically relevant in vitro eye model. The model will be used to study the effects of saccadic eye movement and hydrostatics on the fluidic and cellular behaviors on-chip. The ability to control, observe, measure and monitor the relevant variables on a microfluidic chip enables the potential to understand the physo-chemical and fluid mechanical origins of conditions often observed in the human eye, and suggest new therapeutic and surgical strategies.

Keywords
Microfluidics
Eye-on-a-chip
Effects of surface structure on MSCs and neurons in microfluidic environment
Fluorescence Activated Cell Sorting (FACS) System Based on Focused Traveling Surface Acoustic Waves (FTSAWs)