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Human Ocular Angiogenesis-Inspired Vascular Models on an Injection-Molded Microfluidic Chip

Authors
Ko, JihoonLee, YounggyunLee, SominLee, Seung-RyeolJeon, Noo Li
Issue Date
Aug-2019
Publisher
WILEY
Keywords
3D vascular networks; alternative to animal testing; microfluidics; organs-on-chips; scale-up production
Citation
ADVANCED HEALTHCARE MATERIALS, v.8, no.15
Journal Title
ADVANCED HEALTHCARE MATERIALS
Volume
8
Number
15
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/87327
DOI
10.1002/adhm.201900328
ISSN
2192-2640
Abstract
Angiogenic sprouting, which is the growth of new blood vessels from pre-existing vessels, is orchestrated by cues from the cellular microenvironment, such as spatially controlled gradients of angiogenic factors. However, current in vitro models are less scalable for in-depth studies of angiogenesis. In this study, a plastic-based microfluidic chip is developed to reconstruct in vitro 3D vascular networks. The main disadvantages of the preexisting system are identified, namely, the low productivity and difficulty of experiments, and a breakthrough is suggested while minimizing disadvantages. The selection of plastic materials contributes to the productivity and usability of in vitro devices. By adopting this material, this chip offers simple fluid patterning, facilitating the construction of a cell-culture microenvironment. Compared with previous systems, the chip, which can form both inward and outwardly radial vascular sprouting, demonstrates the growth of functional, morphologically integral microvessels. The developed angiogenic model yields dose-dependent results for antiangiogenic drug screening. This model may contribute significantly not only to vascular studies under normal and pathological conditions, but also to fundamental research on the ocular neovascularization. Furthermore, it can be applied as a tool for more practical, extended preclinical research, providing an alternative to animal experiments.
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Ko, Jihoon
BioNano Technology (Department of BioNano Technology)
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