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Fabrication of three-dimensional islet models by geometry-controlled hanging drop method
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作者 Bin Gao Ce Jing +2 位作者 Kelvin Ng belinda pingguan-murphy Qingzhen Yang 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2019年第2期329-337,共9页
Hanging-drop method has been widely used to fabricate three-dimensional (3D) in vitro tissue models due to its advantages such as being easy to perform, inexpensive, and permitting precise control of cell spheroid for... Hanging-drop method has been widely used to fabricate three-dimensional (3D) in vitro tissue models due to its advantages such as being easy to perform, inexpensive, and permitting precise control of cell spheroid formation. The geometry of hanging drop may play a critical role on the formation of cell spheroids, which, however, has not been explored. In this study, we developed a modified hanging-drop platform that enables the production of cell spheroids in a high-throughput manner by controlling hanging drop geometry with defined spreading ring. The surface tension force is proportional to the spreading ring and gravitational force is determined by the droplet volume, and the geometry can be determined by the balance between surface tension and gravity.β-TC-6 cell spheroids with optimized diameters were fabricated as 3D in vitro islet models. The models show morphology similar to primary islets and have functionality that more closely resembles primary islets than two-dimensional cell culture. The developed platform holds great potential for engineering well-controlled in vitro tissue models for various applications such as physiological and pathological studies, drug screening, as well as transplantation for treatment purpose. 展开更多
关键词 HANGING DROP cell culture Mechanical MICROENVIRONMENT DROP GEOMETRY 3D ISLET SPHEROIDS
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