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Development of artificial tissues providing the proper geometrical, mechanical, and environmental cues for cells is highly coveted in the field of tissue engineering. Recently, microfabrication strategies in combination with other chemistries have been utilized to capture the architectural complexity of intricate organs, such as the liver, in in vitro platforms. Here it is shown that a biofunctionalized...
Front Cover: Akin to a natural setting, biofunctionalized hydrogel scaffolds provide a biomimetic, three‐dimensional environment to encapsulate liver cells with programmable phenotypic regulation in order to promote liver‐like functions for regenerative medicine applications. Further details can be found in the article by M.H. Kim, S.K. Kumar, H. Shirahama, J. Seo, J.‐H. Lee, V.P. Zhdanov, N.‐J. Cho...
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