4.5 Article

Organs-on-a-Chip: A Focus on Compartmentalized Microdevices

Journal

ANNALS OF BIOMEDICAL ENGINEERING
Volume 40, Issue 6, Pages 1211-1227

Publisher

SPRINGER
DOI: 10.1007/s10439-011-0455-6

Keywords

Organ; Compartment; Microtechnology; Microengineering; Microenvironment; Barrier

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Advances in microengineering technologies have enabled a variety of insights into biomedical sciences that would not have been possible with conventional techniques. Engineering microenvironments that simulate in vivo organ systems may provide critical insight into the cellular basis for pathophysiologies, development, and homeostasis in various organs, while curtailing the high experimental costs and complexities associated with in vivo studies. In this article, we aim to survey recent attempts to extend tissue-engineered platforms toward simulating organ structure and function, and discuss the various approaches and technologies utilized in these systems. We specifically focus on microtechnologies that exploit phenomena associated with compartmentalization to create model culture systems that better represent the in vivo organ microenvironment.

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