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Label-free cell-based assays using photonic crystal optical biosensors

Journal

ANALYST
Volume 136, Issue 6, Pages 1090-1102

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c0an00899k

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Funding

  1. US Army Medical Research & Materiel Command (USAMRMC)
  2. Telemedicine & Advanced Technology Research Center (TATRC) [W81XWH0810701]

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Biosensor technologies that have been primarily used in the past for characterizing biomolecular interactions are now being used to develop new approaches for performing cell-based assays. Biosensors monitor cell attachment to a transducer surface, and thus provide information that is fundamentally different from that provided by microscopy, as the sensor is capable of monitoring temporal evolution of integrin-surface interactions that are difficult to measure by other means. Label-free biosensor technologies are especially advantageous for monitoring the behavior of cells because they do not require stains that typically result in cell death, and are not subject to effects such as photobleaching. As a result, cells can be quantitatively monitored in their culture environment over an extended period of time while processes such as proliferation, apoptosis, cytotoxicity, chemotaxis, ion channel activation, and membrane-bound protein activation are modulated by the introduction of a variety of chemical or biological stimuli. This reviewdescribes the application of photonic crystal optical biosensor microplates to a variety of cell-based assays. Detection instruments for photonic crystals measure the aggregate behavior

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