Near infrared fluorescence-based bacteriophage particles for ratiometric pH imaging

  • Bioconjug Chem. 2008 Aug;19(8):1635-9. doi: 10.1021/bc800188p.
Scott A Hilderbrand  1 Kimberly A Kelly Mark Niedre Ralph Weissleder
Affiliations
  • 1. Center for Molecular Imaging Research and Center for Systems Biology, Massachusetts General Hospital/Harvard Medical School, USA. [email protected]
Abstract

Fluorogenic imaging agents emitting in the near-infrared are becoming important research tools for disease investigation in vivo. Often pathophysiological states such as Cancer and cystic fibrosis are associated with disruptions in acid/base homeostasis. The development of optical sensors for pH imaging would facilitate the investigation of these diseased conditions. In this report, the design and synthesis of a ratiometric near-infrared emitting probe for pH quantification is detailed. The pH-responsive probe is prepared by covalent attachment of pH-sensitive and pH-insensitive fluorophores to a bacteriophage particle scaffold. The pH-responsive cyanine dye, HCyC-646, used to construct the probe, has a fluorogenic PKA of 6.2, which is optimized for visualization of acidic pH often associated with tumor hypoxia and Other diseased states. Incorporation of pH-insensitive reference dyes enables the ratiometric determination of pH independent of the probe concentration. With the pH-responsive construct, measurement of intracellular pH and accurate determination of pH through optically diffuse biological tissue is demonstrated.

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