4.7 Review

AIE-based energy transfer systems for biosensing, imaging, and therapeutics

Journal

TRAC-TRENDS IN ANALYTICAL CHEMISTRY
Volume 122, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.trac.2019.115743

Keywords

Forster resonance energy transfer (FRET); Aggregation-induced emission (AIE); Fluorescence; Bioimaging; Therapeutics

Funding

  1. Research Grants Council of Hong Kong [C6009-17G]
  2. Innovation and Technology Commission [ITC-CNERC14SC01]
  3. National Natural Science Foundation of China [21788102]
  4. Natural Science Foundation of Guangdong Province [2019B030301003]
  5. National Key Research and Development program of China [2018YFE0190200]
  6. Science and Technology Plan of Shenzhen [JCYJ20180507183832744, JCYJ20160229205601482]
  7. National Science Foundation of China [21705111]

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With the rapid development of optical tools, biosensing and imaging have deepened to analyze the molecule-level substrates in living systems. As a molecular-ruler, Forster resonance energy transfer (FRET)-based analytical methods could sensitively response to the tiny fluctuation of biomolecules and events with ultrahigh spatiotemporal resolution in living cells, tissues and animals. Luminogens with aggregation-induced emission (AIE) characteristics and their derived nanostructures display unique photophysical properties, including tunable emission wavelength, robust brightness, broad absorption, large Stokes shift, excellent photostability, flexible molecular design and versatile nanostructural fabrication, etc., and have been widely applied in building FRET probes for bioanalytes sensing, imaging and drug delivery monitoring with high sensitivity and specificity. In addition, AIE-based energy transfer systems exhibit unique advantages in photodynamic therapy, holding great potential in analytical research and biomedical applications. (C) 2019 Elsevier B.V. All rights reserved.

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