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Development of Phenothiazine-Based Theranostic Compounds That Act Both as Inhibitors of β-Amyloid Aggregation and as Imaging Probes for Amyloid Plaques in Alzheimer's Disease.

Abstract
Early detection of Alzheimer's disease (AD) is imperative in enabling the understanding and clinical treatment of this disorder, as well as in preventing its progression. Imaging agents specifically targeting Aβ plaques in the brain and the retina may lead to the early diagnosis of AD. Among them, near-infrared fluorescent (NIRF) imaging has emerged as an attractive tool to noninvasively identify and monitor diseases during the preclinical and early stages. In the present study, we report the design, synthesis, and evaluation of a series of new near-infrared fluorescent probes. Most of these probes displayed maximum emission in PBS (>650 nm), which falls in the good range for NIRF probes. Among them, 4a1 showed the highest affinity toward Aβ aggregates (Kd = 7.5 nM) and an excellent targeting ability for Aβ plaques in slices of brain and retina tissue from double transgenic mice. These compounds are also found to effectively prevent Aβ fibril formation and disaggregate preformed Aβ fibrils, showing a promising potential as theranostic agents for the diagnosis and therapy of AD.
AuthorsPascal Dao, Feifei Ye, Yan Liu, Zhi Yun Du, Kun Zhang, Chang Zhi Dong, Bernard Meunier, Huixiong Chen
JournalACS chemical neuroscience (ACS Chem Neurosci) Vol. 8 Issue 4 Pg. 798-806 (04 19 2017) ISSN: 1948-7193 [Electronic] United States
PMID28097868 (Publication Type: Journal Article, Research Support, Non-U.S. Gov't)
Chemical References
  • Fluorescent Dyes
  • Phenothiazines
Topics
  • Alzheimer Disease (diagnosis)
  • Animals
  • Disease Models, Animal
  • Early Diagnosis
  • Fluorescent Dyes (chemical synthesis, chemistry, pharmacology)
  • Mice
  • Mice, Transgenic
  • Neuroimaging (methods)
  • Optical Imaging (methods)
  • Phenothiazines (chemical synthesis, chemistry, pharmacology)
  • Plaque, Amyloid (diagnosis)
  • Spectroscopy, Near-Infrared
  • Theranostic Nanomedicine (methods)

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