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High Exchange Rate Complexes of 129 Xe with Water-Soluble Pillar[5]arenes for Adjustable Magnetization Transfer MRI

  • Matthias Schnurr
  • , Roymon Joseph
  • , Alissa Naugolny-Keisar
  • , Dana Kaizerman-Kane
  • , Nils Bogdanoff
  • , Patrick Schuenke
  • , Yoram Cohen*
  • , Leif Schröder
  • *Corresponding author for this work
  • Leibniz Institute for Molecular Pharmacology
  • Tel Aviv University

Research output: Contribution to journalArticlepeer-review

22 Scopus citations

Abstract

Macrocyclic host structures for generating transiently bound 129 Xe have been used in various ultra-sensitive NMR and MRI applications for molecular sensing of biochemical analytes. They are based on hyperpolarized nuclei chemical exchange saturation transfer (Hyper-CEST). Here, we tested a set of water-soluble pillar[5]arenes with different counterions in order to compare their potential contrast agent abilities with that of cryptophane-A (CrA), the most widely used host for such purposes. The exchange of Xe with such compounds was found to be sensitive to the type of ions present in solution and can be used for switchable magnetization transfer (MT) contrast that arises from off-resonant pre-saturation. We demonstrate that the adjustable MT magnitude depends on the interplay of saturation parameters and found that the optimum MT contrast surpasses the CrA CEST performance at moderate saturation power. Since modification of such water-soluble pillar[5]arenes is straightforward, these compounds can be considered a promising platform for designing various sensors that may complement the field of Xe HyperCEST-based biosensing MRI.

Original languageEnglish
Pages (from-to)246-251
Number of pages6
JournalChemPhysChem
Volume20
Issue number2
DOIs
StatePublished - 21 Jan 2019

Funding

FundersFunder number
FP7/2007
Seventh Framework Programme242710
European Research Council
Deutsche ForschungsgemeinschaftSCHR 995/5-1
Israel Science Foundation804/13

    Keywords

    • CEST MRI
    • Xe biosensors
    • host-guest complexes
    • pillar[5]arenes
    • saturation transfer NMR

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