4.8 Article

Multifunction-Harnessed Afterglow Nanosensor for Molecular Imaging of Acute Kidney Injury In Vivo

期刊

SMALL
卷 18, 期 22, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/smll.202200245

关键词

afterglow; multifunctional iridium complexes; phosphorescence; superoxide-activatable afterglow systems

资金

  1. National Research Foundation of Korea [NRF-2017M3A9D8029942, NRF-2021R1A2C2005418, NRF-2021R1A2C4002030]
  2. Korea Health Industry Development Institute [HW20C2104]
  3. KIST intramural program

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In this study, a simple formulation of a multifunctional components-incorporated afterglow nanosensor (MANS) was developed for the superoxide-responsive activatable afterglow imaging of cisplatin-induced kidney injury. The MANS exhibited superoxide-responsive off-to-on activatable afterglow luminescence for periods longer than 11 min after pre-excitation termination.
Afterglow is superior to other optical modalities for biomedical applications in that it can exclude the autofluorescence background. Nevertheless, afterglow has rarely been applied to the high-contrast off-to-on activatable sensing scheme because the complicated afterglow systems hamper the additional inclusion of sensory functions while preserving the afterglow luminescence. Herein, a simple formulation of a multifunctional components-incorporated afterglow nanosensor (MANS) is developed for the superoxide-responsive activatable afterglow imaging of cisplatin-induced kidney injury. A multifunctional iridium complex (Ir-OTf) is designed to recover its photoactivities (phosphorescence and the ability of singlet oxygen-generating afterglow initiator) upon exposure to superoxide. To construct the nanoscopic afterglow detection system (MANS), Ir-OTf is incorporated with another multifunctional molecule (rubrene) in the polymeric micellar nanoparticle, where rubrene also plays dual roles as an afterglow substrate and a luminophore. The multiple functions covered by Ir-OTf and rubrene renders the composition of MANS quite simple, which exhibits superoxide-responsive off-to-on activatable afterglow luminescence for periods longer than 11 min after the termination of pre-excitation. Finally, MANS is successfully applied to the molecular imaging of cisplatin-induced kidney injury with activatable afterglow signals responsive to pathologically overproduced superoxide in a mouse model without autofluorescence background.

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