Center for Theragnosis, Korea Institute of Science and Technology, Seoul, 02792, Republic of Korea.
Department of Organic and Nano System Engineering, Konkuk University, Seoul, 05029, Republic of Korea.
Small. 2022 Jun;18(22):e2200245. doi: 10.1002/smll.202200245. Epub 2022 Mar 22.
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.
余晖在生物医学应用中优于其他光学模式,因为它可以排除自发荧光背景。然而,由于复杂的余晖系统妨碍了在保留余晖发光的同时添加传感功能,余晖很少应用于高对比度的“关-开”可激活传感方案。在此,开发了一种多功能组件掺入余晖纳米传感器 (MANS) 的简单配方,用于顺铂诱导肾损伤的超氧化物响应可激活余晖成像。多功能铱配合物 (Ir-OTf) 被设计为在暴露于超氧化物时恢复其光活性(磷光和生成单线态氧余晖引发剂的能力)。为了构建纳米级余晖检测系统 (MANS),Ir-OTf 与聚合物胶束纳米粒子中的另一种多功能分子(芘)结合,其中芘也作为余晖底物和发光体发挥双重作用。Ir-OTf 和芘所涵盖的多种功能使 MANS 的组成非常简单,它在预激发终止后超过 11 分钟的时间内表现出超氧化物响应的“关-开”可激活余晖发光。最后,MANS 成功地应用于顺铂诱导肾损伤的分子成像,具有对病理过度产生的超氧化物有反应的可激活余晖信号,而没有自发荧光背景。