余辉
发光
单线态氧
纳米颗粒
化学
生物物理学
体内
磷光
材料科学
荧光
纳米技术
氧气
光学
光电子学
物理
伽马射线暴
有机化学
天文
生物
生物技术
作者
Cheng Xu,Jingsheng Huang,Yuyan Jiang,Shasha He,Chi Zhang,Kanyi Pu
标识
DOI:10.1038/s41551-022-00978-z
摘要
Molecular imaging via afterglow luminescence minimizes tissue autofluorescence and increases the signal-to-noise ratio. However, the induction of afterglow requires the prior irradiation of light, which is attenuated by scattering and absorption in tissue. Here we report the development of organic nanoparticles producing ultrasound-induced afterglow, and their proof-of-concept application in cancer immunotheranostics. The ‘sonoafterglow’ nanoparticles comprise a sonosensitizer acting as an initiator to produce singlet oxygen and subsequently activate a substrate for the emission of afterglow luminescence, which is brighter and detectable at larger tissue depths (4 cm) than previously reported light-induced afterglow. We formulated sonoafterglow nanoparticles containing a singlet-oxygen-cleavable prodrug for the immune-response modifier imiquimod that specifically turn on in the presence of the inflammation biomarker peroxynitrite, which is overproduced by tumour-associated M1-like macrophages. Systemic delivery of the nanoparticles allowed for sonoafterglow-guided treatment of mice bearing subcutaneous breast cancer tumours. The high sensitivity and depth of molecular sonoafterglow imaging may offer advantages for the real-time in vivo monitoring of physiopathological processes. Nanoparticles producing ultrasound-induced afterglow luminescence in the presence of a tumour biomarker allow for the image-guided treatment of mice bearing subcutaneous tumours.
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