科研速览继续刷下去 →
◆ Journal of the American Chemical Society2026-02-27· Mechanoluminescence

Scintillon–Mimicking Mechanoluminescence for Theranostic Applications

Xiaochun Xie, Chao YANG, Jiying Liu, Quanxin Ning, Ziping Wu, Shaowen Wang, Jianfang Cao, Xiaoyu Chen, Mingqiang Li, Kam W. Leong, Fangman Chen, Dan Shao, Wen Sun

一句话结论

This high-performance platform enables intense and ultrasensitive mechanoluminescence, providing a powerful mechanochemical tool for advanced theranostic applications.

原始摘要(原文)
Mechanoluminescence offers unique advantages over traditional photoluminescence, including deeper tissue penetration and minimal autofluorescence. However, mechanoluminescent materials typically lack the sensitivity and reusability of their biological counterparts. Inspired by the mechanoregulation of luciferase in dinoflagellate scintillons, we develop a scintillon–mimetic mechanoluminescent nanoreactor (sMLN) by integrating mechanoresponsive ferrocene (Fc) moieties into a flexible organic silica vesicle. Under ultrasound (US) irradiation, acoustic shear forces stretch and twist the Fc moiety, increasing the Fe center electron density and reducing steric hindrance, thereby facilitating substrate binding and activating a Fenton-like reaction that triggers luminol-based luminescence. Unlike conventional mechanoluminescent materials, sMLNs exhibit repeatable and long-lasting luminescence with a half-life of approximately 5.73 min, leading to a ∼2.2 × 10 3 -fold enhancement in intensity compared to H 2 O sonoluminescence. This US-induced mechanoluminescence functions as an “internal light source” to excite the chromophore for bioimaging and photodynamic therapy, overcoming the limitations of light penetration depth. This high-performance platform enables intense and ultrasensitive mechanoluminescence, providing a powerful mechanochemical tool for advanced theranostic applications.
读原文 ↗

AI 追问PRO

登录后使用 AI 追问

讨论区

登录后参与讨论

相关论文

Scintillon–Mimicking Mechanoluminescence for Theranostic Applications — 科研速览 Science Skim