化学发光
鲁米诺
两亲性
化学
荧光
超分子化学
能量转移
光化学
发光
生物分析
费斯特共振能量转移
阳离子聚合
光敏剂
纳米颗粒
共振感应耦合
材料科学
纳米技术
分子工程
纳米反应器
量子点
光发射
发射光谱
生物物理学
组合化学
作者
Jie Gao,Hongchao Wang,Maocheng Yang,Yujie Wang,Meng‐meng Chen,Yumei Wu,Zhe Zheng,Chunju Li,Zeli Yuan
出处
期刊:Small
[Wiley]
日期:2026-08-04
卷期号:: e75000-e75000
摘要
Luminol chemiluminescence (CL) is widely used in bioanalysis and forensics, yet stringent alkalinity, flash-type kinetics, and blue emission strongly hinder in vivo applications. Here, we report QC4A-8C, a single compartmentalized supramolecular platform that simultaneously addresses these limitations. QC4A-8C is an amphiphilic quaternary ammonium calix[4]arene with orthogonally functionalized upper and lower rims. The cationic cavity selectively encapsulates luminol, induces a pKa shift, and converts luminol into a glow-type emitter at near-physiological pH. In parallel, the hydrophobic lower rim self-assembles into nanoaggregates that compartmentalize fluorescent acceptors (DTBT, MCCH, DCI) in nanometer proximity, enabling sequential chemiluminescence resonance energy transfer (CRET) with high efficiency and red-shifted emission (650-700 nm). As a result, tissue penetration and emission lifetime are substantially extended, and in a lipopolysaccharide-induced peritonitis model, QC4A-8C delivers pronounced signal enhancement over free luminol. This work validates macrocyclic host-guest chemistry as a programmable route to integrate CL amplification with optical spectral engineering for diagnostic imaging.
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