可层叠激活的特异位点荧光纳米细胞实现了肺转移性肿瘤的精确成像

JACS Au Pub Date : 2024-06-24 DOI:10.1021/jacsau.4c00356
Xueqian Chen, Jiatian Liu, Yong Zhang, Xueyun Gao, Dongdong Su
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引用次数: 0

摘要

对生长微妙的转移性肿瘤进行精确定位,对于及时干预和改善肿瘤预后至关重要,但这仍是一项巨大的挑战。迄今为止,基于单次刺激诊断的荧光探针特异性位点激活通常针对复杂生物系统中的隐性分子事件,特异性有限。在此,我们提出了一种高度特异性的位点特异性级联激活策略来提高检测准确性,旨在以级联方式实现对乳腺癌(BC)肺转移的准确检测。具体而言,该研究以超高压敏感(UPS)嵌段共聚物为载体,以硝基还原酶(NTR)激活的荧光报告物为载体,构建了可级联激活的近红外荧光纳米簇HPNs。HPNs 具有可编程的级联反应特性,首先在原位肿瘤酸性条件下瞬间解离,有利于深入肿瘤,然后通过 NTR 介导的酶促反应选择性激活荧光,从而产生高荧光开/关对比度。值得注意的是,HPNs 的这一独特功能能够以显著的信噪比(SBR)高精度诊断原位癌及其肺转移瘤。这种拟议的特定位点级联激活策略将为不同疾病的各种原位隐匿性转移病灶的高信号保真度特异性诊断提供机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Site-Specific Cascade-Activatable Fluorogenic Nanomicelles Enable Precision and Accuracy Imaging of Pulmonary Metastatic Tumor

Site-Specific Cascade-Activatable Fluorogenic Nanomicelles Enable Precision and Accuracy Imaging of Pulmonary Metastatic Tumor
The precise localization of metastatic tumors with subtle growth is crucial for timely intervention and improvement of tumor prognosis but remains a paramount challenging. To date, site-specific activation of fluorogenic probes for single-stimulus-based diagnosis typically targets an occult molecular event in a complex biosystem with limited specificity. Herein, we propose a highly specific site-specific cascade-activated strategy to enhance detection accuracy, aiming to achieve the accurate detection of breast cancer (BC) lung metastasis in a cascade manner. Specifically, cascade-activatable NIR fluorogenic nanomicelles HPNs were constructed using ultra-pH-sensitive (UPS) block copolymers as carriers and nitroreductase (NTR)-activated fluorogenic reporters. HPNs exhibit programmable cascade response characteristics by first instantaneous dissociating under in situ tumor acidity, facilitating deep tumor penetration followed by selective fluorescence activation through NTR-mediated enzymatic reaction resulting in high fluorescence ON/OFF contrast. Notably, this unique feature of HPNs enables high-precision diagnosis of orthotopic BC as well as its lung metastases with a remarkable signal-to-background ratio (SBR). This proposed site-specific cascade activation strategy will offer opportunities for a specific diagnosis with high signal fidelity of various insidious metastatic lesions in situ across different diseases.
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