State Key Laboratory of Natural and Biomimetic Drugs, School of Pharmaceutical Sciences, Peking University, Beijing, 100191, China.
Beijing Key Laboratory of Molecular Pharmaceutics, School of Pharmaceutical Sciences, Peking University, Beijing, 100191, China.
Nat Commun. 2024 Sep 7;15(1):7824. doi: 10.1038/s41467-024-52029-7.
Tumour detection with high selectivity and sensitivity is crucial for delineating tumour margins and identifying metastatic foci during image-guided surgery. Optical nanoprobes with preferential tumour accumulation is often limited by inefficient amplification of biological signals. Here, we report the design of a library of hydrophobic core-tunable ultra-pH-sensitive nanoprobes (HUNPs) for orthogonally amplifying tumour microenvironmental signals on multiple tumour models. We find that tuning the hydrophobicity of nanoparticle core composition with non-ionizable monomers can enhance cellular association of HUNPs by more than ten-fold, resulting in a high cellular internalization efficiency of HUNPs with up to 50% in tumours. Combining high tumour accumulation and high cell internalization efficiency, HUNPs show orthogonally amplified fluorescence signals, permitting the precise locating and delineating margins between malignant lesions and normal tissues with high contrast-to-noise ratio and resolution. Our study provides key strategies to design nanomedicines with high intracellular bioavailability for cancer detection, drug/gene delivery, and therapy.
肿瘤的高选择性和敏感性检测对于在图像引导手术中描绘肿瘤边界和识别转移灶至关重要。具有优先肿瘤积累的光学纳米探针通常受到生物信号放大效率低下的限制。在这里,我们报告了一组疏水性可调的超 pH 敏感纳米探针 (HUNP) 的设计,用于在多个肿瘤模型上正交放大肿瘤微环境信号。我们发现,通过非离解单体调变纳米颗粒核心组成的疏水性,可以使 HUNP 的细胞结合性增强十倍以上,从而使 HUNP 的细胞内化效率高达 50%。HUNP 具有高肿瘤积累和高细胞内化效率,结合起来可实现正交放大的荧光信号,从而以高信噪比和分辨率精确定位和描绘恶性病变与正常组织之间的边界。我们的研究为设计具有高细胞内生物利用度的纳米药物提供了关键策略,用于癌症检测、药物/基因递送和治疗。