Sun Huanhuan, Ma Wenjie, Duan Shuangdi, Huang Jin, Jia Ruichen, Cheng Hong, Chen Biao, He Xiaoxiao, Wang Kemin
State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Biology, College of Chemistry and Chemical Engineering, Hunan University, Key Laboratory for Bio-Nanotechnology and Molecule Engineering of Hunan Province Changsha 410082 China
Chem Sci. 2021 Aug 17;12(36):12118-12129. doi: 10.1039/d1sc03847h. eCollection 2021 Sep 22.
Exploitation of stimuli-responsive nanoplatforms is of great value for precise and efficient cancer theranostics. Herein, an activable "nanocluster-bomb" detonated by endogenous overexpressing legumain is fabricated for contrast-enhanced tumor imaging and controlled gene/drug release. By utilizing the functional peptides as bioligands, TAMRA-encircled gold nanoclusters (AuNCs) endowed with targeting, positively charged and legumain-specific domains are prepared as quenched building blocks due to the AuNCs' nanosurface energy transfer (NSET) effect on TAMRA. Importantly, the AuNCs can shelter therapeutic cargos of DNAzyme and Dox (Dzs-Dox) to aggregate larger nanoparticles as a "nanocluster-bomb" (AuNCs/Dzs-Dox), which could be selectively internalized into cancer cells by integrin-mediated endocytosis and in turn locally hydrolyzed in the lysosome with the aid of legumain. A "bomb-like" behavior including "spark-like" appearance (fluorescence on) derived from the diminished NSET effect of AuNCs and cargo release (disaggregation) of Dzs-Dox is subsequently monitored. The results showed that the AuNC-based disaggregation manner of the "nanobomb" triggered by legumain significantly improved the imaging contrast due to the activable mechanism and the enhanced cellular uptake of AuNCs. Meanwhile, the cytotoxicity tests revealed that the detonation strategy based on AuNCs/Dzs-Dox readily achieved efficient gene/chemo combination therapy. Moreover, the super efficacy of combinational therapy was further demonstrated by treating a xenografted MDA-MB-231 tumor model . We envision that our multipronged design of theranostic "nanocluster-bomb" with endogenous stimuli-responsiveness provides a novel strategy and great promise in the application of high contrast imaging and on-demand drug delivery for precise cancer theranostics.
利用刺激响应性纳米平台对于精确高效的癌症诊疗具有重要价值。在此,构建了一种由内源性过表达天冬酰胺酶激活的“纳米簇炸弹”,用于增强肿瘤成像及控制基因/药物释放。通过将功能肽用作生物配体,制备了具有靶向、带正电荷和天冬酰胺酶特异性结构域的TAMRA包裹的金纳米簇(AuNCs),由于AuNCs对TAMRA的纳米表面能量转移(NSET)效应,这些纳米簇作为猝灭构建块。重要的是,AuNCs可以保护DNAzyme和阿霉素(Dzs-Dox)治疗性货物聚集形成更大的纳米颗粒,即“纳米簇炸弹”(AuNCs/Dzs-Dox),其可通过整合素介导的内吞作用选择性内化到癌细胞中,进而在溶酶体中天冬酰胺酶的作用下局部水解。随后监测到一种“炸弹样”行为,包括由于AuNCs的NSET效应减弱导致的“火花样”外观(荧光开启)以及Dzs-Dox的货物释放(解聚)。结果表明,由天冬酰胺酶触发的基于AuNCs的“纳米炸弹”解聚方式,由于其可激活机制和AuNCs细胞摄取的增强,显著提高了成像对比度。同时,细胞毒性测试表明基于AuNCs/Dzs-Dox的爆炸策略易于实现高效的基因/化疗联合治疗。此外,通过治疗异种移植的MDA-MB-231肿瘤模型进一步证明了联合治疗的超强疗效。我们设想,我们具有内源性刺激响应性的诊疗“纳米簇炸弹”的多管齐下设计,为精确癌症诊疗中的高对比度成像和按需药物递送应用提供了一种新策略和巨大前景。