Shen Xiaotong, Zhang Ying, Sun Jianghui, Lu Hua, Ouyang Jin, Na Na
Key Laboratory of Theoretical and Computational Photochemistry , College of Chemistry , Beijing Normal University , Beijing 100875 , China . Email:
Chem Sci. 2019 May 6;10(24):6113-6119. doi: 10.1039/c9sc01894h. eCollection 2019 Jun 28.
The efficient delivery of biomolecules into living cells as well as their easy biodegradation have been challenges for the application of intracellular amplification for sensitive multiple-diagnosis and gene therapy for cancer. Herein, new strategies of amplification-based dual-detection of cancer biomarkers (Let-7a miRNA and VEGF) and gene therapy for cancers are put forward. These are achieved through biodegradable nanosyringes (NSs), rigid and sharp but degradable , which are applied for the efficient loading, delivery and release of biomolecules (enzymes, nucleic acids, and even silencing RNA) into living cells. After penetrating cell membranes and escaping from endosomes through their rigid and sharp tips, NSs release biomolecules for fast and easy "one-step" rolling circle amplification (ring formation and amplification) in single living cells. Therefore, based on signals from two probes, FAM-Probe and Cy5-Probe, that selectively bind to amplification products, 100 aM of Let-7a and 100 fM of VEGF could be detected, which are much lower than reported values. Furthermore, siRNAs can also be delivered by NSs for gene therapy, and their therapeutic effect was evaluated by their antitumor efficacy in CCRF-CEM subcutaneous xenograft nude mice. Rigid and degradable , NSs show potential for achieving fast, sensitive and safe cancer diagnosis and efficient therapy.
将生物分子有效地递送至活细胞以及使其易于生物降解,一直是将细胞内扩增应用于癌症的灵敏多重诊断和基因治疗的挑战。在此,提出了基于扩增的癌症生物标志物(Let-7a微小RNA和血管内皮生长因子)双检测以及癌症基因治疗的新策略。这些是通过可生物降解的纳米注射器(NSs)实现的,其坚硬且尖锐但可降解,用于将生物分子(酶、核酸,甚至是沉默RNA)有效地装载、递送和释放到活细胞中。NSs通过其坚硬且尖锐的尖端穿透细胞膜并从内体中逃逸后,释放生物分子以在单个活细胞中进行快速且简便的“一步”滚环扩增(环形成和扩增)。因此,基于选择性结合扩增产物的两种探针FAM探针和Cy5探针的信号,可检测到100 aM的Let-7a和100 fM的血管内皮生长因子,这远低于报道值。此外,小干扰RNA也可由NSs递送用于基因治疗,并通过其在CCRF-CEM皮下异种移植裸鼠中的抗肿瘤功效来评估其治疗效果。坚硬且可降解的NSs在实现快速、灵敏和安全的癌症诊断以及高效治疗方面显示出潜力。