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具有内在核仁靶向能力的荧光碳量子点用于核仁成像和增强胞质和核内药物递送。

Fluorescent Carbon Quantum Dots with Intrinsic Nucleolus-Targeting Capability for Nucleolus Imaging and Enhanced Cytosolic and Nuclear Drug Delivery.

出版信息

ACS Appl Mater Interfaces. 2018 Apr 4;10(13):10664-10677. doi: 10.1021/acsami.7b19549. Epub 2018 Mar 22.

Abstract

Nucleolus tracking and nucleus-targeted photodynamic therapy are attracting increasing attention due to the importance of nucleolus and the sensitivity of nucleus to various therapeutic stimuli. Herein, a new class of multifunctional fluorescent carbon quantum dots (or carbon dots, CDs) synthesized via the one-pot hydrothermal reaction of m-phenylenediamine and l-cysteine was reported to effectively target nucleolus. The as-prepared CDs possess superior properties, such as low-cost and facile synthesis, good water dispersibility, various surface groups for further modifications, prominent photostability, excellent compatibility, and rapid/convenient/wash-free staining procedures. Besides, as compared with SYTO RNASelect (a commonly used commercial dye for nucleolus imaging) that can only image nucleolus in fixed cells, the CDs can realize high-quality nucleolus imaging in not only fixed cells but also living cells, allowing the real-time tracking of nucleolus-related biological behaviors. Furthermore, after conjugating with protoporphyrin IX (PpIX), a commonly used photosensitizer, the resultant CD-PpIX nanomissiles showed remarkably increased cellular uptake and nucleus-targeting properties and achieved greatly enhanced phototherapeutic efficiency because the nuclei show poor tolerance to reactive oxygen species produced during the photodynamic therapy. The in vivo experiments revealed that the negatively charged CD-PpIX nanomissiles could rapidly and specifically target a tumor site after intravenous injection and cause efficient tumor ablation with no toxic side effects after laser irradiation. It is believed that the present CD-based nanosystem will hold great potential in nucleolus imaging and nucleus-targeted drug delivery and cancer therapy.

摘要

由于核仁的重要性和细胞核对各种治疗刺激的敏感性,核仁追踪和细胞核靶向光动力疗法越来越受到关注。在此,我们报道了一类通过间苯二胺和半胱氨酸的一锅水热反应合成的新型多功能荧光碳量子点(或碳点,CDs),可有效靶向核仁。所制备的 CDs 具有成本低、合成简单、良好的水分散性、各种表面基团可进一步修饰、突出的光稳定性、优异的相容性以及快速/方便/无需清洗的染色程序等优异性能。此外,与只能对固定细胞中的核仁进行成像的 SYTO RNASelect(一种常用的核仁成像商业染料)相比,CDs 不仅可以对固定细胞中的核仁进行高质量成像,还可以对活细胞中的核仁进行成像,从而可以实时跟踪核仁相关的生物学行为。此外,将其与原卟啉 IX(PpIX),一种常用的光敏剂偶联后,所得的 CD-PpIX 纳米导弹表现出明显增强的细胞摄取和细胞核靶向特性,并实现了大大增强的光疗效率,因为细胞核对光动力治疗过程中产生的活性氧的耐受性较差。体内实验表明,带负电荷的 CD-PpIX 纳米导弹在静脉注射后能够快速、特异性地靶向肿瘤部位,并在激光照射后引起有效的肿瘤消融,无毒性副作用。相信基于 CD 的纳米系统将在核仁成像、细胞核靶向药物传递和癌症治疗方面具有巨大的潜力。

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