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三维自组装 DNA 纳米笼作为递药载体穿透血脑屏障用于脑癌治疗。

Penetrating the Blood-Brain Barrier by Self-Assembled 3D DNA Nanocages as Drug Delivery Vehicles for Brain Cancer Therapy.

机构信息

Department of Chemistry, City University of Hong Kong, Tat Chee Avenue, Kowloon, Hong Kong SAR, China.

Department of Biomedical Engineering, City University of Hong Kong, Tat Chee Avenue, Kowloon, Hong Kong SAR, China.

出版信息

ACS Appl Mater Interfaces. 2020 Jul 1;12(26):28928-28940. doi: 10.1021/acsami.0c02957. Epub 2020 Jun 19.

Abstract

The development of biocompatible drug delivery vehicles for cancer therapy in the brain remains a big challenge. In this study, we designed self-assembled DNA nanocages functionalized with or without blood-brain barrier (BBB)-targeting ligands, d and we investigated their penetration across the BBB. Our DNA nanocages were not cytotoxic and they were substantially taken up in brain capillary endothelial cells and Uppsala 87 malignant glioma (U-87 MG) cells. We found that ligand modification is not essential for this DNA system as the ligand-free DNA nanocages (LF-NCs) could still cross the BBB by endocytosis in and models. Our spherical DNA nanocages were more permeable across the BBB compared with tubular DNA nanotubes. Remarkably, studies revealed that DNA nanocages could carry anticancer drugs across the BBB and inhibit the tumor growth in a U-87 MG xenograft mouse model. This is the first example showing the potential of DNA nanocages as innovative delivery vehicles to the brain for cancer therapy. Unlike other delivery systems, our work suggest that a DNA nanocage-based platform provides a safe and cost-effective tool for targeted delivery to the brain and therapy for brain tumors.

摘要

用于脑部癌症治疗的生物相容药物输送载体的开发仍然是一个巨大的挑战。在这项研究中,我们设计了具有或不具有血脑屏障(BBB)靶向配体 d 的自组装 DNA 纳米笼,并研究了它们穿过 BBB 的渗透能力。我们的 DNA 纳米笼没有细胞毒性,并且它们在脑毛细血管内皮细胞和 Uppsala 87 恶性神经胶质瘤(U-87 MG)细胞中被大量摄取。我们发现配体修饰对于该 DNA 系统不是必需的,因为无配体的 DNA 纳米笼(LF-NC)仍然可以通过内吞作用穿过 BBB 和 模型。与管状 DNA 纳米管相比,我们的球形 DNA 纳米笼具有更高的 BBB 通透性。值得注意的是,研究表明 DNA 纳米笼可以携带抗癌药物穿过 BBB,并抑制 U-87 MG 异种移植小鼠模型中的肿瘤生长。这是第一个表明 DNA 纳米笼作为用于癌症治疗的脑部创新递药载体的潜在应用的例子。与其他递药系统不同,我们的工作表明基于 DNA 纳米笼的平台为靶向递送至脑部和脑部肿瘤治疗提供了一种安全且具有成本效益的工具。

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