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基于金属有机骨架纳米载体的盐酸多柔比星/盐酸维拉帕米共递送系统的合理设计,用于克服多药耐药性并实现高效靶向癌症治疗。

Rational Design of Metal Organic Framework Nanocarrier-Based Codelivery System of Doxorubicin Hydrochloride/Verapamil Hydrochloride for Overcoming Multidrug Resistance with Efficient Targeted Cancer Therapy.

机构信息

School of Pharmaceutical Science, Key Laboratory of Chemical Biology, Ministry of Education, Shandong University , Jinan 250012, China.

Key Lab of Colloid & Interface Chemistry, Shandong University, Ministry of Education , Jinan 250100, China.

出版信息

ACS Appl Mater Interfaces. 2017 Jun 14;9(23):19687-19697. doi: 10.1021/acsami.7b05142. Epub 2017 May 31.

DOI:10.1021/acsami.7b05142
PMID:28530401
Abstract

Conventional organic and inorganic drug nanocarriers suffer from serious drawbacks such as low drug-storage capacity and uncontrolled release. Moreover, multidrug resistance (MDR) has been one of the primary causes leading to chemotherapy failure for cancers. The main reason for MDR is the overexpressed active efflux transporters such as P-glycoprotein. Here, zeolitic imidazolate framework ZIF-8, as one of the biocompatible metal organic frameworks (MOFs), is reported for the first time as the multidrug carrier to realizing the efficient codelivery of verapamil hydrochloride (VER) as the P-glycoprotein inhibitor as well as doxorubicin hydrochloride (DOX) as an anticancer drug to overcome the MDR in addition to realize the active targeted ability for an efficient anticancer effect. Uniform ZIF-8 nanoparticles encapsulating DOX and VER are achieved by a facile one-pot process, in which the VER is used to overcome the multidrug resistance. Furthermore, methoxy poly(ethylene glycol)-folate (PEG-FA) is used to stabilize the (DOX+VER)@ZIF-8 to realize prolonged circulations and an active targeting drug delivery. In particular, the ZIF-8 exhibits high drug loading content up to ∼40.9% with a pH-triggered release behavior. Importantly, the PEG-FA/(DOX+VER)@ZIF-8 shows enhanced therapeutic efficiencies with much safety compared with the direct administration of free DOX both in vitro and in vivo. Near infrared fluorescent (NIRF) imaging indicates that the PEG-FA/(DOX+VER)@ZIF-8 can increase the drug accumulations in tumors for targeted cancer therapy. Therefore, the PEG-FA/(DOX+VER)@ZIF-8 multidrug delivery system can be used as a promising efficient formulation in reversing the multidrug resistance for targeted cancer therapy.

摘要

传统的有机和无机药物纳米载体存在药物储存容量低和释放控制不佳等严重缺陷。此外,多药耐药(MDR)已成为癌症化疗失败的主要原因之一。MDR 的主要原因是过度表达的主动外排转运蛋白,如 P-糖蛋白。在这里,沸石咪唑酯骨架 ZIF-8,作为一种生物相容性的金属有机骨架(MOFs),首次被报道为多药载体,以实现盐酸维拉帕米(VER)作为 P-糖蛋白抑制剂以及盐酸阿霉素(DOX)作为抗癌药物的有效共递送,以克服 MDR 并实现有效的抗癌作用的主动靶向能力。通过简便的一锅法工艺实现了包封 DOX 和 VER 的均匀 ZIF-8 纳米颗粒,其中 VER 用于克服多药耐药性。此外,甲氧基聚(乙二醇)-叶酸(PEG-FA)用于稳定(DOX+VER)@ZIF-8 以实现延长循环和主动靶向药物递送。特别是,ZIF-8 表现出高达约 40.9%的高药物负载含量,并具有 pH 触发释放行为。重要的是,与游离 DOX 的直接给药相比,PEG-FA/(DOX+VER)@ZIF-8 在体外和体内均显示出增强的治疗效果和更高的安全性。近红外荧光(NIRF)成像表明,PEG-FA/(DOX+VER)@ZIF-8 可以增加肿瘤中的药物积累,用于靶向癌症治疗。因此,PEG-FA/(DOX+VER)@ZIF-8 多药递送系统可用作逆转靶向癌症治疗中的多药耐药性的有前途的有效制剂。

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