Li Yuqing, Zheng Yongtai, Lai Xinyi, Chu Yuehuan, Chen Yongming
School of Materials Science and Engineering, Center for Functional Biomaterials, MOE Key Laboratory of Polymeric Composite and Functional Materials (PCFM), Sun Yat-sen University Guangzhou 510275 China
RSC Adv. 2018 Jun 29;8(42):23623-23628. doi: 10.1039/c8ra03616k. eCollection 2018 Jun 27.
Recently, nanoscale metal organic frameworks have attracted considerable attention as a novel drug delivery system platform owing to their highly efficient drug loading and delivery capacities. However, their low dispersity in aqueous media, poor biocompatibility, and non-active targeting ability seriously limit their further clinical application. To address these issues, a hyaluronic acid (HA)-coated ZIF-8 nanocomposite (CCM@ZIF-8/HA) was successfully developed for use in anti-cancer treatment through efficient curcumin (CCM) delivery. The resultant CCM@ZIF-8/HA showed a long-term pH-dependent controlled drug release based on the core-shell structure of the encapsulation by HA. Moreover, compared to bare CCM@ZIF-8, the obtained ternary assembly showed enhanced dispersity in PBS, promoted cellular uptake, and greater growth inhibition against HeLa cells. Thus, CCM@ZIF-8/HA can not only serve as an ideal drug carrier, but it can also provide a general surface modification strategy to promote the performance of metal organic frameworks for efficient drug delivery.
近年来,纳米级金属有机框架作为一种新型药物递送系统平台备受关注,因其具有高效的药物负载和递送能力。然而,它们在水性介质中的低分散性、较差的生物相容性和非活性靶向能力严重限制了其进一步的临床应用。为了解决这些问题,成功开发了一种透明质酸(HA)包覆的ZIF-8纳米复合材料(CCM@ZIF-8/HA),用于通过高效递送姜黄素(CCM)进行抗癌治疗。所得的CCM@ZIF-8/HA基于HA包封的核壳结构表现出长期的pH依赖性控释药物特性。此外,与裸CCM@ZIF-8相比,所得的三元组装体在PBS中表现出增强的分散性,促进了细胞摄取,并对HeLa细胞具有更强的生长抑制作用。因此,CCM@ZIF-8/HA不仅可以作为理想的药物载体,还可以提供一种通用的表面修饰策略,以提高金属有机框架用于高效药物递送的性能。