Vu Giao Thuy-Quynh, Nguyen Luan Minh, Nguyen Do Kim Ngan, Tran Dieu Linh, Vo Toi Van, Nguyen Dai Hai, Vong Long Binh
School of Biomedical Engineering, International University, Ho Chi Minh 700000, Vietnam.
Vietnam National University Ho Chi Minh City (VNU-HCM), Ho Chi Minh 700000, Vietnam.
ACS Appl Bio Mater. 2025 Mar 17;8(3):2052-2064. doi: 10.1021/acsabm.4c01608. Epub 2025 Feb 14.
With the rising incidence of cancer, chemotherapy has become a widely used treatment approach. However, the use of anticancer drugs such as doxorubicin (DOX) poses significant long-term risks due to its nonspecific distribution and severe side effects. Therefore, developing a nanoparticle-based drug delivery system (DDS) that enhances the bioavailability of DOX specifically to cancer cells is crucial while minimizing its side effects on normal cells. This study employed zeolitic imidazolate framework-8 (ZIF-8) as a DDS to encapsulate DOX using a one-pot method. The surface of this system was subsequently modified with a copper-gallic acid (Cu-GA) complex to form the Cu-GA/DOX@ZIF-8 (CGDZ) system. The CGDZ system effectively encapsulates DOX and demonstrates pH-responsive drug release, facilitating controlled drug release in the acidic environment of cancer cells. Furthermore, the Cu-GA coating enhances the biocompatibility of the material, reduces drug toxicity in normal endothelial cells (BAECs) due to the antioxidant feature of modified GA, and maintains the efficacy and intracellular trafficking of DOX in colon cancer cells (C-26). Interestingly, CGDZ nanoparticles showed significantly higher toxicity against cancer cells as compared to unmodified systems and free DOX. Overall, CGDZ exhibited significant efficacy in targeting cancer cell lines while reducing the toxicity of DOX, offering a novel and effective nanoparticle system for targeted cancer treatment.
随着癌症发病率的上升,化疗已成为一种广泛应用的治疗方法。然而,使用阿霉素(DOX)等抗癌药物会带来重大的长期风险,因为其分布不具有特异性且副作用严重。因此,开发一种基于纳米颗粒的药物递送系统(DDS),以提高DOX对癌细胞的生物利用度,同时将其对正常细胞的副作用降至最低,至关重要。本研究采用沸石咪唑酯骨架-8(ZIF-8)作为DDS,通过一锅法包封DOX。随后用铜-没食子酸(Cu-GA)复合物对该系统的表面进行修饰,形成Cu-GA/DOX@ZIF-8(CGDZ)系统。CGDZ系统能有效地包封DOX,并表现出pH响应性药物释放,便于在癌细胞的酸性环境中实现药物的可控释放。此外,Cu-GA涂层增强了材料的生物相容性,由于修饰后的没食子酸具有抗氧化特性,降低了在正常内皮细胞(BAECs)中的药物毒性,并维持了DOX在结肠癌细胞(C-26)中的疗效和细胞内运输。有趣的是,与未修饰的系统和游离DOX相比,CGDZ纳米颗粒对癌细胞显示出显著更高的毒性。总体而言,CGDZ在靶向癌细胞系方面表现出显著疗效,同时降低了DOX的毒性,为靶向癌症治疗提供了一种新颖有效的纳米颗粒系统。