Ren Luping, Sun Yanfang, Zhang Junhao, Nie Lei, Shavandi Amin, Yunusov Khaydar E, Aharodnikau Uladzislau E, Solomevich Sergey O, Jiang Guohua
School of Materials Science and Engineering, Zhejiang Sci-Tech University, Hangzhou, 310018, China; International Scientific and Technological Cooperation Base of Intelligent Biomaterials and Functional Fibers of Zhejiang Province, Hangzhou 310018, China.
College of Life Sciences and Medicine, Zhejiang Sci-Tech University, Hangzhou Zhejiang, 310018, China.
Int J Pharm. 2024 Mar 5;652:123811. doi: 10.1016/j.ijpharm.2024.123811. Epub 2024 Jan 17.
Nanoformulations for combining chemotherapy, chemodynamic therapy, and photothermal therapy have enormous potential in tumor treatment. Coating nanoformulations with cell membranes endows them with homologous cellular mimicry, enabling nanoformulations to acquire new functions and properties, including homologous targeting and long circulation in vivo, and can enhance internalization by homologous cancer cells. Herein, we fused multifunctional biomimetic nanoformulations based on Cu-doped zeolitic imidazolate framework-8 (ZIF-8). Hydroxycamptothecin (HCPT), a clinical anti-tumor drug, was encapsulated into ZIF-8, which was subsequently coated with polydopamine (PDA) and red blood cell membrane. The as-fabricated biomimetic nanoformulations showed an enhanced cell uptake in vitro and the potential to prolong blood circulation in vivo, producing effective synergistic chemotherapy, chemodynamic therapy, and photothermal therapy under the 808 nm laser irradiation. Together, the biomimetic nanoformulations showed a prolonged blood circulation and evasion of immune recognition in vivo to provide a bio-inspired strategy which may have the potential for the multi-synergistic therapy of breast cancer.
用于联合化疗、化学动力学疗法和光热疗法的纳米制剂在肿瘤治疗中具有巨大潜力。用细胞膜包覆纳米制剂赋予它们同源细胞模拟特性,使纳米制剂获得新的功能和性质,包括同源靶向和体内长循环,并可增强同源癌细胞的内化作用。在此,我们制备了基于铜掺杂沸石咪唑酯骨架-8(ZIF-8)的多功能仿生纳米制剂。将临床抗肿瘤药物羟基喜树碱(HCPT)封装到ZIF-8中,随后用聚多巴胺(PDA)和红细胞膜包覆。所制备的仿生纳米制剂在体外显示出增强的细胞摄取能力以及在体内延长血液循环的潜力,在808 nm激光照射下产生有效的协同化疗、化学动力学疗法和光热疗法。总之,仿生纳米制剂在体内显示出延长的血液循环和免疫识别逃避能力,为乳腺癌的多协同治疗提供了一种受生物启发的策略,该策略可能具有潜力。