Department of Precision Machinery and Precision Instrumentation, University of Science and Technology of China, Hefei, Anhui 230027, P. R. China.
Key Laboratory of Precision Scientific Instrumentation of Anhui Higher Education Institutes, University of Science and Technology of China, Hefei, Anhui 230027, P. R. China.
ACS Appl Mater Interfaces. 2020 May 27;12(21):23737-23751. doi: 10.1021/acsami.0c05308. Epub 2020 May 15.
Effective delivery of chemotherapeutics with minimal toxicity and maximal outcome is clinically important but technically challenging. Here, we synthesize a complex of doxorubicin (DOX)-loaded magneto-liposome (DOX-ML) microbubbles (DOX-ML-MBs) for magnetically responsive and ultrasonically sensitive delivery of anticancer therapies with enhanced efficiency. Citrate-stabilized iron oxide nanoparticles (MNs) of 6.8 ± 1.36 nm were synthesized, loaded with DOX in the core of oligolamellar vesicles of 172 ± 9.2 nm, and covalently conjugated with perfluorocarbon (PFC)-gas-loaded microbubbles to form DOX-ML-MBs of ∼4 μm. DOX-ML-MBs exhibited significant magnetism and were able to release chemotherapeutics and DOX-MLs instantly upon exposure to ultrasound (US) pulses. In vitro studies showed that DOX-ML-MBs in the presence of US pulses promoted apoptosis and were highly effective in killing both BxPc-3 and Panc02 pancreatic cancer cells even at a low dose. Significant reduction in the tumor volume was observed after intravenous administration of DOX-ML-MBs in comparison to the control group in a pancreatic cancer xenograft model of nude mice. Deeply penetrated iron oxide nanoparticles throughout the magnetically targeted tumor tissues in the presence of US stimulation were clearly observed. Our study demonstrated the potential of using DOX-ML-MBs for site-specific targeting and controlled drug release. It opens a new avenue for the treatment of pancreatic cancer and other tissue malignancies where precise delivery of therapeutics is necessary.
有效传递化疗药物,实现最小毒性和最大疗效,这在临床上很重要,但技术上具有挑战性。在这里,我们合成了一种阿霉素(DOX)负载磁脂质体(DOX-ML)微泡(DOX-ML-MBs)复合物,用于磁性响应和超声敏感的抗癌治疗药物传递,以提高效率。合成了粒径为 6.8±1.36nm 的柠檬酸稳定的氧化铁纳米粒子(MNs),将 DOX 装载到 172±9.2nm 的寡层囊泡核心中,并与全氟碳(PFC)-载气微泡共价偶联,形成约 4μm 的 DOX-ML-MBs。DOX-ML-MBs 表现出显著的磁性,并能在超声(US)脉冲的作用下迅速释放化疗药物和 DOX-MLs。体外研究表明,DOX-ML-MBs 在超声脉冲的作用下促进细胞凋亡,并能有效杀死 BxPc-3 和 Panc02 胰腺癌细胞,即使在低剂量下也是如此。与对照组相比,在裸鼠胰腺癌细胞异种移植模型中,静脉注射 DOX-ML-MBs 后肿瘤体积显著减小。在 US 刺激下,可明显观察到铁氧化物纳米粒子深入穿透到磁性靶向肿瘤组织中。我们的研究表明,DOX-ML-MBs 具有用于特定部位靶向和控制药物释放的潜力。它为治疗胰腺癌和其他需要精确递药的组织恶性肿瘤开辟了新途径。