Department of Materials Science and Engineering , Pohang University of Science and Technology (POSTECH) , 77 Cheongam-ro, Nam-gu , Pohang , Gyeongbuk 37673 , Korea.
Department of Electrical Engineering , Pohang University of Science and Technology (POSTECH) , 77 Cheongam-ro, Nam-gu , Pohang , Gyeongbuk 37673 , Korea.
Biomacromolecules. 2019 Oct 14;20(10):3767-3777. doi: 10.1021/acs.biomac.9b00842. Epub 2019 Sep 11.
Although nanocarriers containing perfluorocarbon (PFC) have been widely investigated as an ultrasound (US) imaging agent and a high intensity focused ultrasound (HIFU) agent, these carriers have suffered from low stability and biocompatibility limiting their further biomedical applications. Here, we developed surface cross-linked polymer nanodroplets as a HIFU therapeutic agent guided by bimodal photoacoustic (PA) and US imaging. Pluronic F127 was reacted with 4-nitrophenyl chloroformate (NPC) and mixed with naphthalocyanine (Nc) in dichloromethane, which was added into the aqueous solution of amine-functionalized six-arm-branched poly(ethylene glycol) (PEG) to form an oil-in-water emulsion for the cross-linking reaction between the terminal NPC of Pluronic F127 and the primary amine of six-arm PEG. The resulting solution was sonicated with liquid perfluorohexane (PFH) to prepare PEG cross-linked Pluronic F127 nanoparticles encapsulating Nc and PFH (Nc/PFH@PCPN). Nc/PFH@PCPN appeared to be stable without any coalescence or vaporization in the physiological condition. Upon the application of HIFU, Nc/PFH@PCPN was vaporized and showed increased US intensity for 180 min. The Nc dye in the nanodroplets enabled the stable encapsulation of PFH and the bimodal US/PA imaging. In vivo PA/US image-guided HIFU ablation therapy confirmed that the nanodroplets increased the cavitation effect, induced necrosis and apoptosis of tumor cells, and reduced tumor growth significantly for 12 days. Taken together, the multifunctional Nc/PFH@PCPN was successfully developed as a new platform for PA/US image-guided HIFU therapy.
尽管含有全氟碳(PFC)的纳米载体已被广泛研究作为超声(US)成像剂和高强度聚焦超声(HIFU)剂,但这些载体由于稳定性和生物相容性低,限制了其在生物医学中的进一步应用。在这里,我们开发了表面交联聚合物纳米液滴作为一种 HIFU 治疗剂,由双模态光声(PA)和 US 成像引导。Pluronic F127 与 4-硝基苯基氯甲酸酯(NPC)反应,并与萘酞菁(Nc)在二氯甲烷中混合,然后加入胺官能化六臂支化聚(乙二醇)(PEG)的水溶液中,形成油包水乳液,用于 Pluronic F127 的末端 NPC 与六臂 PEG 的伯胺之间的交联反应。所得溶液用液体全氟己烷(PFH)超声处理,制备包裹 Nc 和 PFH 的 PEG 交联 Pluronic F127 纳米颗粒(Nc/PFH@PCPN)。在生理条件下,Nc/PFH@PCPN 似乎很稳定,没有任何聚结或蒸发。应用 HIFU 后,Nc/PFH@PCPN 蒸发并在 180 分钟内显示出增强的 US 强度。纳米液滴中的 Nc 染料使 PFH 的稳定包封和双模态 US/PA 成像成为可能。体内 PA/US 图像引导的 HIFU 消融治疗证实,纳米液滴增加了空化效应,诱导肿瘤细胞坏死和凋亡,并在 12 天内显著减少肿瘤生长。总之,多功能 Nc/PFH@PCPN 成功开发为一种新的 PA/US 图像引导 HIFU 治疗平台。