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评估基于全氟己烷的声纳米液滴的治疗潜力。

Evaluation of the Theranostic Potential of Perfluorohexane-Based Acoustic Nanodroplets.

机构信息

Institute for Advanced Study (KUIAS), Institute for Integrated Cell-Material Sciences (iCeMS), Kyoto University.

Faculty of Pharma-Sciences, Teikyo University.

出版信息

Biol Pharm Bull. 2019 Dec 1;42(12):2038-2044. doi: 10.1248/bpb.b19-00525. Epub 2019 Sep 25.

Abstract

In this study, we have prepared perfluorohexane (PFH)-based acoustic nanodroplets (PFH-NDs) and evaluated their theranostic characteristics. Nile Red (NR) was incorporated into PFH-NDs as a model of hydrophobic drugs (NR-PFH-NDs). The mean particle diameters of PFH-NDs and NR-PFH-NDs were 205 ± 1.8 nm and 346.3 ± 6 nm, respectively. There was no significant PFH leakage from PFH-NDs during 90 min incubation at 37°C in the presence of 10% rat serum. The in vitro ultrasonography showed that the phase transition of PFH-NDs from liquid droplets to gassed bubbles could be induced by therapeutic low-intensity ultrasound with a frequency of 1 MHz and an intensity of 5 W/cm. Irradiation of ultrasound in combination with NR-PFH-NDs enhanced uptake of NR in murine adenocarcinoma cells (C26). After intravenous injection of PFH-NDs to mice, PFH gradually disappeared from blood circulation with an elimination half-life of 43.3 min. Intravenous injection of PFH-NDs also resulted in significant contrast enhancement in the mouse carotid artery upon therapeutic low-intensity ultrasound irradiation. These results suggest the potential of PFH-NDs as a novel contrast agent for further theranostic applications.

摘要

在本研究中,我们制备了全氟己烷(PFH)基声纳米液滴(PFH-NDs),并评估了它们的治疗特性。尼罗红(NR)被掺入 PFH-NDs 中作为疏水性药物的模型(NR-PFH-NDs)。PFH-NDs 和 NR-PFH-NDs 的平均粒径分别为 205 ± 1.8nm 和 346.3 ± 6nm。在 37°C 下,在存在 10%大鼠血清的情况下孵育 90 分钟,PFH-NDs 中没有明显的 PFH 泄漏。体外超声检查显示,PFH-NDs 从液滴到充气气泡的相变可以通过频率为 1MHz 和强度为 5W/cm 的治疗低强度超声诱导。超声联合 NR-PFH-NDs 照射增强了 NR 在小鼠腺癌细胞(C26)中的摄取。将 PFH-NDs 静脉注射到小鼠体内后,PFH 逐渐从血液循环中消失,消除半衰期为 43.3 分钟。静脉注射 PFH-NDs 也导致在治疗性低强度超声照射下小鼠颈总动脉的显著对比增强。这些结果表明 PFH-NDs 作为一种新型造影剂具有进一步治疗应用的潜力。

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