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用于增强脑胶质瘤声动力学治疗的肿瘤靶向 DVDMS-纳米脂质体。

Tumor targeting DVDMS-nanoliposomes for an enhanced sonodynamic therapy of gliomas.

机构信息

National Engineering Laboratory for Resource Development of Endangered Crude Drugs in Northwest China, The Key Laboratory of Medicinal Resources and Natural Pharmaceutical Chemistry, The Ministry of Education, College of Life Sciences, Shaanxi Normal University, Xi'an, Shaanxi 710119, People's Republic of China.

出版信息

Biomater Sci. 2019 Feb 26;7(3):985-994. doi: 10.1039/c8bm01187g.

Abstract

Malignant glioma is one of the most common and severe brain diseases, which is extremely hard to treat due to the presence of the blood-brain barrier (BBB). Ultrasound (US) triggered sonodynamic therapy (SDT) is rapidly emerging as a noninvasive cancer treatment which benefits from the deep penetration of ultrasound waves. It has been reported that US can reversibly open the BBB for the enhancement of drug delivery. Therefore, a few researchers have paid attention to sonodynamic therapy for the in situ treatment of gliomas. Herein, we report the augmentation of SDT efficacy with the use of a combination of ultrasound-targeted microbubble destruction (UTMD) and iRGD modified DVDMS liposome (iRGD-Lipo-DVDMS), in which the sonoactivated sensitizer DVDMS (also called sinoporphyrin sodium) is loaded into the targeting liposomes and the sonodynamic effect is shown to boost the reactive oxygen species formation in response to focused US exposure. By using a strategy where the treatment was repeated twice with a five-day interval in between, where UTMD was first applied followed by iRGD-DVDMS injection and then focused US exposure, the orthotopically implanted C6 gliomas were greatly suppressed. Additionally, the median survival time increased to 40 days compared to 15 days in the control, 19 days in free DVDMS-SDT, and 24 days in general Lipo-DVDMS-SDT. Such targeted iRGD-Lipo-DVDMS mediated SDT also alleviated the body weight loss of tumor bearing mice because of the injury caused by orthotopic implantation, showing outstanding anti-glioma efficacy. After BBB opening with UTMD, the iRGD modified liposomes showed enhanced tumor targeting ability compared to the ones without iRGD modification, both in vivo and in vitro. The iRGD-Lipo-DVDMS exhibited significantly improved drug accumulation in monolayer cells, 3D tumor spheroids and transplanted C6 tumors, thus causing significant glioma cell apoptosis. Moreover, the developed targeting nanosonosensitizer (referred to as iRGD-Lipo-DVDMS) showed good in vivo biocompatibility and was promising in fluorescence image guided sonodynamic cancer therapy. Taken together, the established platform has considerable potential to enable the targeted delivery of sonodynamic treatment and would be an alternative strategy for glioma treatment.

摘要

恶性脑胶质瘤是最常见和最严重的脑部疾病之一,由于血脑屏障(BBB)的存在,治疗极其困难。超声(US)触发的声动力学疗法(SDT)作为一种非侵入性癌症治疗方法迅速崭露头角,它得益于超声波的深穿透性。据报道,超声可可逆地打开 BBB 以增强药物输送。因此,一些研究人员关注声动力学疗法原位治疗脑胶质瘤。在此,我们报告了使用超声靶向微泡破坏(UTMD)和 iRGD 修饰的 DVDMS 脂质体(iRGD-Lipo-DVDMS)联合增强 SDT 疗效,其中载有敏化剂 DVDMS(也称为血卟啉钠)的靶向脂质体被激活,并显示声动力学效应可增强活性氧物质的形成以响应聚焦超声暴露。通过重复两次治疗,间隔五天,先进行 UTMD 处理,然后进行 iRGD-DVDMS 注射,再进行聚焦超声暴露的策略,原位植入的 C6 脑胶质瘤得到了极大抑制。此外,与对照组的 15 天、游离 DVDMS-SDT 的 19 天和普通 Lipo-DVDMS-SDT 的 24 天相比,中位生存时间延长至 40 天。这种靶向 iRGD-Lipo-DVDMS 介导的 SDT 还减轻了荷瘤小鼠因原位植入引起的体重减轻,显示出出色的抗脑胶质瘤疗效。UTMD 打开 BBB 后,与未修饰 iRGD 的脂质体相比,iRGD 修饰的脂质体显示出增强的肿瘤靶向能力,无论是在体内还是体外。iRGD-Lipo-DVDMS 在单层细胞、3D 肿瘤球体和移植的 C6 肿瘤中表现出明显改善的药物积累,从而导致明显的神经胶质瘤细胞凋亡。此外,所开发的靶向纳米声敏剂(称为 iRGD-Lipo-DVDMS)显示出良好的体内生物相容性,在荧光图像引导声动力癌症治疗方面具有广阔的前景。综上所述,所建立的平台具有很大的潜力实现声动力治疗的靶向递送,将成为治疗脑胶质瘤的一种替代策略。

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