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新型超声触发药物递送系统用于改善肿瘤治疗。

Novel Class of Ultrasound-Triggerable Drug Delivery Systems for the Improved Treatment of Tumors.

机构信息

College Pharmacy , Jiamusi University , Jiamusi 154007 , China.

State Key Laboratory of Toxicology and Medical Countermeasures , Beijing Institute of Pharmacology and Toxicology , Beijing 100850 , China.

出版信息

Mol Pharm. 2019 Jul 1;16(7):2956-2965. doi: 10.1021/acs.molpharmaceut.9b00194. Epub 2019 May 23.

Abstract

The controlled release of anticancer drugs at the tumor site is a central challenge in treating cancer. To achieve this goal, our strategy was based on tumor-specific targeting and ultrasound-triggered release of an anticancer agent from liposomal nanocarriers. To enhance the ultrasound-triggered drug release, we incorporated a lipophilic sonosensitizer, chlorin e6 (Ce6) ester, into the lipid bilayer of liposomes. Additionally, asparagine-glycine-arginine (NGR) that binds to CD13, which is overexpressed in tumor cells, was introduced into these liposomes. Under the navigation effects of the NGR, the novel ultrasound-triggerable NGR-modified liposomal nanocarrier (NGR/UT-L) accumulates in tumor sites. Once irradiated by ultrasound in tumor tissues, the sonodynamic effect produced by Ce6 could create more efficient disruptions of the lipid bilayer of the liposomal nanocarriers. After encapsulating doxorubicin (DOX) as the model drug, the ultrasound triggered lipid bilayer breakdown can spring the immediate release of DOX, making it possible for ultrasound-responsive chemotherapy with great selectivity. By combining tumor-specific targeting and stimuli-responsive controlled release into one system, NGR/UT-L demonstrated a perfect antitumor effect. Moreover, this report provides an example of controlled-release by means of a novel class of ultrasound triggering systems.

摘要

在肿瘤部位控制释放抗癌药物是治疗癌症的一个核心挑战。为了实现这一目标,我们的策略基于肿瘤特异性靶向和脂质体纳米载体中抗癌药物的超声触发释放。为了增强超声触发药物释放,我们将亲脂性声敏剂氯乙酮(Ce6)酯纳入脂质体的脂质双层中。此外,我们还将与肿瘤细胞中过表达的 CD13 结合的天冬酰胺-甘氨酸-精氨酸(NGR)引入这些脂质体中。在 NGR 的导航作用下,新型超声触发 NGR 修饰的脂质体纳米载体(NGR/UT-L)在肿瘤部位聚集。一旦在肿瘤组织中超声辐照,Ce6 产生的声动力学效应可以更有效地破坏脂质体纳米载体的脂质双层。包封阿霉素(DOX)作为模型药物后,超声触发的脂质双层破裂可以立即释放 DOX,从而实现具有高度选择性的超声响应化疗。通过将肿瘤特异性靶向和刺激响应性控制释放结合到一个系统中,NGR/UT-L 表现出了完美的抗肿瘤效果。此外,本报告提供了一种通过新型超声触发系统进行控制释放的范例。

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