a Department of clinical laboratory , Huangshi Love & Health Hospital of Hubei province , Huangshi , China.
b College Pharmacy, Qiqihar Medical University , Qiqihar , China.
Drug Deliv. 2019 Dec;26(1):724-731. doi: 10.1080/10717544.2019.1639845.
The aim of drug delivery is to increase therapeutic efficacy. Externally triggered drug delivery systems enable site-specific and time-controlled drug release. To achieve this goal, our strategy was based on ultrasound-triggered release of an anticancer agent from sonosensitive liposomes (SL). To realize the ultrasound-triggered drug release, a lipophilic sonosensitizer, hematoporphyrin monomethyl ether (HMME) was incorporated into the lipid bilayer of liposomes. Once irradiated by the ultrasound in tumor tissues, the sonodynamic effect generated by HMME could lead to an efficient disruption of the lipid bilayer in the SL. After encapsulating vincristine bitartrate (VIN) as the model drug, the ultrasound-triggered lipid bilayer breakdown can trigger the instant release of VIN, enabling ultrasound-controlled chemotherapy with great specificity. In the and studies, by integrating tumor-specific targeting and stimuli-responsive controlled release into one system, VIN-loaded SL showed excellent antitumor efficacy. The SL could potentially produce viable clinical strategies for improved targeting efficiency of VIN for the treatment of related cancer. More importantly, this report provides an example of controlled release by means of a novel class of ultrasound triggering system.
药物输送的目的是提高治疗效果。外部触发药物输送系统能够实现靶向和时间控制的药物释放。为了实现这一目标,我们的策略基于超声触发从声敏脂质体(SL)中释放抗癌药物。为了实现超声触发药物释放,将脂溶性声敏剂血卟啉单甲醚(HMME)掺入脂质体的脂质双层中。一旦在肿瘤组织中被超声照射,HMME 产生的声动力学效应可导致 SL 中的脂质双层有效破裂。将酒石酸长春新碱(VIN)包封作为模型药物后,超声触发的脂质双层破裂可触发 VIN 的即时释放,从而实现具有高度特异性的超声控制化疗。在 和 研究中,通过将肿瘤特异性靶向和刺激响应性控制释放集成到一个系统中,载有 VIN 的 SL 显示出优异的抗肿瘤功效。SL 有可能为提高 VIN 治疗相关癌症的靶向效率产生可行的临床策略。更重要的是,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示例。