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A thermoresponsive bubble-generating liposomal system for triggering localized extracellular drug delivery

机译:热响应气泡产生脂质体系统,用于触发局部细胞外药物递送

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摘要

The therapeutic effectiveness of chemotherapy is optimal only when tumor cells are subjected to a maximum drug exposure. To increase the intratumoral drug concentration and thus the efficacy of chemotherapy, a thermoresponsive bubble-generating liposomal system is proposed for triggering localized extracellular drug delivery. The key component of this liposomal formulation is the encapsulated ammonium bicarbonate (ABC), which is used to create the transmembrane gradient needed for a highly efficient encapsulation of doxorubicin (DOX). At an elevated temperature (42 °C), decomposition of ABC generates CO_2 bubbles, creating permeable defects in the lipid bilayer that rapidly release DOX and instantly increase the drug concentration locally. Because the generated CO_2 bubbles are hyperechogenic, they also enhance ultrasound imaging. Consequently, this new liposomal system encapsulated with ABC may also provide an ability to monitor a temperature-controlled drug delivery process.
机译:仅当肿瘤细胞受到最大药物暴露时,化学疗法的治疗效果才是最佳的。为了增加肿瘤内药物浓度并因此增加化学疗法的功效,提出了一种热响应性气泡产生脂质体系统以触发局部细胞外药物递送。这种脂质体制剂的关键成分是胶囊化的碳酸氢铵(ABC),用于产生高效封装阿霉素(DOX)所需的跨膜梯度。在升高的温度(42°C)下,ABC分解会产生CO_2气泡,从而在脂质双层中形成可渗透的缺陷,从而迅速释放DOX,并立即局部增加药物浓度。由于生成的CO_2气泡具有高回声性,因此它们还可以增强超声成像。因此,这种用ABC封装的新脂质体系统也可能提供监测温度控制的药物输送过程的能力。

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