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阿霉素脂质体与共聚焦超声产生的惯性空化联合应用在AT2邓宁大鼠肿瘤模型中的治疗效果

Therapeutic efficacy of the combination of doxorubicin-loaded liposomes with inertial cavitation generated by confocal ultrasound in AT2 Dunning rat tumour model.

作者信息

Mestas Jean-Louis, Fowler R Andrew, Evjen Tove J, Somaglino Lucie, Moussatov Alexei, Ngo Jacqueline, Chesnais Sabrina, Røgnvaldsson Sibylla, Fossheim Sigrid L, Nilssen Esben A, Lafon Cyril

机构信息

LabTAU, Inserm U1032, Université de Lyon , Lyon , France and.

出版信息

J Drug Target. 2014 Sep;22(8):688-97. doi: 10.3109/1061186X.2014.906604. Epub 2014 Apr 14.

DOI:10.3109/1061186X.2014.906604
PMID:24725154
Abstract

The combination of liposomal doxorubicin (DXR) and confocal ultrasound (US) was investigated for the enhancement of drug delivery in a rat tumour model. The liposomes, based on the unsaturated phospholipid dierucoylphosphocholine, were designed to be stable during blood circulation in order to maximize accumulation in tumour tissue and to release drug content upon US stimulation. A confocal US setup was developed for delivering inertial cavitation to tumours in a well-controlled and reproducible manner. In vitro studies confirm drug release from liposomes as a function of inertial cavitation dose, while in vivo pharmacokinetic studies show long blood circulation times and peak tumour accumulation at 24-48 h post intravenous administration. Animals injected 6 mg kg(-1) liposomal DXR exposed to US treatment 48 h after administration show significant tumour growth delay compared to control groups. A liposomal DXR dose of 3 mg kg(-1), however, did not induce any significant therapeutic response. This study demonstrates that inertial cavitation can be generated in such a fashion as to disrupt drug carrying liposomes which have accumulated in the tumour, and thereby increase therapeutic effect with a minimum direct effect on the tissue. Such an approach is an important step towards a therapeutic application of cavitation-induced drug delivery and reduced chemotherapy toxicity.

摘要

在大鼠肿瘤模型中,研究了脂质体阿霉素(DXR)与共聚焦超声(US)联合使用对增强药物递送的作用。基于不饱和磷脂二芥酰磷脂胆碱的脂质体,设计为在血液循环中稳定,以最大限度地在肿瘤组织中蓄积,并在超声刺激下释放药物。开发了一种共聚焦超声装置,以可控且可重复的方式向肿瘤传递惯性空化。体外研究证实脂质体药物释放是惯性空化剂量的函数,而体内药代动力学研究表明,静脉给药后24 - 48小时血液循环时间长且肿瘤蓄积达到峰值。给药后48小时接受超声治疗的注射6 mg kg(-1)脂质体DXR的动物,与对照组相比肿瘤生长明显延迟。然而,3 mg kg(-1)的脂质体DXR剂量未诱导任何显著的治疗反应。本研究表明,可以以这样一种方式产生惯性空化,即破坏已蓄积在肿瘤中的载药脂质体,从而在对组织的直接影响最小的情况下提高治疗效果。这种方法是朝着空化诱导药物递送的治疗应用和降低化疗毒性迈出的重要一步。

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