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首页> 外文期刊>International Journal of Thermal Sciences >Acoustic streaming and thermosensitive liposomes for drug delivery into hepatocellular carcinoma tumor adjacent to major hepatic veins; an acoustics-thermal-fluid-mass transport coupling model
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Acoustic streaming and thermosensitive liposomes for drug delivery into hepatocellular carcinoma tumor adjacent to major hepatic veins; an acoustics-thermal-fluid-mass transport coupling model

机译:用于药物输送到与主要肝脏静脉相邻的肝细胞癌肿瘤的声学流和热敏脂质体; 声学 - 热流体质量传输耦合模型

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While researchers have focused on thermal ablation techniques for the treatment of hepatocellular carcinoma tumors for patients who are not candidates for surgical resection, the treatment is still challenging because of disease recurrence after thermal ablation treatment, particularly for tumors that are close to the major blood vessels of liver. Meanwhile, chemotherapy has received less attention because of its low efficacy and adverse side effects. Herein, using an acoustics-thermal-fluid-mass transport coupling model, we present a novel drug delivery system based on the use of acoustic waves and temperature-sensitive liposomes (TSL). Simulation involves solving the acoustic, bioheat, fluid flow and mass transfer equations. The acoustic streaming effect is also considered in this modeling. The main idea behind the proposed system is the simultaneous use of thermal and hydrodynamic effects of acoustic waves for drug delivery in a TSL-based system. HIFU-induced mild hyperthermia allows drug release and acoustic streaming pushes TSL particles from the vessel wall to the target area. To investigate the effects of using acoustics and liposomes, four different systems, including without-acousticwithout-liposome, with-acoustic-without-liposome, without-acoustic-with-liposome and with-acoustic-withliposome, have been studied. Also, the effect of TSL particle size and acoustic frequency has been investigated. We found that a with-acoustic-with-liposome system can achieve targeted drug delivery by reducing chemotherapy adverse side effects and enhancing drug delivery to the target area. The results show that using such a system, the effective drug penetration into the tissue increased by 56% compared to conventional drug delivery. In addition, the results of the parametric study show that increasing the acoustic frequency in this method results in improved drug delivery. The study of TSL size also indicates that for TSL particles with the same drug-carrying capacity, smaller TSLs perform better.
机译:虽然研究人员专注于治疗患有手术切除候选者的患者的热烧蚀技术,但由于热烧蚀处理后疾病复发,治疗仍然具有挑战性,特别是对于靠近主要血管的肿瘤肝脏。同时,由于其低疗效和不良副作用,化疗受到较少的关注。这里,使用声学 - 热流体传输耦合模型,我们提出了一种基于声波和温度敏感脂质体(TSL)的新药输送系统。仿真涉及求解声学,生物发热,流体流动和传质方程。在该建模中也考虑了声学流效应。所提出的系统背后的主要思想是在基于TSL的系统中同时使用声波对药物递送的热和流体动力学效应。 HIFU诱导的温和热疗允许药物释放和声流将来自血管壁的TSL颗粒推向目标区域。为了研究使用声学和脂质体的效果,已经研究了四种不同的系统,包括没有声学的耐脂质体,具有声学 - 无脂质体,没有声学 - 用脂质体和具有声学 - 用脂质体。而且,研究了TSL粒度和声频的效果。我们发现,用声学的脂质体系统通过减少化疗不良副作用并增强对目标区域的药物递送来实现靶向药物递送。结果表明,与常规药物递送相比,使用这种系统,进入组织的有效药物渗透率增加了56%。此外,参数研究结果表明,在该方法中增加声频会导致药物递送改善。 TSL大小的研究还表明,对于具有相同药物承载能力的TSL颗粒,较小的TSL表现更好。

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