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Effect of biomimetic shear stress on intracellular uptake and cell-killing efficiency of doxorubicin in a free and liposomal formulation

机译:仿生剪切应力对游离脂质体制剂中阿霉素细胞吸收和杀伤效率的影响

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摘要

Shear stress could be considered in the context of cellular uptake and cell-killing efficiency. Thus, mimicking the dynamic characteristics of in vivo environment is important in targeted drug delivery. We investigated the intracellular uptake and cell-killing efficiency of doxorubicin (DOX) in a free and liposomal form (Doxil (R)) under biomimetic shear stress to mimic in vivo environment. In this dynamic environment, cells demonstrated significantly higher fluorescence intensity than that of the static environment, and fluorescence microscopy images indicated increased intracellular uptake of DOX in the presence of fluidic shear stress. In cells treated with free DOX and liposomal Doxil (R), cell-killing efficiency was affected by shear stress. Taken together, shear stress, affecting drug uptake and cell-killing efficiency, is important in intracellular drug targeting. (C) 2016 Elsevier B.V. All rights reserved.
机译:可以在细胞摄取和细胞杀伤效率的背景下考虑剪切应力。因此,模仿体内环境的动态特征在靶向药物递送中很重要。我们研究了仿生剪切应力下模拟体内环境的游离和脂质体形式(阿霉素(R))中阿霉素(DOX)的细胞内摄取和细胞杀灭效率。在这种动态环境中,细胞显示出比静态环境显着更高的荧光强度,并且荧光显微镜图像表明在存在流体剪切应力的情况下细胞内对DOX的摄取增加。在用游离DOX和脂质体Doxil(R)处理的细胞中,细胞杀伤效率受到剪切应力的影响。总之,剪切应力会影响药物的吸收和细胞杀灭效率,在细胞内靶向药物中很重要。 (C)2016 Elsevier B.V.保留所有权利。

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