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Characterization of drug delivery vehicles using atomic force microscopy: current status

机译:原子力显微镜的药物递送载体的表征:当前状态

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摘要

Introduction: The field of nanomedicine, utilizing nano-sized vehicles (nanoparticles and nanofibers) for targeted local drug delivery, has a promising future. This is dependent on the ability to analyze the chemical and physical properties of these drug carriers at the nanoscale and hence atomic force microscopy (AFM), a high-resolution imaging and local force-measurement technique, is ideally suited. Areas covered: Following a brief introduction to the technique, the review describes how AFM has been used in selected publications from 2015 to 2018 to characterize nanoparticles and nanofibers as drug delivery vehicles. These sections are ordered into areas of increasing AFM complexity: imaging/particle sizing, surface roughness/quantitative analysis of images, and analysis of force curves (to extract nanoindentation and adhesion data). Expert opinion: AFM imaging/sizing is used extensively for the characterization of nanoparticle and nanofiber drug delivery vehicles, with surface roughness and nanomechanical/adhesion data acquisition being less common. The field is progressing into combining AFM with other techniques, notably SEM, ToF-SIMS, Raman, Confocal, and UV. Current limitations include a 50 nm resolution limit of nanoparticles imaged within live cells and AFM tip-induced activation of cytoskeleton proteins. Following drug release real-time with AFM-spectroscopic techniques and studying drug interactions on cell receptors appear to be on the horizon.
机译:简介:利用纳米型车辆(纳米粒子和纳米纤维)的纳米美发床用于靶向局部药物递送,具有有前途的未来。这取决于分析这些药物载体的化学和物理性质在纳米级和因此原子力显微镜(AFM),高分辨率成像和局部力测量技术的能力非常适合。涵盖的区域:在简要介绍该技术之后,审查描述了AFM在2015年至2018年的选定出版物中使用了AFM,以表征纳米粒子和纳米纤维作为药物递送载体。这些部分被排序到增加AFM复杂性的区域:成像/粒度尺寸,图像的表面粗糙度/定量分析,以及力曲线的分析(提取纳米狭窄和粘附数据)。专家意见:AFM成像/尺寸广泛用于纳米粒子和纳米纤维药物输送车辆的表征,具有表面粗糙度和纳米力学/粘附数据采集不太常见。该领域正在通过其他技术组合成AFM,特别是SEM,TOF-SIMS,拉曼,共焦和UV。电流限制包括在活细胞内成像的50nm分辨率限制,AFM尖端诱导的细胞骨架蛋白激活。随着AFM光谱技术的实时药物释放和研究细胞受体的药物相互作用似乎在地平线上。

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