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Real-Time Particle Tracking for Studying Intracellular Trafficking of Pharmaceutical Nanocarriers

机译:用于学习药物纳米载体的植物颅脑的实时粒子跟踪

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摘要

Real-time particle tracking is a technique that combines fluorescence microscopy with object tracking and computing and can be used to extract quantitative transport parameters for small particles inside cells. Since the success of a nanocarrier can often be determined by how effectively it delivers cargo to the target organelle, understanding the complex intracellular transport of pharmaceutical nanocarriers is critical. Real-time particle tracking provides insight into the dynamics of the intracellular behavior of nanoparticles, which may lead to significant improvements in the design and development of novel delivery systems. Unfortunately, this technique is not often fully understood, limiting its implementation by researchers in the field of nanomedicine. In this chapter, one of the most complicated aspects of particle tracking, the mean square displacement (MSD) calculation, is explained in a simple manner designed for the novice particle tracker. Pseudo code for performing the MSD calculation in MATLAB is also provided. This chapter contains clear and comprehensive instructions for a series of basic procedures in the technique of particle tracking. Instructions for performing confocal microscopy of nanoparticle samples are provided, and two methods of determining particle trajectories that do not require commercial particle-tracking software are provided. Trajectory analysis and determination of the tracking resolution are also explained. By providing comprehensive instructions needed to perform particle-tracking experiments, this chapter will enable researchers to gain new insight into the intracellular dynamics of nanocarriers, potentially leading to the development of more effective and intelligent therapeutic delivery vectors.
机译:实时粒子追踪是一种将荧光显微镜与目标追踪和计算相结合的技术,可用于提取细胞内小粒子的定量传输参数。由于纳米载体的成功通常取决于其将货物运送至目标细胞器的效率,因此了解药物纳米载体在细胞内的复杂运输至关重要。实时粒子跟踪提供了对纳米粒子细胞内行为动力学的洞察力,这可能会导致新型传递系统设计和开发的重大改进。不幸的是,这种技术常常不能被完全理解,限制了纳米医学领域研究人员的实施。在本章中,将以一种为新手粒子跟踪器设计的简单方式介绍粒子跟踪的最复杂方面之一,即均方位移(MSD)计算。还提供了用于在MATLAB中执行MSD计算的伪代码。本章包含有关粒子跟踪技术的一系列基本过程的清晰而全面的说明。提供了用于对纳米颗粒样品进行共聚焦显微镜检查的说明,并提供了两种不需要商业颗粒跟踪软件即可确定颗粒轨迹的方法。还说明了轨迹分析和跟踪分辨率的确定。通过提供执行颗粒跟踪实验所需的全面说明,本章将使研究人员能够对纳米载体的细胞内动力学获得新的见识,从而有可能导致开发更有效,更智能的治疗传递载体。

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