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Spatial SPION Localization in Liposome Membranes

机译:脂质体膜的空间SPION定位

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Nanocarriers, including liposomes, offer great opportunities for targeted and controlled therapy. The development in this field has led to a large panel of drug delivery systems, which can be classified into 3 different nanovector generations. However, the success of such smart materials requires the control of a large variety of properties and parameters. Unfortunately, characterization at the nanoscale is often cumbersome and many methods are still being developed. Liposomes have been characterized by cryogenic electron microscopy (CryoTEM) for quite some time, also in combination with nanoparticles, in particular with superparamagnetic iron oxide nanoparticles (SPIONs) incorporated inside the liposomal membrane. CryoTEM, unlike classical TEM, maintains the native state of the liposomes. The quick freezing of the sample immobilizes particles and liposomes exactly at their position in the suspension. Therefore, localization information can be extracted from the images. However, data must be treated extremely carefully keeping in mind that 2-D projections of a 3-D object are observed. In this paper, we discuss the analysis of cryoTEM images of liposome-particle hybrids, including the estimation of the contrast transfer function (CTF) and electron dose, as well as the correct positioning of the sample holder and tomography for accurate localization.
机译:纳米载体,包括脂质体,为靶向治疗和控制治疗提供了巨大的机会。该领域的发展导致了一大批药物递送系统,可以将其分为3个不同的纳米载体世代。然而,这种智能材料的成功需要控制多种特性和参数。不幸的是,纳米级的表征通常很麻烦,并且仍在开发许多方法。脂质体已经通过低温电子显微镜(CryoTEM)进行了相当长的一段时间的表征,并且还与纳米颗粒,特别是与掺入脂质体膜内部的超顺磁性氧化铁纳米颗粒(SPIONs)结合使用。与经典TEM不同,CryoTEM保持脂质体的天然状态。样品的快速冷冻将颗粒和脂质体恰好固定在悬浮液中的位置。因此,可以从图像中提取定位信息。但是,必须非常小心地处理数据,同时要记住要观察到3-D对象的2-D投影。在本文中,我们讨论了脂质体-颗粒杂交体的cryoTEM图像分析,包括对对比度传递函数(CTF)和电子剂量的估计,以及对样品架和层析成像的正确定位以进行精确定位。

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