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Magnetic force microscopyQuantitative issues in biomaterials

机译:磁力显微镜生物材料中的定量问题

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Magnetic force microscopy (MFM) is an atomic force microscopy (AFM) based technique in which an AFM tip with a magnetic coating is used to probe local magnetic fields with the typical AFM spatial resolution, thus allowing one to acquire images reflecting the local magnetic properties of the samples at the nanoscale. Being a well established tool for the characterization of magnetic recording media, superconductors and magnetic nanomaterials, MFM is finding constantly increasing application in the study of magnetic properties of materials and systems of biological and biomedical interest. After reviewing these latter applications, three case studies are presented in which MFM is used to characterize: (i) magnetoferritin synthesized using apoferritinas molecular reactor; (ii) magnetic nanoparticles loaded niosomes to be used as nanocarriers for drug delivery; (iii) leukemic cells labeled using folic acid-coated core-shell superparamagnetic nanoparticles in order to exploit the presence of folate receptors on the cell membrane surface. In these examples, MFM data are quantitatively analyzed evidencing the limits of the simple analytical models currently used. Provided that suitable models are used to simulate the MFM response, MFM can be used to evaluate the magnetic momentum of the core of magnetoferritin, the iron entrapment efficiency in single vesicles, or the uptake of magnetic nanoparticles into cells.
机译:磁力显微镜(MFM)是一种基于原子力显微镜(AFM)的技术,其中,带有磁性涂层的AFM尖端用于探测具有典型AFM空间分辨率的局部磁场,从而使人们可以获得反映局部磁特性的图像纳米尺度的样品。作为表征磁记录介质,超导体和磁性纳米材料的成熟工具,MFM在研究具有生物学和生物医学意义的材料和系统的磁性能方面不断发现越来越多的应用。在回顾了这些应用之后,提出了三个案例研究,其中使用MFM表征:(i)使用脱铁铁蛋白分子反应器合成的磁铁蛋白; (ii)负载有磁性纳米颗粒的脂质体,用作药物递送的纳米载体; (iii)使用叶酸包被的核-壳超顺磁性纳米颗粒标记的白血病细胞,以利用细胞膜表面上叶酸受体的存在。在这些示例中,对MFM数据进行了定量分析,以证明当前使用的简单分析模型的局限性。如果使用合适的模型来模拟MFM响应,则MFM可以用于评估磁铁蛋白核心的磁动量,单个囊泡中的铁截留效率或磁性纳米颗粒进入细胞的吸收。

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