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用于生物医学应用的羧基化核壳型磁铁矿纳米粒子的化学和胶体稳定性。

Chemical and colloidal stability of carboxylated core-shell magnetite nanoparticles designed for biomedical applications.

机构信息

Department of Physical Chemistry and Materials Science, University of Szeged, Aradi Vt. 1, H-6720 Szeged, Hungary.

出版信息

Int J Mol Sci. 2013 Jul 12;14(7):14550-74. doi: 10.3390/ijms140714550.

Abstract

Despite the large efforts to prepare super paramagnetic iron oxide nanoparticles (MNPs) for biomedical applications, the number of FDA or EMA approved formulations is few. It is not known commonly that the approved formulations in many instances have already been withdrawn or discontinued by the producers; at present, hardly any approved formulations are produced and marketed. Literature survey reveals that there is a lack for a commonly accepted physicochemical practice in designing and qualifying formulations before they enter in vitro and in vivo biological testing. Such a standard procedure would exclude inadequate formulations from clinical trials thus improving their outcome. Here we present a straightforward route to assess eligibility of carboxylated MNPs for biomedical tests applied for a series of our core-shell products, i.e., citric acid, gallic acid, poly(acrylic acid) and poly(acrylic acid-co-maleic acid) coated MNPs. The discussion is based on physicochemical studies (carboxylate adsorption/desorption, FTIR-ATR, iron dissolution, zeta potential, particle size, coagulation kinetics and magnetization measurements) and involves in vitro and in vivo tests. Our procedure can serve as an example to construct adequate physico-chemical selection strategies for preparation of other types of core-shell nanoparticles as well.

摘要

尽管人们为将超顺磁性氧化铁纳米粒子(MNPs)用于生物医学应用做了大量准备,但获得 FDA 或 EMA 批准的配方却寥寥无几。人们通常不知道,在许多情况下,已批准的配方已被生产商撤回或停产;目前,几乎没有任何批准的配方在生产和销售。文献调查显示,在进入体外和体内生物测试之前,在设计和确定配方时缺乏普遍接受的物理化学实践。这样的标准程序将把不合格的配方排除在临床试验之外,从而提高其结果。在这里,我们提出了一种直接的方法来评估我们一系列核壳产品(即柠檬酸、没食子酸、聚丙烯酸和聚丙烯酸-马来酸共聚物)所应用的羧基化 MNPs 用于生物医学测试的资格。讨论基于物理化学研究(羧酸盐吸附/解吸、FTIR-ATR、铁溶解、ζ电位、粒径、凝聚动力学和磁化测量)并涉及体外和体内测试。我们的程序可以作为制备其他类型核壳纳米粒子的适当物理化学选择策略的一个例子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5343/3742259/f513f1fcfe98/ijms-14-14550f1.jpg

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