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Superparamagnetic iron oxide nanoparticles for delivery of therapeutic agents: Opportunities and challenges

机译:用于递送治疗剂的超顺磁性氧化铁纳米粒子:机会和挑战

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Introduction: Bearing in mind that many promising drug candidates have the problem of reaching their target site, the concept of advanced drug delivery can play a significant complementary role in shaping modern medicine. Among other nanoscale drug carriers, superparamagnetic iron oxide nanoparticles (SPIONs) have shown great potential in nanomedicine. The intrinsic properties of SPIONs, such as inherent magnetism, broad safety margin and the availability of methods for fabrication and surface engineering, pave the way for diverse biomedical applications. SPIONs can achieve the highest drug targeting efficiency among carriers, since an external magnetic field locally applied to the target organ enhances the accumulation of magnetic nanoparticles in the drug site of action. Moreover, theranostic multifunctional SPIONs make simultaneous delivery and imaging possible. In spite of these favorable qualities, there are some toxicological concerns, such as oxidative stress, unpredictable cellular responses and induction of signaling pathways, alteration in gene expression profiles and potential disturbance in iron homeostasis, that need to be carefully considered. Besides, the protein corona at the surface of the SPIONs may induce few shortcomings such as reduction of SPIONs targeting efficacy.Areas covered: In this review, we will present recent developments of SPIONs as theranostic agents. The article will further address some barriers on drug delivery using SPIONs.Expert opinion: One of the major success determinants in targeted in vivo drug delivery using SPIONs is the adequacy of magnetic gradient. This can be partially achieved by using superconducting magnets, local implantation of magnets and application of magnetic stents. Other issues that must be considered include the pharmacokinetics and in vivo fate of SPIONs, their biodegradability, biocompatibility, potential side effects and the crucial impact of protein corona on either drug release profile or mistargeting. Surface modification of SPIONs can open up the possibility of drug delivery to intracellular organelles, drug delivery across the blood-brain barrier, modifying metabolic diseases and a variety of other multimodal and/or theranostic applications.
机译:介绍:考虑到许多有前途的毒品候选人有达到目标网站的问题,高级药物交付的概念可以在塑造现代医学方面发挥显着的互补作用。在其他纳米级药物载体中,超顺磁性氧化铁纳米颗粒(栓塞)在纳米胺中显示出巨大的潜力。散氏的固有性质,如固有的磁,广泛的安全保证金和制造和表面工程方法的可用性,为不同的生物医学应用铺平了道路。散网可以达到载体中的最高药物靶向效率,因为局部施加到靶器官的外部磁场增强了药物部位中的磁性纳米颗粒的积累。此外,Theranostic多功能栓子可以同时递送和成像。尽管存在这些有利的品质,但存在一些毒理学担心,例如氧化应激,不可预测的细胞反应和信号通路的诱导,基因表达谱的改变以及铁袜中的潜在干扰,需要仔细考虑。此外,散表表面的蛋白质电晕可能会诱导很少的缺点,例如靶向疗效的酱油的减少。覆盖:在本综述中,我们将呈现最近作为治疗剂的泥质的发展。本文将进一步涉及使用酱的药物递送的一些障碍.Pert意见:使用散氏散热物靶向体内药物递送的主要成功决定簇之一是磁性梯度的充分性。这可以通过使用超导磁体,磁铁的局部植入和磁铁支架的应用来部分地实现。必须考虑的其他问题包括药代动力学和散斑的体内命运,它们的生物降解性,生物相容性,潜在的副作用以及蛋白质电晕目的在药物释放型材或误区的关键影响。酱材的表面改性可以打开药物递送给细胞内细胞器的可能性,在血脑屏障中的药物递送,改性代谢疾病和各种其他多峰和/或其治疗应用。

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