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Recent advances in superparamagnetic iron oxide nanoparticles for cellular imaging and targeted therapy research

机译:用于细胞成像和靶向治疗研究的超顺磁性氧化铁纳米粒子的最新进展

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摘要

Advances of nanotechnology have led to the development of nanomaterials with both potential diagnostic and therapeutic applications. Among them, superparamagnetic iron oxide (SPIO) nanoparticles have received particular attention. Over the past decade, various SPIOs with unique physicochemical and biological properties have been designed by modifying the particle structure, size and coating. This article reviews the recent advances in preparing SPIOs with novel properties, the way these physicochemical properties of SPIOs influence their interaction with cells, and the development of SPIOs in liver and lymph nodes magnetic resonance imaging (MRI) contrast. Cellular uptake of SPIO can be exploited in a variety of potential clinical applications, including stem cell and inflammation cell tracking and intra-cellular drug delivery to cancerous cells which offers higher intra-cellular concentration. When SPIOs are used as carrier vehicle, additional advantages can be achieved including magnetic targeting and hyperthermia options, as well as monitoring with MRI. Other potential applications of SPIO include magnetofection and gene delivery, targeted retention of labeled stem cells, sentinel lymph nodes mapping, and magnetic force targeting and cell orientation for tissue engineering.
机译:纳米技术的进步导致了具有潜在诊断和治疗应用的纳米材料的发展。其中,超顺磁性氧化铁(SPIO)纳米颗粒受到了特别关注。在过去的十年中,已经通过改变粒子的结构,大小和涂层设计了具有独特的理化和生物学特性的各种SPIO。本文回顾了制备具有新特性的SPIO的最新进展,SPIO的这些理化特性如何影响其与细胞的相互作用以及肝脏和淋巴结磁共振成像(MRI)对比中SPIO的发展。 SPIO对细胞的摄取可用于多种潜在的临床应用中,包括干细胞和炎症细胞追踪以及向高细胞内浓度的癌细胞的细胞内药物递送。当SPIO用作运载工具时,可以获得其他优势,包括磁性靶向和热疗选项以及MRI监测。 SPIO的其他潜在应用包括磁转染和基因传递,标记干细胞的靶向保留,前哨淋巴结定位以及针对组织工程的磁力靶向和细胞定向。

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