Development and use of iron oxide nanoparticles (Part 1): Synthesis of iron oxide nanoparticles for MRI.

J Lodhia, G Mandarano, Nj Ferris, P Eu, Sf Cowell
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引用次数: 32

Abstract

Contrast agents, such as iron oxide, enhance MR images by altering the relaxation times of tissues in which the agent is present. They can also be used to label targeted molecular imaging probes. Unfortunately, no molecular imaging probe is currently available on the clinical MRI market. A promising platform for MRI contrast agent development is nanotechnology, where superparamagnetic iron oxide nanoparticles (SPIONS) are tailored for MR contrast enhancement, and/or for molecular imaging. SPIONs can be produced using a range of methods and the choice of method will be influenced by the characteristics most important for a particular application. In addition, the ability to attach molecular markers to SPIONS heralds their application in molecular imaging.There are many reviews on SPION synthesis for MRI; however, these tend to be targeted to a chemistry audience. The development of MRI contrast agents attracts experienced researchers from many fields including some researchers with little knowledge of medical imaging or MRI. This situation presents medical radiation practitioners with opportunities for involvement, collaboration or leadership in research depending on their level of commitment and their ability to learn. Medical radiation practitioners already possess a large portion of the understanding, knowledge and skills necessary for involvement in MRI development and molecular imaging. Their expertise in imaging technology, patient care and radiation safety provides them with skills that are directly applicable to research on the development and application of SPIONs and MRI.In this paper we argue that MRI SPIONs, currently limited to major research centres, will have widespread clinical use in the future. We believe that knowledge about this growing area of research provides an opportunity for medical radiation practitioners to enhance their specialised expertise to ensure best practice in a truly multi-disciplinary environment. This review outlines how and why SPIONs can be synthesised and examines their characteristics and limitations in the context of MR imaging.

氧化铁纳米颗粒的开发和应用(第一部分):磁共振成像用氧化铁纳米颗粒的合成。
造影剂,如氧化铁,通过改变造影剂存在的组织的松弛时间来增强MR图像。它们也可用于标记靶向分子成像探针。不幸的是,目前在临床MRI市场上还没有分子成像探针。MRI造影剂开发的一个很有前途的平台是纳米技术,其中超顺磁性氧化铁纳米颗粒(SPIONS)专门用于MR造影剂增强和/或分子成像。可以使用一系列方法生产spion,方法的选择将受到特定应用中最重要的特性的影响。此外,将分子标记物附着到SPIONS上的能力预示着它们在分子成像中的应用。SPION合成用于MRI有许多综述;然而,这些往往是针对化学读者的。MRI造影剂的发展吸引了来自许多领域的经验丰富的研究人员,包括一些对医学成像或MRI知之甚少的研究人员。这种情况为医疗放射从业人员提供了参与、合作或领导研究的机会,这取决于他们的投入程度和学习能力。医疗放射从业人员已经具备参与核磁共振成像开发和分子成像所需的大部分理解、知识和技能。他们在成像技术,患者护理和辐射安全方面的专业知识为他们提供了直接适用于SPIONs和MRI开发和应用研究的技能。在本文中,我们认为MRI SPIONs,目前仅限于主要的研究中心,将有广泛的临床应用在未来。我们相信,关于这一不断发展的研究领域的知识为医疗放射从业人员提供了一个机会,以提高他们的专业知识,确保在真正的多学科环境中进行最佳实践。这篇综述概述了spion如何以及为什么可以合成,并检查了它们在MR成像背景下的特点和局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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