功能纳米材料在磁共振成像和生物医学工程中的应用进展。

Ruijie Huang, Xingyu Zhou, Guiyuan Chen, Lanhong Su, Zhaoji Liu, Peijie Zhou, J. Weng, Yuanzeng Min
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引用次数: 8

摘要

功能纳米材料具有良好的生物相容性、优异的物理化学性质、易于表面修饰、尺寸和形态易于调节等优点,在生物医学领域得到了广泛的应用。与传统造影剂相比,用于磁共振成像(MRI)的功能纳米材料可以靶向体内特定部位,更容易在分子和细胞水平上检测到与疾病相关的特异性生物标志物,在MRI中具有广阔的应用前景。本文就MRI的基本原理、造影剂的分类、合成、表面改性方法及其临床应用进行综述,为设计新型造影剂、优化造影剂效果提供指导。并对功能纳米材料在医学诊断与疾病检测、疾病治疗、诊疗结合(治疗学)、多模型成像、纳米酶等方面的最新生物医学进展进行了总结和讨论。最后,强调了功能纳米材料在生物医学领域的广阔应用前景,提出了其在产业转化和临床转化方面亟待取得重大突破。本文分类如下:纳米技术生物学方法>生物学诊断工具中的纳米系统>诊断纳米器件治疗方法和药物发现>肿瘤疾病的纳米医学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advances of functional nanomaterials for magnetic resonance imaging and biomedical engineering applications.
Functional nanomaterials have been widely used in biomedical fields due to their good biocompatibility, excellent physicochemical properties, easy surface modification, and easy regulation of size and morphology. Functional nanomaterials for magnetic resonance imaging (MRI) can target specific sites in vivo and more easily detect disease-related specific biomarkers at the molecular and cellular levels than traditional contrast agents, achieving a broad application prospect in MRI. This review focuses on the basic principles of MRI, the classification, synthesis and surface modification methods of contrast agents, and their clinical applications to provide guidance for designing novel contrast agents and optimizing the contrast effect. Furthermore, the latest biomedical advances of functional nanomaterials in medical diagnosis and disease detection, disease treatment, the combination of diagnosis and treatment (theranostics), multi-model imaging and nanozyme are also summarized and discussed. Finally, the bright application prospects of functional nanomaterials in biomedicine are emphasized and the urgent need to achieve significant breakthroughs in the industrial transformation and the clinical translation is proposed. This article is categorized under: Nanotechnology Approaches to Biology > Nanoscale Systems in Biology Diagnostic Tools > Diagnostic Nanodevices Therapeutic Approaches and Drug Discovery > Nanomedicine for Oncologic Disease.
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