School of Chemistry and Pharmaceutical Engineering, Medical Science and Technology Innovation Center, Shandong First Medical University & Shandong Academy of Medical Sciences, Jinan 250000, China.
Department of Radiology, Shandong Provincial Hospital Affiliated to Shandong First Medical University, Jinan, Shandong, 250021, China.
Nanoscale. 2023 Mar 9;15(10):4694-4724. doi: 10.1039/d2nr07009j.
The shape effect is an important parameter in the design of novel nanomaterials. Engineering the shape of nanomaterials is an effective strategy for optimizing their bioactive performance. Nanomaterials with a unique shape are beneficial to blood circulation, tumor targeting, cell uptake, and even improved magnetism properties. Therefore, magnetic resonance imaging (MRI) nanoprobes with different shapes have been extensively focused on in recent years. Different from other multimodal imaging techniques, dual-mode MRI can provide imaging simultaneously by a single instrument, which can avoid differences in penetration depth, and the spatial and temporal resolution of multiple imaging devices, and ensure the accurate matching of spatial and temporal imaging parameters for the precise diagnosis of early tumors. This review summarizes the latest developments of nanomaterials with various shapes for - dual-mode MRI, and highlights the mechanism of how shape intelligently affects nanomaterials' longitudinal or transverse relaxation, namely sphere, hollow, core-shell, cube, cluster, flower, dumbbell, rod, sheet, and bipyramid shapes. In addition, the combination of - dual-mode MRI nanoprobes and advanced therapeutic strategies, as well as possible challenges from basic research to clinical transformation, are also systematically discussed. Therefore, this review will help others quickly understand the basic information on dual-mode MRI nanoprobes and gather thought-provoking ideas to advance the subfield of cancer nanomedicine.
形状效应对新型纳米材料的设计是一个重要的参数。对纳米材料的形状进行工程设计是优化其生物活性性能的有效策略。具有独特形状的纳米材料有利于血液循环、肿瘤靶向、细胞摄取,甚至改善磁性。因此,近年来,具有不同形状的磁共振成像(MRI)纳米探针受到了广泛关注。与其他多模态成像技术不同,双模 MRI 可以通过单一仪器同时提供成像,这可以避免不同的穿透深度,以及多个成像设备的空间和时间分辨率,并确保空间和时间成像参数的精确匹配,以对早期肿瘤进行精确诊断。本综述总结了具有各种形状的纳米材料用于双模 MRI 的最新进展,并强调了形状如何智能地影响纳米材料的纵向或横向弛豫的机制,即球体、空心、核壳、立方体、团簇、花、哑铃、棒、薄片和双锥体形状。此外,还系统地讨论了双模 MRI 纳米探针与先进治疗策略的结合,以及从基础研究到临床转化可能面临的挑战。因此,本综述将有助于其他人快速了解双模 MRI 纳米探针的基本信息,并汇集发人深省的想法来推进癌症纳米医学领域。