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磁粒子成像:在肿瘤诊断、靶向与治疗中具有前景的新兴模式

英文原题:Magnetic Particle Imaging: An Emerging Modality with Prospects in Diagnosis, Targeting and Therapy of Cancer.

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Magnetic Particle Imaging: An Emerging Modality with Prospects in Diagnosis, Targeting and Therapy of Cancer.

PubMed 2021/10/21(内容时间) Cancers (Basel) Q2 · IF 4.8(JCR 2025)

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研究概要

MPI 是一种有前景的新型磁性模态,涵盖从癌症成像到引导治疗的应用。

中文摘要

磁性颗粒成像(MPI)是一种新兴影像技术,可对超顺磁性氧化铁纳米颗粒(SPION或SPIO)进行定量直接成像。MPI采用不同于MRI的物理原理,具有理想的图像对比度,背景组织信号为零。因此,它可清晰显示癌症,影像特征类似PET或SPECT,但使用无辐射磁性纳米颗粒,且报告信号可在体内无限期持续。MPI用于癌症成像:通过免疫细胞(如中性粒细胞、CAR-T 细胞)原位标记SPION,已实现对癌症相关免疫应答持续数月的定量成像。由于MPI在肺部完全没有磁化率伪影,免疫MPI近期有望实现肺癌早期诊断和治疗监测,且完全无创。MPI用于磁性导航:其梯度约为MRI的150倍,可远程磁控磁性气溶胶、纳米颗粒和导管尖端,以磁力增强治疗递送。MPI用于精准治疗:梯度可将磁热疗和磁控释药聚焦至最高2毫米精度。磁性纳米载体释放药物的程度,可通过MPI定量监测载体内SPION的磁颗粒谱变化。

MPI是一种有前景的新型磁成像技术,涵盖从癌症成像到引导治疗的应用。

展开英文摘要原文

Magnetic Particle Imaging (MPI) is an emerging imaging modality for quantitative direct imaging of superparamagnetic iron oxide nanoparticles (SPION or SPIO). With different physics from MRI, MPI benefits from ideal image contrast with zero background tissue signal. This enables clear visualization of cancer with image characteristics similar to PET or SPECT, but using radiation-free magnetic nanoparticles instead, with infinite-duration reporter persistence in vivo. MPI for cancer imaging: demonstrated months of quantitative imaging of the cancer-related immune response with in situ SPION-labelling of immune cells (e.g., neutrophils, CAR T-cells). Because MPI suffers absolutely no susceptibility artifacts in the lung, immuno-MPI could soon provide completely noninvasive early-stage diagnosis and treatment monitoring of lung cancers. MPI for magnetic steering: MPI gradients are ~150 stronger than MRI, enabling remote magnetic steering of magneto-aerosol, nanoparticles, and catheter tips, enhancing therapeutic delivery by magnetic means. MPI for precision therapy: gradients enable focusing of magnetic hyperthermia and magnetic-actuated drug release with up to 2 mm precision. The extent of drug release from the magnetic nanocarrier can be quantitatively monitored by MPI of SPION's MPS spectral changes within the nanocarrier.

MPI is a promising new magnetic modality spanning cancer imaging to guided-therapy.

论文信息

作者
Tay ZW、Chandrasekharan P、Fellows BD、Arrizabalaga IR、Yu E、Olivo M、Conolly SM
第一作者单位
Institute of Bioengineering and Bioimaging, Agency for Science, Technology and Research (A*STAR), 11 Biopolis Way, #02-02 Helios Building, Singapore 138667, Singapore.Singapore
通讯作者单位
Department of Bioengineering, 340 Hearst Memorial Mining Building, University of California Berkeley, Berkeley, CA 94720-1762, USA.United States
文献类型
综述
期刊
Cancers2021 Oct 21
原文标识
PubMed 34771448 · DOI 10.3390/cancers13215285