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高效磁泳标记过继转移的 T 细胞用于纵向体内磁粒子成像

英文原题:High-efficiency magnetophoretic labelling of adoptively-transferred T cells for longitudinal in vivo Magnetic Particle Imaging.

查看英文原题

High-efficiency magnetophoretic labelling of adoptively-transferred T cells for longitudinal in vivo Magnetic Particle Imaging.

PubMed 2024/09/23(内容时间) Theranostics Q1 · IF 14.9(JCR 2025)

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中文摘要

开发了一种高效磁泳方法,用于对难以标记的免疫细胞进行简便的磁性标记,随后将这些细胞注射到荷瘤小鼠体内,并使用紧凑型台式磁粒子成像仪(MPI)设计进行为期两周的成像。

标记效率较既往研究提高了10倍以上,使得能够在体内对标记的免疫细胞及其相对于肿瘤的生物分布进行至少两周的长期追踪。新型成像仪的吞吐量提高了5倍,从而能够获得更大密度的数据(每次实验最多20只小鼠)。

综上所述,我们的创新使MPI能够方便且实用地用于在体内临床前模型中可视化ACT产品的定位,以进行纵向、非侵入性的治疗效果功能评估。

展开英文摘要原文

While adoptive cell therapies (ACT) have been successful as therapies for blood cancers, they have limited efficacy in treating solid tumours, where the tumour microenvironment excludes and suppresses adoptively transferred tumour-specific immune cells. A major obstacle to improving cell therapies for solid tumours is a lack of accessible and quantitative imaging modalities capable of tracking the migration and immune functional activity of ACT products for an extended duration in vivo . Methods: A high-efficiency magnetophoretic method was developed for facile magnetic labelling of hard-to-label immune cells, which were then injected into tumour-bearing mice and imaged over two weeks with a compact benchtop Magnetic Particle Imager (MPI) design.

Results: Labelling efficiency was improved more than 10-fold over prior studies enabling longer-term tracking for at least two weeks in vivo of the labelled immune cells and their biodistribution relative to the tumour. The new imager showed 5-fold improved throughput enabling much larger density of data (up to 20 mice per experiment).

Conclusions: Taken together, our innovations enable the convenient and practical use of MPI to visualise the localisation of ACT products in in vivo preclinical models for longitudinal, non-invasive functional evaluation of therapeutic efficacy.

论文信息

作者
Tay RE、P L、Pang ST、Low KE、Tay HC、Ho CM、Malleret B、Rötzschke O
第一作者单位
Singapore Immunology Network (SIgN), Agency for Science, Technology and Research (A*STAR), 8A Biomedical Grove, #04-06 Immunos, Singapore 138648, Republic of Singapore.Singapore
通讯作者单位
Institute of Bioengineering and Bioimaging (IBB), Agency for Science, Technology and Research (A*STAR), 11 Biopolis Way, #02-02 Helios Building, Singapore 138667, Republic of Singapore.Singapore
文献类型
非美国政府资助研究
期刊
Theranostics2024
原文标识
PubMed 39431019 · DOI 10.7150/thno.95527