使用氧化铁基标记剂进行MRI细胞跟踪研究时需要考虑的基本要素。

Paul C Wang, Liang Shan
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摘要

在过去的十年里,异体或自体细胞的个性化诊断和治疗已经得到了广泛的研究。尽管在临床前研究中有很好的发现,但迄今为止的临床结果在很大程度上令人失望。如何监测移植细胞在体内的迁移、归巢、存活和功能等关键问题仍有待解决。在过去的几年里,成像技术已经被引入来解决这些问题,基于一个概念,即细胞可以在用显像剂标记细胞后转化为细胞显像剂。为此,磁共振成像(MRI)是迄今为止首选的成像方式,氧化铁基纳米颗粒是最常用的标记剂。然而,目前大多数MRI细胞跟踪研究仍然局限于标记细胞的体内可视化,细胞跟踪研究的一些关键元素往往不完全表征,这使得难以验证和荟萃分析来自不同研究的数据。临床前研究的不完整信息也减缓了研究结果向临床实践的转变。一个健全的核磁共振细胞跟踪研究方案显然是处理这些问题的关键。在这篇综述中,我们首先简要讨论了基于氧化铁纳米颗粒的MRI细胞跟踪的局限性,然后推荐了在临床前阶段MRI细胞跟踪研究中应该考虑的最小基本元素集。
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Essential Elements to Consider for MRI Cell Tracking Studies with Iron Oxide-based Labeling Agents.

Personalized diagnosis and treatment with allogenic or autologous cells have been intensively investigated over the past decade. Despite the promising findings in preclinical studies, the clinical results to date have been largely disappointing. Some critical issues remain to be solved, such as how to monitor the migration, homing, survival, and function of the transplanted cells in vivo. In the past years, imaging techniques have been introduced to solve these issues based on a concept that cells can be transformed to a cellular imaging agent following labeling of the cells with an imaging agent. For this purpose, magnetic resonance imaging (MRI) is so far the first choice imaging modality and iron oxide-based nanoparticles are the most frequently applied labeling agents. However, most MRI cell tracking studies are currently still limited in in vivo visualization of the labeled cells, some critical elements for cell tracking studies are often incompletely characterized, which makes it difficult to validate and meta-analyze the data generated from different studies. Incomplete information on preclinical studies also slows the transition of the findings to clinical practice. A robust protocol of MRI cell tracking studies is apparently critical to deal with these issues. In this review, we first briefly discuss the limitations of MRI cell tracking based on iron oxide nanoparticles and then recommend a minimum set of essential elements that should be considered in MRI cell tracking studies at preclinical stage.

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