Imaging in cardiac cell-based therapy: in vivo tracking of the biological fate of therapeutic cells.

Hung Q Ly, John V Frangioni, Roger J Hajjar
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引用次数: 29

Abstract

Clinical trials in cardiac cell-based therapy (CBT) have demonstrated the immense potential of stem progenitor cells (SPCs) to repair the injured myocardium. The bulk of evidence so far has shown that CBT can lead to structural and functional improvements. Unresolved issues remain, however, including gaps in the understanding of mechanisms and mixed results from CBT trials. To try to provide answers for these issues, assessment of the biological fate of SPCs once delivered to the injured heart has been called for. Advances in contrast agents and imaging modalities have made feasible the objective assessment of the in vivo molecular and cellular evolution of transplanted SPCs. In vivo imaging can target fundamental processes related to SPCs to gain information on their biological activities and outcomes within specific authentic microenvironments. Advantages and inherent drawbacks of imaging techniques, such as reporter-gene systems, optical imaging, radionuclide imaging, and MRI, are discussed in this Review. More than ever, it has become clear to scientists and clinicians that parallel developments in cell-based therapies and in vivo imaging modalities will strengthen this blossoming field.

心脏细胞治疗中的成像:治疗细胞生物学命运的体内追踪。
心脏细胞治疗(CBT)的临床试验表明,干细胞祖细胞(SPCs)在修复受损心肌方面具有巨大的潜力。到目前为止,大量证据表明,认知行为疗法可以改善大脑结构和功能。然而,尚未解决的问题仍然存在,包括对机制的理解差距和CBT试验的混合结果。为了试图为这些问题提供答案,需要对SPCs在运送到受伤心脏后的生物学命运进行评估。造影剂和成像技术的进步使得客观评估移植SPCs的体内分子和细胞进化成为可能。体内成像可以针对与SPCs相关的基本过程,以获得其在特定真实微环境中的生物活动和结果的信息。本文讨论了报告基因系统、光学成像、放射性核素成像和MRI等成像技术的优点和固有缺点。科学家和临床医生比以往任何时候都更加清楚,细胞治疗和体内成像模式的平行发展将加强这一蓬勃发展的领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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