Scarfe Lauren, Brillant Nathalie, Kumar J Dinesh, Ali Noura, Alrumayh Ahmed, Amali Mohammed, Barbellion Stephane, Jones Vendula, Niemeijer Marije, Potdevin Sophie, Roussignol Gautier, Vaganov Anatoly, Barbaric Ivana, Barrow Michael, Burton Neal C, Connell John, Dazzi Francesco, Edsbagge Josefina, French Neil S, Holder Julie, Hutchinson Claire, Jones David R, Kalber Tammy, Lovatt Cerys, Lythgoe Mark F, Patel Sara, Patrick P Stephen, Piner Jacqueline, Reinhardt Jens, Ricci Emanuelle, Sidaway James, Stacey Glyn N, Starkey Lewis Philip J, Sullivan Gareth, Taylor Arthur, Wilm Bettina, Poptani Harish, Murray Patricia, Goldring Chris E P, Park B Kevin
Department of Cellular and Molecular Physiology, University of Liverpool, Liverpool, UK.
Centre for Preclinical Imaging, University of Liverpool, Liverpool, UK.
NPJ Regen Med. 2017 Oct 19;2:28. doi: 10.1038/s41536-017-0029-9. eCollection 2017.
Regenerative medicine therapies hold enormous potential for a variety of currently incurable conditions with high unmet clinical need. Most progress in this field to date has been achieved with cell-based regenerative medicine therapies, with over a thousand clinical trials performed up to 2015. However, lack of adequate safety and efficacy data is currently limiting wider uptake of these therapies. To facilitate clinical translation, non-invasive in vivo imaging technologies that enable careful evaluation and characterisation of the administered cells and their effects on host tissues are critically required to evaluate their safety and efficacy in relevant preclinical models. This article reviews the most common imaging technologies available and how they can be applied to regenerative medicine research. We cover details of how each technology works, which cell labels are most appropriate for different applications, and the value of multi-modal imaging approaches to gain a comprehensive understanding of the responses to cell therapy in vivo.
再生医学疗法对于目前多种临床需求未得到满足的不治之症具有巨大潜力。迄今为止,该领域的大部分进展是通过基于细胞的再生医学疗法实现的,截至2015年已进行了一千多项临床试验。然而,目前缺乏足够的安全性和有效性数据限制了这些疗法的更广泛应用。为促进临床转化,在相关临床前模型中评估其安全性和有效性时,迫切需要能够仔细评估和表征所施用细胞及其对宿主组织影响的非侵入性体内成像技术。本文综述了现有的最常见成像技术以及它们如何应用于再生医学研究。我们详细介绍了每种技术的工作原理、哪种细胞标记最适合不同应用,以及多模态成像方法对于全面了解体内细胞治疗反应的价值。