Department of Radiology and Nuclear Medicine, Erasmus MC, Rotterdam, The Netherlands.
Department of Molecular Genetics, Erasmus MC, Rotterdam, The Netherlands.
Mol Imaging Biol. 2022 Apr;24(2):250-263. doi: 10.1007/s11307-021-01662-5. Epub 2021 Nov 4.
Transgenic mouse models have facilitated research of human diseases and validation of therapeutic approaches. Inclusion of optical reporter genes (fluorescent or bioluminescent genes) in the targeting vectors used to develop such models makes in vivo imaging of cellular and molecular events possible, from the microscale to the macroscale. In particular, transgenic mouse models expressing optical reporter genes allowed accurately distinguishing immune cell types from trafficking in vivo using intravital microscopy or whole-body optical imaging. Besides lineage tracing and trafficking of different subsets of immune cells, the ability to monitor the function of immune cells is of pivotal importance for investigating the effects of immunotherapies against cancer. Here, we introduce the reader to state-of-the-art approaches to develop transgenics, optical imaging techniques, and several notable examples of transgenic mouse models developed for immunology research by critically highlighting the models that allow the following of immune cell function.
转基因小鼠模型促进了人类疾病的研究和治疗方法的验证。在用于开发此类模型的靶向载体中纳入光学报告基因(荧光或生物发光基因),使得从微观到宏观的细胞和分子事件的活体成像成为可能。特别是,表达光学报告基因的转基因小鼠模型允许使用活体显微镜或全身光学成像术准确地区分免疫细胞在体内的迁移。除了跟踪和迁移不同免疫细胞亚群之外,监测免疫细胞功能的能力对于研究针对癌症的免疫疗法的效果至关重要。在这里,我们向读者介绍了开发转基因、光学成像技术的最新方法,以及为免疫学研究开发的几种有代表性的转基因小鼠模型,重点突出了能够跟踪免疫细胞功能的模型。