Seime Till, Kolind Mille, Mikulec Kathy, Summers Matthew A, Cantrill Laurence, Little David G, Schindeler Aaron
Department of Orthopaedic Research & Biotechnology, The Children's Hospital at Westmead, Locked Bag 4001, Westmead, Sydney, NSW, 2145, Australia; MCI Management Center Innsbruck, A-6020 Innsbruck, Austria.
Dev Growth Differ. 2015 Jan;57(1):10-23. doi: 10.1111/dgd.12184. Epub 2014 Nov 11.
Mouse models incorporating inducible Cre-ERT2/LoxP recombination coupled with sensitive fluorescent reporter lines are being increasingly used to track cell lineages in vivo. In this study we use two inducible reporter strains, Ai9iCol2a1 (Ai9×Col2a1-creERT2) to track contribution of chondrogenic progenitors during bone regeneration in a closed fracture model and Ai9i UBC (Ai9×UBC-creERT2) to examine methods for inducing localized recombination. By comparing with Ai9 littermate controls as well as inducible reporter mice not dosed with tamoxifen, we revealed significant leakiness of the CreERT2 system, particularly in the bone marrow of both lines. These studies highlight the challenges associated with highly sensitive reporters that may be activated without induction in tissues where the CreERT2 fusion is expressed. Examination of the growth plate in the Ai9iCol2a1 strain showed cells of the osteochondral lineage (cell co-staining with chondrocyte and osteoblast markers) labeled with the tdTom reporter. However, no such labeling was noted in healing fractures of Ai9iCol2a1 mice. Attempts to label a single limb using intramuscular injection of 4-hydroxytamoxifen in the Ai9i UBC strain resulted in complete labeling of the entire animal, comparable to intraperitoneal injection. While a challenge to interpret, these data are nonetheless informative regarding the limitations of these inducible reporter models, and justify caution and expansive controls in future studies using such models.
结合诱导型Cre-ERT2/LoxP重组与灵敏荧光报告基因系的小鼠模型正越来越多地用于在体内追踪细胞谱系。在本研究中,我们使用两种诱导型报告菌株,即Ai9iCol2a1(Ai9×Col2a1-creERT2),以追踪在闭合性骨折模型中骨再生过程中软骨生成祖细胞的贡献,以及Ai9i UBC(Ai9×UBC-creERT2)来研究诱导局部重组的方法。通过与Ai9同窝对照以及未用他莫昔芬给药的诱导型报告小鼠进行比较,我们发现CreERT2系统存在显著的渗漏,尤其是在这两种品系的骨髓中。这些研究突出了与高灵敏报告基因相关的挑战,即在表达CreERT2融合蛋白的组织中,报告基因可能在未诱导的情况下被激活。对Ai9iCol2a1品系生长板的检查显示,tdTom报告基因标记了骨软骨谱系的细胞(细胞同时被软骨细胞和成骨细胞标记物共染色)。然而,在Ai9iCol2a1小鼠的愈合骨折中未观察到此类标记。在Ai9i UBC品系中,尝试通过肌肉注射4-羟基他莫昔芬标记单个肢体,结果导致整个动物被完全标记,这与腹腔注射相当。虽然这些数据难以解释,但它们对于这些诱导型报告模型的局限性具有参考价值,并为未来使用此类模型的研究中谨慎行事和进行广泛对照提供了依据。