Center for Development of Advanced Medical Technology, Jichi Medical University, Tochigi 329-0498, Japan.
Division of Regenerative Medicine, Center for Molecular Medicine, Jichi Medical University, Tochigi 329-0498, Japan.
Int J Mol Sci. 2024 Aug 7;25(16):8609. doi: 10.3390/ijms25168609.
Luminescent technology based on the luciferin-luciferase reaction has been extensively employed across various disciplines as a quantitative imaging modality. Owing to its non-invasive imaging capacity, it has evolved as a valuable in vivo bioimaging tool, particularly in small animal models in fields such as gene and cell therapies. We have previously successfully generated rats with a systemic expression of the gene at the locus. In this study, we transplanted bone marrow from these rats into micro-mini pigs and used in vivo imaging to non-invasively analyze the dynamics of the transplanted cells. In addition, we established that the rat-to-pig transplantation system is a discordant system, similar to the pig-to-human transplantation system. Thus, rat-to-pig transplantation may provide a clinically appropriate large animal model for pig-to-human xenotransplantation.
基于荧光素-荧光酶反应的发光技术在多个学科中被广泛应用,作为一种定量成像方式。由于其非侵入性的成像能力,它已发展成为一种有价值的活体生物成像工具,特别是在基因和细胞治疗等领域的小动物模型中。我们之前已经成功地在 基因座上生成了全身性表达 基因的大鼠。在这项研究中,我们将这些大鼠的骨髓移植到微型猪体内,并使用体内成像技术非侵入性地分析移植细胞的动态。此外,我们还证实了大鼠到猪的移植系统是一种不和谐的系统,类似于猪到人移植系统。因此,大鼠到猪的移植可能为猪到人异种移植提供一种临床合适的大动物模型。