Division of Animal Biotechnology, College of Animal Life Science, Kangwon National University, Chuncheon, Republic of Korea.
Theriogenology. 2010 Jan;73(1):129-38. doi: 10.1016/j.theriogenology.2009.07.028. Epub 2009 Oct 17.
Although much research has focused on transferring exogenous genes into living mouse testis to investigate specific gene functions in spermatogenic, Sertoli, and Leydig cells, relatively little is known regarding real-time gene expression in vivo. In this study, we constructed a bicistronic lentiviral vector (LV) encoding firefly luciferase and enhanced green fluorescence protein (EGFP); this was a highly efficient in vivo gene transfer tool. After microinjecting LV into the seminiferous tubules the ICR mouse testis, we detected luciferase and EGFP expression in vivo and ex vivo in the injected tubules using bioluminescence imaging (BLI) with the IVIS-200 system and fibered confocal fluorescence microscopy (CellViZio), respectively. In addition, with an in vivo BLI system, luciferase expression in the testis was detected for approximately 3 mo. Furthermore, EGFP expression in seminiferous tubules was confirmed in excised testes via three-dimensional fluorescent imaging with a confocal laser-scanning microscope. With immunostaining, EGFP expression was confirmed in several male germ cell types in the seminiferous tubules, as well as in Sertoli and Leydig cells. In conclusion, we demonstrated that real-time in vivo BLI analysis can be used to noninvasively (in vivo) monitor long-term luciferase expression in mouse testis, and we verified that EGFP expression is localized in seminiferous tubules after bicistronic LV-mediated gene transfer into mouse testes. Furthermore, we anticipate the future use of in vivo BLI technology for real-time study of specific genes involved in spermatogenesis.
虽然有大量研究集中于将外源性基因转入活体小鼠睾丸以研究精子发生、支持细胞和间质细胞中特定基因的功能,但对于体内实时基因表达的了解相对较少。在这项研究中,我们构建了一个编码萤火虫荧光素酶和增强型绿色荧光蛋白(EGFP)的双顺反子慢病毒载体(LV);这是一种高效的体内基因转移工具。将 LV 微注射到 ICR 小鼠睾丸的生精小管后,我们使用 IVIS-200 系统的生物发光成像(BLI)和纤维共聚焦荧光显微镜(CellViZio)分别在体内和体外检测到注射管中的荧光素酶和 EGFP 表达。此外,使用体内 BLI 系统,在大约 3 个月内检测到睾丸中的荧光素酶表达。此外,通过共聚焦激光扫描显微镜的三维荧光成像,在切除的睾丸中证实了生精小管中的 EGFP 表达。通过免疫染色,在生精小管中的几种雄性生殖细胞类型中以及在支持细胞和间质细胞中均证实了 EGFP 表达。总之,我们证明了实时体内 BLI 分析可用于非侵入性(体内)监测小鼠睾丸中荧光素酶的长期表达,并且我们证实了双顺反子 LV 介导的基因转移到小鼠睾丸后 EGFP 表达定位于生精小管。此外,我们预计未来将体内 BLI 技术用于实时研究精子发生中涉及的特定基因。