Wu J C, Sundaresan G, Iyer M, Gambhir S S
Crump Institute for Molecular Imaging, Department of Molecular and Medical Pharmacology, UCLA School of Medicine, Los Angeles, California 90095, USA.
Mol Ther. 2001 Oct;4(4):297-306. doi: 10.1006/mthe.2001.0460.
The ability to monitor reporter gene expression noninvasively offers significant advantages over current techniques such as postmortem tissue staining or enzyme activity assays. Here we demonstrate a novel method of repetitively tracking in vivo gene expression of firefly luciferase (FL) in skeletal muscles of mice using a cooled charged coupled device (CCD) camera. We first show that the cooled CCD camera provides consistent and reproducible results within +/-8% standard deviation from mean values, and a detection sensitivity (range tested: 1 x 10(4) - 1 x 10(9) plaque form-ing units (pfu)) of 1 x 10(6) pfu of E1-deleted adenovirus expressing FL driven by a cytomegalovirus promoter (Ad-CMV-FL). The duration and magnitude of adenoviral mediated (1 x 10(9) pfu) FL gene expression were then followed over time. FL gene expression in immunocompetent Swiss Webster mice peaks within the first 48 hours, falls by 98% after 20 days, and persists for >150 days. In contrast, FL activity in nude mice remains elevated for >110 days. Finally, transduced Swiss Webster and nude mice were sacrificed to show that the in vivo CCD signals correlate well with in vitro luciferase enzyme assays (r(2)=0.91 and 0.96, respectively). Our findings demonstrate the ability of the cooled CCD camera to sensitively and noninvasively track the location, magnitude, and persistence of FL gene expression. Monitoring of gene therapy studies in small animals may be aided considerably with further extensions of this technique.
与目前的技术(如死后组织染色或酶活性测定)相比,非侵入性监测报告基因表达的能力具有显著优势。在此,我们展示了一种使用冷却电荷耦合器件(CCD)相机在小鼠骨骼肌中重复追踪萤火虫荧光素酶(FL)体内基因表达的新方法。我们首先表明,冷却CCD相机提供的结果一致且可重复,标准偏差在平均值的±8%以内,对于由巨细胞病毒启动子驱动的表达FL的E1缺失腺病毒(Ad-CMV-FL),检测灵敏度(测试范围:1×10⁴ - 1×10⁹ 噬斑形成单位(pfu))为1×10⁶ pfu。然后随时间追踪腺病毒介导(1×10⁹ pfu)的FL基因表达的持续时间和强度。在免疫健全的瑞士韦伯斯特小鼠中,FL基因表达在最初48小时内达到峰值,20天后下降98%,并持续超过150天。相比之下,裸鼠中的FL活性在超过110天内保持升高。最后,处死转导的瑞士韦伯斯特小鼠和裸鼠,以表明体内CCD信号与体外荧光素酶活性测定结果相关性良好(r²分别为0.91和0.96)。我们的研究结果证明了冷却CCD相机能够灵敏且非侵入性地追踪FL基因表达的位置、强度和持续性。随着该技术的进一步扩展,对小动物基因治疗研究的监测可能会得到极大帮助。