Departments of Radiology and Bioengineering, Bio-X Program, Stanford University, Stanford, CA 94305-5427, USA.
Gene Ther. 2010 Jul;17(7):827-38. doi: 10.1038/gt.2010.30. Epub 2010 Mar 18.
Transcriptional targeting for cardiac gene therapy is limited by the relatively weak activity of most cardiac-specific promoters. We have developed a bidirectional plasmid vector, which uses a two-step transcriptional amplification (TSTA) strategy to enhance the expression of two optical reporter genes, firefly luciferase (fluc) and Renilla luciferase (hrluc), driven by the cardiac troponin T (cTnT) promoter. The vector was characterized in vitro and in living mice using luminometry and bioluminescence imaging to assess its ability to mediate strong, correlated reporter gene expression in a cardiac cell line and the myocardium, while minimizing expression in non-cardiac cell lines and the liver. In vitro, the TSTA system significantly enhanced cTnT-mediated reporter gene expression with moderate preservation of cardiac specificity. After intramyocardial and hydrodynamic tail vein delivery of an hrluc-enhanced variant of the vector, long-term fluc expression was observed in the heart, but not in the liver. In both the cardiac cell line and the myocardium, fluc expression correlated well with hrluc expression. These results show the vector's ability to effectively amplify and couple transgene expression in a cardiac-specific manner. Further replacement of either reporter gene with a therapeutic gene should allow non-invasive imaging of targeted gene therapy in living subjects.
转录靶向心脏基因治疗受到大多数心脏特异性启动子活性较弱的限制。我们开发了一种双向质粒载体,该载体使用两步转录扩增(TSTA)策略来增强由肌钙蛋白 T(cTnT)启动子驱动的两个光学报告基因,萤火虫荧光素酶(fluc)和海肾荧光素酶(hrluc)的表达。使用发光计和生物发光成像在体外和活体小鼠中对该载体进行了表征,以评估其在心脏细胞系和心肌中介导强、相关报告基因表达的能力,同时最大限度地减少在非心脏细胞系和肝脏中的表达。体外,TSTA 系统可显著增强 cTnT 介导的报告基因表达,同时适度保留心脏特异性。在心肌内和水动力尾静脉递送 hrluc 增强型载体后,在心脏中观察到长期的 fluc 表达,但在肝脏中没有。在心脏细胞系和心肌中,fluc 表达与 hrluc 表达密切相关。这些结果表明该载体能够以心脏特异性的方式有效放大和偶联转基因表达。进一步用治疗基因替换任一报告基因,应该可以在活体动物中进行靶向基因治疗的非侵入性成像。