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Minimally invasive closed-chest ultrasound-guided substance delivery into the pericardial space in mice

机译:微创闭合胸腔超声引导下的物质向小鼠心包腔的输送

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摘要

Organ-directed gene transfer remains an attractive method for both gaining a better understanding of heart disease and for cardiac therapy. However, virally mediated transfer of gene products into cardiac cells requires prolonged exposure of the myocardium to the viral substrate. Pericardial injection of viral vectors has been proposed and used with some success to achieve myocardial transfection and may be a suitable approach for transfection of atrial myocardium. Indeed, such an organ-specific method would be particularly useful to reverse phenotypes in young and adult genetically altered murine models of cardiac disease. We therefore sought to develop a minimally invasive technique for pericardial injection of substances in mice. Pericardial access in anaesthetised, spontaneously breathing mice was achieved using continuous high-resolution ultrasound guidance. We could demonstrate adequate delivery of injected substances into the murine pericardium. Atrial epicardial and myocardial cells were transfected in approximately one third of mice injected with enhanced green fluorescent protein-expressing adenovirus. Cellular expression rates within individual murine atria were limited to a maximum of 20 %; therefore, expression efficiency needs to be further improved. Minimally invasive, ultrasound-guided injection of viral material appears a technically challenging yet feasible method for selective transfection of atrial epi- and myocardium. This pericardial injection method may be useful in the evaluation of potential genetic interventions aimed at rescuing atrial phenotypes in transgenic mouse models.Electronic supplementary materialThe online version of this article (doi:10.1007/s00210-012-0815-2) contains supplementary material, which is available to authorized users.
机译:器官定向基因转移仍然是一种吸引人的方法,可以更好地了解心脏病和进行心脏治疗。然而,病毒介导的基因产物向心肌细胞的转移需要心肌长时间暴露于病毒底物。心包注射病毒载体已被提出并成功地用于心肌转染,并且可能是转染心房心肌的合适方法。实际上,这种器官特异性方法对于逆转年轻和成年的遗传性心脏病小鼠模型中的表型特别有用。因此,我们寻求开发一种用于小鼠心包注射物质的微创技术。使用连续的高分辨率超声引导,在麻醉的,自发呼吸的小鼠中获得心包通路。我们可以证明将注射物质充分递送到鼠心包中。在注射增强型绿色荧光蛋白表达腺病毒的小鼠中,约有三分之一转染了心房心外膜和心肌细胞。单个鼠心房内的细胞表达率最高不能超过20%;因此,表达效率需要进一步提高。超声引导的病毒材料的微创注射似乎是选择性转染心房上皮和心肌的技术挑战性但可行的方法。这种心包注射方法可能有助于评估旨在挽救转基因小鼠模型中心房表型的潜在遗传干预措施。电子补充材料本文的在线版本(doi:10.1007 / s00210-012-0815-2)包含补充材料,其中适用于授权用户。

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