首页> 外文期刊>Molecular therapy: the journal of the American Society of Gene Therapy >Catheter-based intracoronary myocardial adenoviral gene delivery: importance of intraluminal seal and infusion flow rate.
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Catheter-based intracoronary myocardial adenoviral gene delivery: importance of intraluminal seal and infusion flow rate.

机译:基于导管的冠状动脉内心肌腺病毒基因传递:腔内密封和输注流速的重要性。

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摘要

Although percutaneous, adenoviral-mediated intracoronary gene delivery to the heart has been demonstrated in some species, consistent and safe methodology is needed before clinical applicability is possible. In this study, we examine the effects of altering intracoronary flow rate and obtaining an adequate seal between the catheter and the coronary lumen on successful cardiac gene delivery and myocardial injury in both piglets and adult rabbits. To study the efficacy of in vivo myocardial gene transfer, we utilized adenoviral vectors containing either the beta(2)-adrenergic receptor or beta-galactosidase. The left circumflex coronary artery of piglets and the right coronary artery of rabbits were catheterized under fluoroscopic guidance and adenovirus solutions were injected using varying flow rates with or without balloon inflation. Successful transgene delivery to the heart was determined approximately 1 week after coronary infusions. Histologic analysis was also performed in all animals to determinethe extent of myocardial injury. Our results indicate that efficient and reproducible cardiac transgene expression utilizing intracoronary delivery is dependent upon the infusion flow rate and, in larger animals, requires an intraluminal seal. Excessive flow rate is associated with greater myocardial injury. Thus, conditions can be established and controlled to improve future investigational and clinical application of catheter-based intracoronary myocardial gene therapy.
机译:尽管在某些物种中已经证明了经皮的,腺病毒介导的冠状动脉内基因向心脏的传递,但是在临床应用成为可能之前,需要始终如一的安全方法。在这项研究中,我们研究了改变冠状动脉内流速以及在导管和冠状动脉腔之间获得足够的密封对仔猪和成年兔子成功进行心脏基因传递和心肌损伤的作用。为了研究体内心肌基因转移的功效,我们利用了包含β(2)-肾上腺素能受体或β-半乳糖苷酶的腺病毒载体。在荧光镜引导下将小猪的左旋支冠状动脉和家兔的右冠状动脉插管,并在有或没有球囊充气的情况下使用不同的流速注射腺病毒溶液。在冠状动脉输注大约1周后,确定将转基因成功递送至心脏。还对所有动物进行了组织学分析,以确定心肌损伤的程度。我们的结果表明,利用冠状动脉内递送的有效且可再现的心脏转基因表达取决于输注流速,在较大的动物中,需要腔内密封。流速过大与更大的心肌损伤有关。因此,可以建立和控制条件以改善基于导管的冠状动脉内心肌基因治疗的进一步研究和临床应用。

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