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A Potential Role of Distinctively Delayed Blood Clearance of Recombinant Adeno-associated Virus Serotype 9 in Robust Cardiac Transduction

机译:重组腺相关病毒血清型9明显延迟的血液清除在强大的心脏传导中的潜在作用。

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摘要

Recombinant adeno-associated virus serotype 9 (rAAV9) vectors show robust in vivo transduction by a systemic approach. It has been proposed that rAAV9 has enhanced ability to cross the vascular endothelial barriers. However, the scientific basis of systemic administration of rAAV9 and its transduction mechanisms have not been fully established. Here, we show indirect evidence suggesting that capillary walls still remain as a significant barrier to rAAV9 in cardiac transduction but not so in hepatic transduction in mice, and the distinctively delayed blood clearance of rAAV9 plays an important role in overcoming this barrier, contributing to robust cardiac transduction. We find that transvascular transport of rAAV9 in the heart is a capacity-limited slow process and occurs in the absence of caveolin-1, the major component of caveolae that mediate endothelial transcytosis. In addition, a reverse genetic study identifies the outer region of the icosahedral threefold capsid protrusions as a potential culprit for rAAV9's delayed blood clearance. These results support a model in which the delayed blood clearance of rAAV9 sustains the capacity-limited slow transvascular vector transport and plays a role in mediating robust cardiac transduction, and provide important implications in AAV capsid engineering to create new rAAV variants with more desirable properties.
机译:重组腺相关病毒血清型9(rAAV9)载体通过系统途径显示了强大的体内转导。已经提出rAAV9具有增强的穿过血管内皮屏障的能力。但是,rAAV9的系统管理及其转导机制的科学基础尚未完全建立。在这里,我们显示出间接证据表明,毛细血管壁在心脏转导中仍然仍然是rAAV9的重要屏障,但在肝脏转导中却不是,而rAAV9明显延迟的血液清除在克服该屏障中起着重要作用,有助于健壮心脏转导。我们发现心脏中的rAAV9的跨血管运输是一个能力受限的缓慢过程,发生在不存在小窝蛋白1的情况下,小窝蛋白1是介导内皮转胞作用的小窝的主要成分。此外,一项逆向遗传研究发现二十面体三倍衣壳突出的外部区域可能是导致rAAV9血液清除延迟的罪魁祸首。这些结果支持了一种模型,其中rAAV9的血液清除延迟维持了容量受限的缓慢经血管载体运输并在介导强大的心脏转导中发挥作用,并在AAV衣壳工程中产生重要意义,以创建具有更理想特性的新rAAV变体。

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