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A prokaryotic-eukaryotic hybrid viral vector for delivery of large cargos of genes and proteins into human cells

机译:原核-真核杂交病毒载体,用于将大量基因和蛋白质运送到人类细胞中

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Development of safe and efficient nanoscale vehicles that can deliver large molecular cargos into human cells could transform future human therapies and personalized medicine. Here, we design a hybrid viral vector composed of a prokaryotic virus (bacteriophage T4) and a eukaryotic virus [adeno-associated virus (AAV)]. The small 25-nm AAV is attached to the large 120 nm × 86 nm T4 head through avidin-biotin cross-bridges using the phage decoration proteins Soc and Hoc. AAV “piggy-backed” on T4 capsid, by virtue of its natural ability to enter human cells acted as an efficient “driver,” delivering the largest payloads of foreign DNA (up to 170 kb) and protein (up to 1025 molecules) reported to date, and elicited robust immune responses in mice against flu and plague pathogens and conferred complete protection against lethal pneumonic plague challenge. The T4-AAV represents a unique platform for assembly of natural building blocks into potential therapeutics against genetic and infectious diseases.
机译:可以将大分子货物运送到人类细胞中的安全高效的纳米级车辆的开发,可能会改变未来的人类疗法和个性化药物。在这里,我们设计了由原核病毒(噬菌体T4)和真核病毒[腺相关病毒(AAV)]组成的混合病毒载体。使用噬菌体修饰蛋白Soc和Hoc,小25 nm AAV通过抗生物素蛋白-生物素交叉桥连接到120 nm×86 nm大T4头。 AAV在T4衣壳上“背负”,因为它具有天然的进入人细胞的能力,可以作为有效的“驱动器”,提供最大的有效载荷外来DNA(最大170 kb)和蛋白质(最大1025个分子)迄今为止,在小鼠中引发了针对流感和鼠疫病原体的强大免疫反应,并针对致命性肺炎鼠疫挑战提供了全面保护。 T4-AAV代表了一个独特的平台,可将天然构件组装成潜在的针对遗传和传染病的疗法。

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