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Investigating the Effect of Encapsulation Processing Parameters on the Viability of Therapeutic Viruses in Electrospraying

机译:研究封装工艺参数对电喷雾治疗性病毒生存力的影响

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摘要

The ability of viruses to introduce genetic material into cells can be usefully exploited in a variety of therapies and also vaccination. Encapsulating viruses to limit inactivation by the immune system before reaching the desired target and allowing for controlled release is a promising strategy of delivery. Conventional encapsulation methods, however, can significantly reduce infectivity. The aim of this study was to investigate electrospraying as an alternative encapsulation technique. Two commonly used therapeutic viruses, adenovirus (Ad) and modified vaccinia Ankara (MVA), were selected. First, solutions containing the viruses were electrosprayed in a single needle configuration at increasing voltages to examine the impact of the electric field. Second, the effect of exposing the viruses to pure organic solvents was investigated and compared to that occurring during coaxial electrospraying. Infectivity was determined by measuring the luminescence produced from lysed A549 cells after incubation with treated virus. Neither Ad nor MVA exhibited any significant loss in infectivity when electrosprayed within the range of electrospraying parameters relevant for encapsulation. A significant decrease in infectivity was only observed when MVA was electrosprayed at the highest voltage, 24 kV, and when MVA and Ad were exposed to selected pure organic solvents. Thus, it was concluded that electrospraying would be a viable method for virus encapsulation.
机译:病毒将遗传物质引入细胞的能力可以在多种疗法以及疫苗接种中得到有效利用。封装病毒以限制免疫系统在达到所需靶标之前的失活并允许控释是一种有希望的递送策略。然而,传统的封装方法可以显着降低传染性。这项研究的目的是研究电喷雾作为一种替代的封装技术。选择了两种常用的治疗性病毒,腺病毒(Ad)和改良的痘苗安卡拉(MVA)。首先,将含有病毒的溶液以单针配置在增加的电压下进行电喷雾,以检查电场的影响。其次,研究了将病毒暴露于纯有机溶剂中的效果,并将其与同轴电喷涂过程中发生的效果进行了比较。通过测量与处理过的病毒孵育后裂解的A549细胞产生的发光来确定感染性。当在与封装有关的电喷雾参数范围内进行电喷雾时,Ad和MVA均未表现出任何明显的传染性损失。仅在以最高电压24 kV电喷雾MVA且将MVA和Ad暴露于选定的纯有机溶剂时,才观察到感染力的显着降低。因此,可以得出结论,电喷雾将是一种可行的病毒封装方法。

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