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Heat stress is a potent stimulus for enhancing rescue efficiency of recombinant Borna disease virus.

机译:热应激是一种有效的刺激,可增强重组博尔纳病病毒的抢救效率。

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摘要

Recently developed vector systems based on Borna disease virus (BDV) hold promise as platforms for efficient and stable gene delivery to the central nervous system (CNS). However, because it currently takes several weeks to rescue recombinant BDV (rBDV), an improved rescue procedure would enhance the utility of this system. Heat stress reportedly enhances the rescue efficiency of other recombinant viruses. Here, heat stress was demonstrated to increase the amount of BDV genome in persistently BDV-infected cells without obvious cytotoxicity. Further analyses suggested that the effect of heat stress on BDV infection is not caused by an increase in the activity of BDV polymerase. More cells in which BDV replication occurs were obtained in the initial phase of rBDV rescue by using heat stress than when it was not used. Thus, heat stress is a useful improvement on the published rescue procedure for rBDV. The present findings may accelerate the practical use of BDV vector systems in basic science and the clinic and thus enable broader adoption of this viral vector, which is uniquely suited for gene delivery to the CNS.
机译:最近开发的基于博尔纳病病毒(BDV)的载体系统有望成为将基因高效稳定地传递到中枢神经系统(CNS)的平台。但是,由于目前需要花费数周的时间来拯救重组BDV(rBDV),因此改进的拯救程序将增强该系统的实用性。据报道,热应激可提高其他重组病毒的拯救效率。在这里,热应激被证明可以增加持续感染BDV的细胞中BDV基因组的数量,而没有明显的细胞毒性。进一步的分析表明,热应激对BDV感染的影响不是由BDV聚合酶活性的增加引起的。与不使用时相比,通过使用热应激在rBDV拯救的初期获得了更多发生BDV复制的细胞。因此,热应激是对已发布的rBDV救援程序的有益改进。目前的发现可能会加速BDV载体系统在基础科学和临床中的实际使用,从而使这种病毒载体得以更广泛地采用,这种病毒载体特别适合于基因向CNS的传递。

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