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Non-Invasive Optical Sensor Based Approaches for Monitoring Virus Culture to Minimize BSL3 Laboratory Entry

机译:基于非侵入式光学传感器的方法用于监控病毒培养以最小化BSL3实验室进入

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摘要

High titers of infectious viruses for vaccine and diagnostic reference panel development are made by infecting susceptible mammalian cells. Laboratory procedures are strictly performed in a Bio-Safety Level-3 (BSL3) laboratory and each entry and exit involves the use of  disposable Personnel Protective Equipment (PPE) to observe cell culture conditions. Routine PPE use involves significant recurring costs. Alternative non-invasive optical sensor based approaches to remotely monitor cell culture may provide a promising and cost effective approach to monitor infectious virus cultures resulting in lower disruption and costs. We report here the monitoring of high titer cultures of Human Immunodeficiency Virus-1 (HIV-1) and Herpes Simplex Virus-2 (HSV-2) remotely with the use of optical oxygen sensors aseptically placed inside the cell culture vessel. The replacement of culture media for cell and virus propagation and virus load monitoring was effectively performed using this fluorescent sensor and resulted in half the number of visits to the BSL3 lab (five versus ten).
机译:用于感染疫苗和诊断参考面板开发的高滴度传染性病毒是通过感染易感的哺乳动物细胞而制成的。实验室程序是在生物安全3级(BSL3)实验室中严格执行的,每次进入和退出都涉及使用一次性人员保护设备(PPE)来观察细胞培养条件。日常使用个人防护设备会产生大量的经常性费用。基于替代的基于非侵入性光学传感器的远程监测细胞培养的方法可以提供一种有前途且具有成本效益的方法来监测传染性病毒培养,从而降低破坏和成本。我们在这里报告通过使用无菌放置在细胞培养容器内的光学氧气传感器远程监测人类免疫缺陷病毒-1(HIV-1)和单纯疱疹病毒2(HSV-2)的高滴度培养。使用该荧光传感器可以有效地替换培养基,以进行细胞和病毒的传播以及病毒载量的监测,从而使BSL3实验室的访问次数减少了一半(五次与十次)。

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