Aims: To develop infectious (live/dead) enveloped virus test indicators and response surface methodology (RSM) models that evaluate survival of an enveloped ribonucleic acid (RNA) virus on contaminated aircraft materials after exposure to hot, humid air (HHA). Methods and Results: Enveloped RNA bacteriophage Phi6 (Φ6) was dried on wiring insulation, aircraft performance coating (APC), polypropylene, and nylon at ⥠8 log(10) plaque-forming units (PFU) test coupon(-1). Only 2.4 log(10) inactivation was measured on APC at 70°Celsius (°C), 5% relative humidity (RH) after 24 h. In contrast, HHA RSM models showed a 90% probability of a 7 log(10) inactivation at â¥63°C, 90% RH after 1 h, and decontamination kinetics were similar across different materials. HHA decontamination of C-130 and C-17 aircraft showed >7 log(10) and â¥5.9 log(10) inactivation of enveloped virus on 100 and 110 test indicators, respectively, with a 1-h treatment, excluding ramp-up and ramp-down times. Conclusions: Enveloped RNA virus test indicators were successfully developed, lab tested for HHA decontamination, analyzed for RSM, and field-tested in aircraft demonstrations. Significance and Impact of the Study: The utility of HHA decontamination was demonstrated after inactivating enveloped RNA virus on aircraft with a 1-h HHA treatment within aircraft temperature and RH limits.
Hot, Humid Air Decontamination of Aircraft Confirmed That High Temperature and High Humidity Are Critical for Inactivation of Infectious, Enveloped Ribonucleic Acid (RNA) Virus.
对飞机进行高温高湿空气消毒证实,高温高湿对于灭活有包膜的传染性核糖核酸(RNA)病毒至关重要
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作者:Buhr Tony L, Young Alice A, Borgers-Klonkowski Erica, Kennihan Neil L, Barnette Harold K, Minter Zachary A, Bohmke Matthew D, Osborn Emily B, Hamilton Shelia M, Kimani Monique B, Hammon Mark W, Miller Charles T, Mackie Ryan S, Innocenti Jennifer M, Bensman Misty D, Gutting Bradford W, Lilly Samuel D, Hammer Emlyn E, Yates Vanessa L, Luck Brooke B
| 期刊: | Frontiers in Bioengineering and Biotechnology | 影响因子: | 4.800 |
| 时间: | 2020 | 起止号: | 2020 Oct 23; 8:592621 |
| doi: | 10.3389/fbioe.2020.592621 | ||
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