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Sci Rep ; 10(1): 21431, 2020 12 08.
Artículo en Inglés | MEDLINE | ID: mdl-33293534

RESUMEN

In the event of an unpredictable viral outbreak requiring high/maximum biosafety containment facilities (i.e. BSL3 and BSL4), X-ray irradiation has the potential to relieve pressures on conventional diagnostic bottlenecks and expediate work at lower containment. Guided by Monte Carlo modelling and in vitro 1-log10 decimal-reduction value (D-value) predictions, the X-ray photon energies required for the effective inactivation of zoonotic viruses belonging to the medically important families of Flaviviridae, Nairoviridae, Phenuiviridae and Togaviridae are demonstrated. Specifically, it is shown that an optimized irradiation approach is attractive for use in a multitude of downstream detection and functional assays, as it preserves key biochemical and immunological properties. This study provides evidence that X-ray irradiation can support emergency preparedness, outbreak response and front-line diagnostics in a safe, reproducible and scalable manner pertinent to operations that are otherwise restricted to higher containment BSL3 or BSL4 laboratories.


Asunto(s)
Virus ARN/fisiología , ARN Viral/genética , Inactivación de Virus , Rayos X/efectos adversos , Animales , Chlorocebus aethiops , Defensa Civil , Contención de Riesgos Biológicos , Células Nutrientes , Humanos , Método de Montecarlo , Nairovirus/fisiología , Nairovirus/efectos de la radiación , Virus ARN/efectos de la radiación , ARN Viral/efectos de la radiación , Análisis de Secuencia de ARN , Togaviridae/fisiología , Togaviridae/efectos de la radiación , Células Vero , Zoonosis Virales/prevención & control , Virus Zika/fisiología , Virus Zika/efectos de la radiación
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