Construction and organization of a BSL-3 cryo-electron microscopy laboratory at UTMB

A unique cryo-electron microscopy facility has been designed and constructed at the University of Texas Medical Branch (UTMB) to study the three-dimensional organization of viruses and bacteria classified as select agents at biological safety level (BSL)-3, and their interactions with host cells. A...

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Veröffentlicht in:Journal of structural biology 2013-03, Vol.181 (3), p.223-233
Hauptverfasser: Sherman, Michael B., Trujillo, Juan, Leahy, Ian, Razmus, Dennis, DeHate, Robert, Lorcheim, Paul, Czarneski, Mark A., Zimmerman, Domenica, Newton, Je T’Aime M., Haddow, Andrew D., Weaver, Scott C.
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Sprache:eng
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Zusammenfassung:A unique cryo-electron microscopy facility has been designed and constructed at the University of Texas Medical Branch (UTMB) to study the three-dimensional organization of viruses and bacteria classified as select agents at biological safety level (BSL)-3, and their interactions with host cells. A 200keV high-end cryo-electron microscope was installed inside a BSL-3 containment laboratory and standard operating procedures were developed and implemented to ensure its safe and efficient operation. We also developed a new microscope decontamination protocol based on chlorine dioxide gas with a continuous flow system, which allowed us to expand the facility capabilities to study bacterial agents including spore-forming species. The new unified protocol does not require agent-specific treatment in contrast to the previously used heat decontamination. To optimize the use of the cryo-electron microscope and to improve safety conditions, it can be remotely controlled from a room outside of containment, or through a computer network world-wide. Automated data collection is provided by using JADAS (single particle imaging) and SerialEM (tomography). The facility has successfully operated for more than a year without an incident and was certified as a select agent facility by the Centers for Disease Control.
ISSN:1047-8477
1095-8657
DOI:10.1016/j.jsb.2012.12.007