Evaluation of sponge wipe surface sampling for collection of potential surrogates for non-spore-forming bioterrorism agents

Author:

Aslett L D1,Calfee M W2ORCID,Monge M3,Abdel-Hady A1,Chamberlain T1,Baartmans R4,Touati A1

Affiliation:

1. Jacobs Technology, Inc. , 600 William Northern Blvd, Tullahoma, TN 37388 , United States

2. Office of Research and Development, US EPA , Research Triangle Park, NC 27711 , United States

3. CSS, Inc. , 10301 Democracy Lane, Suite 300, Fairfax, VA 22030 , United States

4. Intellectechs, Inc. , 195 S. Rosemont Road, Suite 103, VA Beach, VA 23452 , United States

Abstract

Abstract Aim Evaluate the efficacy of sponge wipe sampling at recovering potential bacterial surrogates for Category A and B non-spore-forming bacterial bioterrorism agents from hard, nonporous surfaces. Methods A literature survey identified seven nonpathogenic bacteria as potential surrogates for selected Category A and B non-spore-forming bacterial agents. Small (2 × 4 cm) and large (35.6 × 35.6 cm) coupons made from either stainless steel, plastic, or glass, were inoculated and utilized to assess persistence and surface sampling efficiency, respectively. Three commercially available premoistened sponge wipes (3M™, Sani-Stick®, and Solar-Cult®) were evaluated. Results Mean recoveries from persistence testing indicated that three microorganisms (Yersinia ruckeri, Escherichia coli, and Serratia marcescens) demonstrated sufficient persistence across all tested material types. Sampling of large inoculated (≥107 CFU per sample) coupons resulted in mean recoveries ranging from 6.6 to 3.4 Log10 CFU per sample. Mean recoveries for the Solar-Cult®, 3M™ sponge wipes, and Sani-Sticks® across all test organisms and all material types were ≥5.7, ≥3.7, and ≥3.4 Log10 CFU per sample, respectively. Mean recoveries for glass, stainless steel, and ABS plastic across all test organisms and all sponge types were ≥3.8, ≥3.7, and ≥3.4 Log10 CFU per sample, respectively. Conclusions Recovery results suggest that sponge wipe sampling can effectively be used to recover non-spore-forming bacterial cells from hard, nonporous surfaces such as stainless steel, ABS plastic, and glass.

Funder

U.S. Environmental Protection Agency

Publisher

Oxford University Press (OUP)

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