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Evaluation of adenosine triphosphate test for cleaning assessment of gastroscopes and the effect on workload in a busy endoscopy center.
Schmitt, Cristiane; Pires Maciel, Amanda Luiz; Boszczowski, Icaro; da Silva, Thaís Pereira; Neves, Eliane Aparecida Job; Rossini, Giulio Fabio; Rizek, Camila; Costa, Silvia Figueiredo; Lourenço, Rogério Ferreira; Alfa, Michelle J.
Afiliação
  • Schmitt C; Infection Control Team, Hospital Alemão Oswaldo Cruz, São Paulo State, Brazil. Electronic address: cristianeschmmitt@yahoo.com.br.
  • Pires Maciel AL; Infection Control Team, Hospital Alemão Oswaldo Cruz, São Paulo State, Brazil.
  • Boszczowski I; Infection Control Team, Hospital Alemão Oswaldo Cruz, São Paulo State, Brazil.
  • da Silva TP; Infection Control Team, Hospital Alemão Oswaldo Cruz, São Paulo State, Brazil.
  • Neves EAJ; Infection Control Team, Hospital Alemão Oswaldo Cruz, São Paulo State, Brazil.
  • Rossini GF; Infection Control Team, Hospital Alemão Oswaldo Cruz, São Paulo State, Brazil.
  • Rizek C; University of São Paulo, School of Medicine, Department of Infectious Diseases, Laboratory of Bacteriology (LIM-54), São Paulo State, Brazil.
  • Costa SF; University of São Paulo, School of Medicine, Department of Infectious Diseases, Laboratory of Bacteriology (LIM-54), São Paulo State, Brazil.
  • Lourenço RF; Departamento de Bioquímica, Instituto de Química, Universidade de São Paulo, São Paulo State, Brazil.
  • Alfa MJ; St. Boniface Research Centre, Winnipeg, MB, Canada.
Am J Infect Control ; 46(10): 1110-1114, 2018 10.
Article em En | MEDLINE | ID: mdl-29784442
ABSTRACT

OBJECTIVE:

Using adenosine triphosphate (ATP) tests to assess manual cleaning of gastroscopes and to determine the associated workload in a busy endoscopy unit.

METHODS:

Patient-used gastroscopes were sampled before and after cleaning to assess ATP levels, bioburden, and protein. Samples were collected by flushing 20 mL of sterile water through the biopsy port to the distal end. Time spent for reprocessing and performing the ATP test was recorded.

RESULTS:

Twenty-four samples were collected from 10 gastroscopes. After manual cleaning, 14/24 (58.3%) samples had no microbial growth (mean, 21 colony-forming units/cm2), and in 22/24 (91.7%) samples the protein was undetectable (mean, 0.04 µg/cm2). ATP test was above the cutoff (200 relative light units [RLU]) in 17/24 (70.8%) samples (mean, 498 RLU). After the second cleaning, 11/17 (64.7%) gastroscopes still failed the ATP test (mean, 321.2 RLU). The mean time spent to perform manual cleaning and ATP tests was 16 and 8 minutes, respectively. Hence, each test increased the length of time for cleaning plus testing cleanliness by 50%.

CONCLUSION:

Further studies regarding the optimal cutoff for ATP tests are needed. ATP tests for cleaning monitoring are easy to perform and provide immediate feedback to the team. However, the increased workload needs to be considered.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Trifosfato de Adenosina / Desinfecção / Contaminação de Equipamentos / Carga de Trabalho / Gastroscópios Limite: Humans Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Trifosfato de Adenosina / Desinfecção / Contaminação de Equipamentos / Carga de Trabalho / Gastroscópios Limite: Humans Idioma: En Ano de publicação: 2018 Tipo de documento: Article