Literature DB >> 17089991

Particulate matter in animal rooms housing mice in microisolation caging.

Gregory L Langham1, Robert F Hoyt, Thomas E Johnson.   

Abstract

Reactions to allergens created by laboratory animals are among the most frequently encountered occupational illnesses associated with research animals. Personnel are exposed to these allergens through airborne particulate matter. Although the use of microisolation caging systems can reduce particulate matter concentrations in rooms housing mice, the operating parameters of ventilated caging systems vary extensively. We compared room air in mouse rooms containing 5 different types of caging: 1) individually ventilated caging under positive pressure with filtered intake air and exhaust air returned to the room (VCR+), 2) individually ventilated caging under negative pressure with exhaust air returned to the room (VCR-), 3) individually ventilated caging under positive pressure with exhaust air returned to the heating, ventilation, and air-conditioning (HVAC) system, 4) individually ventilated caging under negative pressure with exhaust air returned to the HVAC system, and 5) static microisolation cages. We found that rooms under VCR conditions had fewer large particles than did those under other conditions, but the numbers of 0.3 microm particles did not differ significantly among systems. Static, positive or negative pressure applied to caging units as well as route of air exhaust were found to have little influence on the total number of particles in the atmosphere. Therefore, considering the heat load, odor, and overall particulate concentration in the room, placing individually ventilated caging under negative pressure with exhaust air returned to the HVAC system appears to be the optimal overall choice when using microisolation housing for rodents.

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Year:  2006        PMID: 17089991

Source DB:  PubMed          Journal:  J Am Assoc Lab Anim Sci        ISSN: 1559-6109            Impact factor:   1.232


  4 in total

1.  Bedding-generated particulate matter: implications for rodent studies.

Authors:  Neelakshi Hudda; John L Durant; Alexandra Nemeth; Phyllis Mann; Jocelyn Petitto; Douglas Brugge; Benjamin C Nephew
Journal:  Inhal Toxicol       Date:  2019-11-25       Impact factor: 2.724

2.  Disparities in ammonia, temperature, humidity, and airborne particulate matter between the micro-and macroenvironments of mice in individually ventilated caging.

Authors:  Matthew D Rosenbaum; Susan VandeWoude; John Volckens; Thomase Johnson
Journal:  J Am Assoc Lab Anim Sci       Date:  2010-03       Impact factor: 1.232

3.  Evaluation of Various IVC Systems According to Mouse Reproductive Performance and Husbandry and Environmental Parameters.

Authors:  Mitchel G Stover; Jason S Villano
Journal:  J Am Assoc Lab Anim Sci       Date:  2022-01-03       Impact factor: 1.706

4.  Exposure of laboratory animal care workers to airborne mouse and rat allergens.

Authors:  Joshua T Glueck; Richard B Huneke; Hernando Perez; Igor Burstyn
Journal:  J Am Assoc Lab Anim Sci       Date:  2012       Impact factor: 1.232

  4 in total

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