Comparison of Four Beddings for Ammonia Control in Individually Ventilated Mouse Cages

Author:

Tataryn Nicholas M1,Buckmaster Cindy A2,Schwiebert Rebecca S2,Swennes Alton G2

Affiliation:

1. Center for Comparative Medicine, Baylor College of Medicine, Houston, Texas;, Email: nicholas.tataryn@bcm.edu

2. Center for Comparative Medicine, Baylor College of Medicine, Houston, Texas

Abstract

Ammonia control is an important characteristic of rodent bedding materials. Among natural bedding materials, corncob bedding provides excellent ammonia control but contains estrogenic compounds and is ingested by mice. By comparison, processed cellulose bedding products are biologically inert and harbor fewer bacteria but historically have shown low absorbency or poor ammonia control. New cellulose products have been developed to address these shortcomings. Over a 2-wk period, we evaluated intracage ammonia levels in mouse IVC using 4 bedding types: shaved aspen, corncob, virgin pelleted cellulose, and refined virgin diced cellulose. Ammonia levels were measured by using 3 methods: colored reagent tubes, colorimetric paper strips, and a photoionization detector. Corncob, pelleted cellulose, and diced cellulose showed better ammonia control than aspen as early as 4 d after cage changing and throughout the 2-wk measurement period. In addition, pelleted and diced cellulose products resulted in lower ammonia levels than corncob at the end of the 14-d cage-change interval. Our data indicate that pelleted or refined diced cellulose are viable alternatives to natural bedding products in IVC to limit the risk of exposure of mice to high ammonia levels.

Publisher

American Association for Laboratory Animal Science

Subject

Animal Science and Zoology

Cited by 9 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A Review of the Effects of Some Extrinsic Factors on Mice Used in Research;Comparative Medicine;2023-12-01

2. Rapid ammonia build-up in small individually ventilated mouse cages cannot be overcome by adjusting the amount of bedding;Lab Animal;2023-05-18

3. Evaluation and Refinement of a Spot-change–only Cage Management System for Mice;Journal of the American Association for Laboratory Animal Science;2022-11-01

4. Identification of Rodent Husbandry Refinement Opportunities through Benchmarking and Collaboration;Journal of the American Association for Laboratory Animal Science;2022-11-01

5. Effect of Bedding Substrates on Blood Glucose and Body Weight in Mice;Journal of the American Association for Laboratory Animal Science;2022-11-01

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