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1.
PLoS One ; 17(5): e0267281, 2022.
Artículo en Inglés | MEDLINE | ID: mdl-35613182

RESUMEN

Mice respond to a cage change (CC) with altered activity, disrupted sleep and increased anxiety. A bi-weekly cage change is, therefore, preferred over a shorter CC interval and is currently the prevailing routine for Individually ventilated cages (IVCs). However, the build-up of ammonia (NH3) during this period is a potential threat to the animal health and the literature holds conflicting reports leaving this issue unresolved. We have therefor examined longitudinally in-cage activity, animal health and the build-up of ammonia across the cage floor with female and male C57BL/6 mice housed four per IVC changed every other week. We used a multicentre design with a standardised husbandry enabling us to tease-out features that replicated across sites from those that were site-specific. CC induce a marked increase in activity, especially during daytime (~50%) when the animals rest. A reduction in density from four to two mice did not alter this response. This burst was followed by a gradual decrease till the next cage change. Female but not male mice preferred to have the latrine in the front of the cage. Male mice allocate more of the activity to the latrine free part of the cage floor already the day after a CC. A behaviour that progressed through the CC cycle but was not impacted by the type of bedding used. Reducing housing density to two mice abolished this behaviour. Female mice used the entire cage floor the first week while during the second week activity in the latrine area decreased. Measurement of NH3 ppm across the cage floor revealed x3 higher values for the latrine area compared with the opposite area. NH3 ppm increases from 0-1 ppm to reach ≤25 ppm in the latrine free area and 50-100 ppm in the latrine area at the end of a cycle. As expected in-cage bacterial load covaried with in-cage NH3 ppm. Histopathological analysis revealed no changes to the upper airways covarying with recorded NH3 ppm or bacterial load. We conclude that housing of four (or equivalent biomass) C57BL/6J mice for 10 weeks under the described conditions does not cause any overt discomfort to the animals.


Asunto(s)
Amoníaco , Vivienda para Animales , Crianza de Animales Domésticos , Animales , Ropa de Cama y Ropa Blanca , Femenino , Masculino , Ratones , Ratones Endogámicos C57BL , Factores de Tiempo
2.
J Endocrinol Invest ; 30(9): 739-46, 2007 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-17993765

RESUMEN

UNLABELLED: Osteoporosis is a severe complication of glucocorticoid treatment. Bisphosphonates are a powerful therapeutic option to prevent osteoporotic fractures. The aims of this study were: a) to determine bone alterations induced by therapy with glucocorticoids (GC); b) to establish the efficacy of risedronate (Ris) in the prevention of these effects. We studied 40 female Sprague-Dawley rats randomly divided into 4 groups of treatment, administered 3 times a week sc: 1. CONTROL: vehicle of methylprednisolone (GC) + vehicle of Ris; 2. Ris: Ris 5 mug/kg body weight vehicle of GC; 3. GC: GC 7 mg/kg + vehicle of Ris; 4. GC+Ris: GC 7 mg/kg, Ris 5 microg/kg. Animals were treated for 30 days and then were sacrificed. Densitometry was performed at baseline and at the end of the treatment. Right tibiae were removed for histomorphometric analyses. The GC group showed a 7% decrease in bone density vs controls (p<0.05), while the GC+Ris group was associated with a 3.5% increase in bone density vs controls (p<0.05). In the GC group, histomorphometric evaluations showed reduced bone volume (BV/TV) and thinning of trabeculae (Tb.Th) vs controls (BV/TV: 31+/-1 vs 35+/-1%, p<0.05; Tb.Th: 43+/-2 vs 50+/-3 microm, p<0.01; Ac.f: 1.8+/-0.2 vs 1.6+/-0.3 N/yr). The GC+Ris group had increased BV/TV and Tb.Th, and reduced Ac.f vs the GC group. Ris also maintained trabecular microarchitecture. At the histological level, glucocorticoid-induced osteoporosis was characterized by decreased bone volume, reduced osteoblastic activity, and deterioration of microarchitecture. Ris counteracted these effects both by prolonging osteoblast activity, and by maintaining bone microarchitecture.


Asunto(s)
Conservadores de la Densidad Ósea/uso terapéutico , Huesos/patología , Ácido Etidrónico/análogos & derivados , Glucocorticoides/efectos adversos , Osteoporosis/inducido químicamente , Osteoporosis/prevención & control , Animales , Densidad Ósea/efectos de los fármacos , Densidad Ósea/fisiología , Conservadores de la Densidad Ósea/farmacología , Resorción Ósea/tratamiento farmacológico , Huesos/efectos de los fármacos , Modelos Animales de Enfermedad , Ácido Etidrónico/farmacología , Ácido Etidrónico/uso terapéutico , Femenino , Osteoblastos/efectos de los fármacos , Osteogénesis/efectos de los fármacos , Osteogénesis/fisiología , Osteoporosis/fisiopatología , Distribución Aleatoria , Ratas , Ratas Sprague-Dawley , Ácido Risedrónico
3.
Waste Manag ; 21(3): 213-9, 2001.
Artículo en Inglés | MEDLINE | ID: mdl-11280511

RESUMEN

This article presents a proposal of methodology for conducting such research and development. The data/statistics waste collection statistics phase must cover geographical distribution, seasonal variations on production rates, waste management practices, current applications and their related costs and revenues. Waste characterisation must be comprehensive with physical, environmental and chemical aspects, including waste variability and waste contamination from shipping, handling and storage activities. Based on the previous results a broad forecast of potential applications must be developed based on very simple rules like minimisation of transportation distances and energy consumption, etc. Marketing evaluation is a very important step, frequently neglected when choosing the best applications for a particular waste. Other steps are product development and performance evaluation. Environmental evaluation of the new technology is very important because not all recycling is environmentally sound. This evaluation must be based on the life cycle assessment (LCA) and has to consider the environmental benefit of avoiding landfill disposal of the waste, and could include leaching or other specific tests or simulations. Also, the technological transference phase must be carefully planned and developed. Each proposed step is discussed, examples are given and needs for further research emphasised.


Asunto(s)
Conservación de los Recursos Naturales , Materiales de Construcción , Eliminación de Residuos , Recolección de Datos , Contaminación Ambiental/prevención & control , Proyectos de Investigación , Transferencia de Tecnología , Administración de Residuos
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