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1.
Laboratory Animal Research ; : 140-149, 2017.
Article in English | WPRIM | ID: wpr-204550

ABSTRACT

Animal model, as an indispensable tool for scientific purposes of biomedical researches and clinical application, is a commonly used in various researches. Regarding to this, it is necessary to establish the metabolic phenotype of animal model to minimize spurious interpretations and ensure a level of accuracy and reliability adequate for experimental research. However, the metabolic phenotype-related analysis within rodent strains derived from different source is nonexistent, especially in C57BL/6Korl mice and Korl:ICR mice (a domestic mouse strain). To compare the physiological and metabolic phenotypes over a period of time, we utilized the C57BL/6 mice (C57BL/6Korl, A:C57BL/6, and B:C57BL/6) and ICR mice (Korl:ICR, A:ICR, and B:ICR) derived from three different sources. Our data showed that average body weight, body temperature, food intake, and water consumption have a similar tendency among the C57BL/6 and ICR groups, except for the higher body weight of C57BL/6Korl mice over a period of time. Moreover, some significant differences was observed in adipose tissue mass and adipocyte size among the groups, with a higher tendency of C57BL/6Korl mice and Korl:ICR mice. Most importantly, resting metabolic rate (RMR) serves as an approximation of the metabolic phenotype showed no significant difference among the groups of C57BL/6 mice and ICR mice, except for the lower oxygen uptake of C57BL/6Korl mice compare to the A:C57BL/6 mice. Taken together, our data suggest that C57BL/6 mice and ICR mice derived from three different sources have an overall similar feature of physiological and metabolic phenotypes.


Subject(s)
Animals , Mice , Adipocytes , Adipose Tissue , Body Temperature , Body Weight , Drinking , Eating , Mice, Inbred ICR , Models, Animal , Oxygen , Phenotype , Rodentia
2.
Ciênc. rural ; 43(11): 1987-1990, nov. 2013. tab
Article in Portuguese | LILACS | ID: lil-689948

ABSTRACT

O conhecimento do conteúdo energético das operárias é essencial para mensurar a disponibilidade energética, responsável pela manutenção e execução de atividades essenciais para o crescimento da colônia de formigas. Mas pouco se conhece sobre o conteúdo energético das operárias e quanto estará disponível para realizar atividades de, por exemplo, escavar do ninho. O presente estudo determinou o teor de lipídeo e o conteúdo energético das operárias de formigas cortadeiras inativas, antes e pós atividade de escavação. Por meio da determinação do teor de lipídeos, pode-se calcular o conteúdo energético das operárias em repouso (paradas) e compará-las com as que escavaram. O teor de lipídeo e conteúdo energético das operárias foram em média 9,1±0,8% e 111,31±54,71J, respectivamente, entretanto, as séries experimentais não diferiram significativamente. Adicionalmente, a taxa do fluxo catabólico, embasado na massa corporal das operárias foi de 14,76±10,11µW. Conclui-se que o recurso energético para a escavação do ninho não é proveniente de reserva de lipídeos corporal e, dessa forma, o conteúdo energético das operárias não alterou antes e pós-atividade de escavação.


The knowledge of the workers energy content is essential to measure the energy availability for maintenance and performance of activities essences for the colony growth. But little is known about the workers energy content, and how much will be available to carry out activities, for example, the excavation of the nest. The present study determined the lipid content and energy content of the worker ants inactive before and after excavation activity. Through the lipids determination, it can be calculated the energy content of workers resting (standing) with those which excavated. The lipid content and energy content of the workers were on average 9.1±0.8% and energy content of the workers was on average 111.31±54.71J, respectively, however, the experimental series did not differ significantly. Additionally, catabolic flux rate based in workers body mass was 14.76±10.11µW. It was concluded that the energy resource for the excavation of the nest is not coming from reserve lipid body, and thus the energy content of the workers did not change before and after excavation activity.

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