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1.
J. venom. anim. toxins incl. trop. dis ; 25: e148718, 2019. tab, graf
Article in English | LILACS, VETINDEX | ID: biblio-1002499

ABSTRACT

Ruminant feed containing animal byproduct proteins (ABPs) is prohibited in many countries due to its risk of transmitting prion diseases (PD). In most cases the entire herd is sacrificed, which causes great harm to the producer countries by preventing their exportation of ruminant derived-products. Methods: We used stable isotope ratio mass spectrometry (IRMS) of carbon (13C/12C) and nitrogen (15N/14N) to trace the animal protein in the blood of 15 buffaloes (Bubalus bubalis) divided into three experimental groups: 1 - received only vegetable protein (VP) during 117 days; 2 - received animal and vegetable protein (AVP); and 3 - received animal and vegetable protein with animal protein subsequently removed (AVPR). Groups 2 and 3 received diets containing 13.7% bovine meat and bone meal (MBM) added to a vegetable diet (from days 21-117 in the AVP group and until day 47 in the AVPR group, when MBM was removed). Results: On the 36th day, differences were detectable in the feeding profile (p <0.01) among the three experimental groups, which remained for a further 49 days (85th day). The AVPR group showed isotopic rate reversibility on the 110th day by presenting values similar to those in the control group (VP) (p> 0.05), indicating that it took 63 days to eliminate MBM in this group. Total atoms exchange (> 95%) of 13C and 15N was observed through incorporation of the diet into the AVP and AVPR groups. Conclusions: IRMS is an accurate and sensitive technique for tracing the feeding profile of ruminants through blood analysis, thus enabling investigation of ABP use. enabling investigation of ABP use.(AU)


Subject(s)
Animals , Cattle , Mass Spectrometry , Ruminants , Multivariate Analysis , Encephalopathy, Bovine Spongiform , Prion Diseases , Plant Proteins, Dietary
2.
Ciênc. rural ; 44(8): 1472-1478, 08/2014. tab, graf
Article in Portuguese | LILACS | ID: lil-721433

ABSTRACT

Este trabalho objetivou determinar o turnover do carbono no Pectoralis major, quilha, tíbia e fígado de frangos de corte em seus diferentes períodos de crescimento, utilizando a técnica dos isótopos estáveis. Foram utilizados 216 pintos de corte, machos, Cobb. O delineamento experimental foi inteiramente casualizado e consistiu de sete tratamentos com dias de substituição das dietas distintos: 0; 7; 14; 21; 28; 35; 42 dias de idade. Para mensurar o turnover do carbono nos tecidos em determinado intervalo de tempo, foi utilizado o modelo sigmoidal de regressão de Boltzmann ou função exponencial do tempo. Os valores de meias-vidas foram: 2,5; 2,8; 2,9; 4,9; 5,1; 5,5 e 6,0 dias para músculo peitoral; 2,7; 2,9; 3,1; 4,6; 5,3; 4,1 e 8,0 dias para quilha; 4,4; 3,6; 5,4; 5,8; 4,3; 5,2 e 6,3 dias para tíbia e 1,3; 1,9; 1,4; 1,5; 1,9; 1,7 e 2,1 dias para fígado, nos tratamentos T1, T2, T3, T4, T5, T6 e T7, respectivamente. Pode-se concluir que a tíbia possui metabolismo lento e pode indicar o sinal isotópico das dietas iniciais da criação dos frangos de corte; e o fígado, metabolismo rápido, indicado para refletir a dieta próxima da fase de avaliação.


The aim of this study was to evaluate carbon turnover on muscle tissue Pectoralis major, keel, tibia and liver of poultry at different life stages using the carbon stable isotopes technique. 216 male chick lings (Cobb) were used. The trial was conduced in a totally random distribution consisting on seven treatments with distinct days for diet substitution (0, 7, 14, 21, 28, 35, 42 days old). Either Boltzmann sigmoid regression or the exponential time function were used in order to measure the carbon isotopic turnover in a specific period of time. The half-life were: 2.5; 2.8; 2.9; 4.9; 5.1; 5.5 e 6.0 day on muscle tissue; 2.7; 2.9; 3.1; 4.6; 5.3; 4.1 e 8.0 day on keel; 4.4; 3.6; 5.4; 5.8; 4.3; 5.2 e 6.3 day on tibia and 1.3; 1.9; 1.4; 1.5; 1.9; 1.7 and 2.1 day on liver, for to treatments T1, T2, T3, T4, T5, T6 e T7 respectively. According to the results of this study, it is possible to conclude that the tibia has slowest metabolism and may indicate the isotopic signature of initial diets of poultry culture. The fast metabolism tissue, liver, is appropriated to reflect the diets fed at closer period of evaluation.

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