• 제목/요약/키워드: ractopamine

검색결과 8건 처리시간 0.018초

Effect of dietary ractopamine supplementation on growth performance, meat quality and fecal score in finishing pigs

  • Hoque, Md-Raihanul;Im, Yu-Mi;Kim, In Ho
    • 농업과학연구
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    • 제47권4호
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    • pp.707-715
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    • 2020
  • An experiment was designed to assess ractopamine supplementation on growth, meat quality and carcass, and fecal scores of pigs. The 96 crossbred pigs ([Yorkshire× Landrace] × Duroc) had an average body weight of 72.8 ± 2.5 kg. Randomized allocation was followed in the allotment of the pigs according to their body weight into 1 of 2 dietary treatments: 1) CON, basal diet and 2) RAC (ractopamine hydrochloride), CON + 1% ractopamine with 12 replication pens per treatment including equal numbers of barrows (2) and gilts (2) per pen. At the end of the experiment, the lean meat percentage was higher (p < 0.05) for the RAC group compared to the CON group. Dietary ractopamine supplementation did not influence (p > 0.05) the growth performance and fecal score throughout the experimental period. In regard to sensory evaluation, higher (p < 0.05) scores for color and firmness were observed in the RAC group than in the CON group. Drip loss (p < 0.05) was higher in the ractopamine fed diet group compared to the control diet group at day 1. Additionally, longissimus muscle was improved (p < 0.05) in the ractopamine treated diet group than in the control diet group. In conclusion, in the early stage, ractopamine supplementation may not influence the growth performance, but it improves the leanness in the meat of finishing pigs.

Muscle Fiber Number and Growth Performance of Pigs from Sows Treated with Ractopamine

  • Hoshi, E.H.;Fonseca, N.A.N.;Pinheiro, J.W.;Bridi, A.M.;Silva, C.A.
    • Asian-Australasian Journal of Animal Sciences
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    • 제18권10호
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    • pp.1492-1497
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    • 2005
  • The goal of the trial was to evaluate the effects of ractopamine (20 ppm in the ration) given pregnant sows during three different pregnancy stages (T1: 25 to 50 d; T2: 50 to 80 d; T3: 25 to 80 d of gestation, and T4: control-no ractopamine) on fetal muscle development (through counts of the number of fibers of the semitendinosus muscle), on the growth and carcass characteristics of the progeny. Forty eight weaned piglets (12 per treatment) were assessed for number of muscle fibers, while performance and carcass characteristics were evaluated on a separate 48 animals (12 per treatment) grown to 100 kg. Animals produced by sows treated from 25 to 50 d of pregnancy (T1) resulted in non-significant increase of 6.85% in the number of muscle fibers in the semitendinosus muscle when compared to animals from the control group. Performance results were significantly different (p<0.05), and animals produced by sows from the T1 group gained more weight during the growth I stage (25 to 50 kg) and during the total period (6 to 100 kg) (991 vs. 903 grams, and 844 vs. 772 grams, respectively) when compared to controls. For carcass characteristics, results showed that animals produced by the T1 group of sows were heavier at slaughter (p<0.05) when compared to the controls (T4) (100.17 vs. 93.09 kg). There was a positive correlation between number of muscle fibers and bodyweights, carcass weights, Longissimus dorsi muscle depth and dressing out (0.80, 0.86, 0.67, and 0.50, respectively). Sows treated with ractopamine between 25 to 50 d of pregnancy produced piglets that performed better and had superior carcass characteristics than those produced by untreated sows. The ractopamine used for pregnancy sows (25 to 50 d) can be indicated as a device to increase the progeny performance.

Development and Application of a Method for Rapid and Simultaneous Determination of Three β-agonists (Clenbuterol, Ractopamine, and Zilpaterol) using Liquid Chromatography-tandem Mass Spectrometry

  • Sung, In Kyung;Park, Seo Jung;Kang, Kyutae;Kim, Min Young;Cho, Seongbeom
    • 한국축산식품학회지
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    • 제35권1호
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    • pp.121-129
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    • 2015
  • ${\beta}$-agonists are anabolic compounds that promote fat loss and muscle gain, and their administration to livestock may provide economic benefits by increasing growth rate and feed efficiency. For these reasons, ${\beta}$-agonists are also commonly added to livestock feed as growth promoters. This can introduce a significant risk of secondary human poisoning through intake of contaminated meat. A new method for the simultaneous determination of three ${\beta}$-agonists (clenbuterol, ractopamine, and zilpaterol) was developed in this study and applied to various meat samples. The limits of quantification, derived through a validation test following Codex guidelines, were $0.2{\mu}g/kg$ for clenbuterol and zilpaterol, and $0.4{\mu}g/kg$ for ractopamine. The average recoveries for clenbuterol, ractopamine, and zilpaterol ranged from 109.1% to 118.3%, 95.3% to 109.0%, and 94.1% to 120.0%, respectively. The recovery and coefficient of variation (CV) values fell within the acceptable range according to the Codex guidelines. This method reduced the analysis time without decreasing detection efficiency by modifying the pretreatment steps. This method could be utilized to manage the safety of imported meat products from countries where zilpaterol use is still permitted, thereby improving public health and preventing ${\beta}$-agonist poisoning due to secondary contamination.

LC-MS/MS를 이용한 축산물 중 clenbuterol과 ractopamine의 동시 분석법 개선 (Improvement of an Simultaneous Determination for Clenbuterol and Ractopamine in Livestock Products using LC-MS/MS)

  • 조윤제;채영식;김재영;김형수;강일현;도정아;오재호;권기성;장문익
    • 한국식품과학회지
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    • 제45권1호
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    • pp.25-33
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    • 2013
  • 동물용의약품은 2007년부터 급격한 잔류허용기준 신설에 따라 많은 수의 분석법도 함께 신설하였으며, 국제식품규격위원회(CODEX), EU 등에서 동물용의약품에 대한 기준이 국제적으로 엄격해지고 있어, 낮은 농도의 정량한계 및 재현성이 높은 분석법이 요구되어지고 있다. 하지만 국내 식품공전에서의 클렌부테롤 및 락토파민 분석법은 각각 개별 분석법으로 나뉘어져 있고, 시간적 및 경제적으로 손실이 있을 뿐 아니라 추출 효율 및 재현성이 낮아 분석에 어려움이 있다. 따라서 본 연구는 물리화학적 특성이 유사한 ${\beta}$-agonist계 동물용의약품인 클렌부테롤 및 락토파민의 기존 개별 분석법을 동시 분석법으로 개선하고 검사 효율성을 증대시키고자 하였다. 분석에 사용된 검체는 소와 돼지의 근육을 이용하였다. 검체에 내부표준물질인 클렌부테롤-$d_9$과 락토파민-$d_3$을 각각 첨가하고 ${\beta}$-글루쿠로니다제/아릴설파타제 효소를 사용하여 가수분해한 후 에틸아세테이트로 추출하였다, 추출액을 농축한 후 헥산과 메탄올을 포화시킨 용매를 적용하여 지방 제거과정을 거친 뒤 MIP 카트리지로 정제한 후 액체크로마토그래피-질량분석기(LC-MS/MS)에 주입하였다. 기기분석은 ESI(Electro-Spray Ionization) 및 positive MRM(Multiple Reaction Monitoring) 모드로 하였고, 검증은 CODEX 가이드라인 규정에 따라 실시하였다. 그 결과, 클렌부테롤과 락토파민의 LOQ는 각각 0.2 및 0.5 ${\mu}g/kg$ 수준이었고, 평균회수율은 각각 104.2-113.5% 및 107.6-118.1%로 나타났다. 또한, 분석오차는 각각 2.8-10.5% 및 1.6-5.2%로 CODEX 가이드라인 규정에 만족하는 수준이었다. 따라서 개선된 동시 분석법은 잔류동물용의약품의 분석에 있어 보다 신속하고 경제적인 분석 및 모니터링에 적용 가능할 것으로 기대된다.

Expression of Codon Optimized β2-Adrenergic Receptor in Sf9 Insect Cells for Multianalyte Detection of β-Agonist Residues in Pork

  • Liu, Yuan;Wang, Jian;Liu, Yang;Yang, Liting;Zhu, Xuran;Wang, Wei;Zhang, Jiaxiao;Wei, Dong
    • Journal of Microbiology and Biotechnology
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    • 제29권9호
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    • pp.1470-1477
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    • 2019
  • ${\beta}_2$-adrenergic receptor (${\beta}_2-AR$) was expressed efficiently using Bac-to-Bac Baculovirus Expression System in Sf9 cells as a bio-recognition element for multianalyte screening of ${\beta}$-agonist residues in pork. Sf9 cells were selected as the expression system, and codon optimization of wild-type nucleic acid sequence and time-dependent screening of expression conditions were then carried out for enhancing expression level and biological activity. Under optimum conditions of multiplicity of infection (MOI) = 5 and 48 h post transfection, the protein yield was up to 1.23 mg/ml. After purification by chromatographic techniques, the purified recombinant protein was applied to develop a direct competitive enzyme-linked receptor assay (ELRA) and the efficiency and reliability of the assay was determined. The IC50 values of clenbuterol, salbutamol, and ractopamine were 28.36, 50.70, and $59.57{\mu}g/l$, and clenbuterol showed 47.61% and 55.94% cross-reactivities with ractopamine and salbutamol, respectively. The limit of detection (LOD) was $3.2{\mu}g/l$ and the relevant recoveries in pork samples were in the range of 73.0-91.2%, 69.4-84.6%, and 63.7-80.2%, respectively. The results showed that it had better performance compared with other present nonradioactive receptorbased assays, indicating that the genetically modified ${\beta}_2-AR$ would have great application potential in detection of ${\beta}$-agonist residues.

Welfare traits of Bos indicus cattle castrated immunologically and fed beta-adrenergic agonists

  • Martello, Luciane Silva;Antonelo, Daniel Silva;Consolo, Nara Regina Brandao;Pacheco, Veronica Madeira;Negrao, Joao Alberto;Rosa, Alessandra Fernandes;Leme, Paulo Roberto;Sousa, Rafael Vieira;Silva, Saulo da Luz
    • Animal Bioscience
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    • 제34권9호
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    • pp.1552-1558
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    • 2021
  • Objective: This work was carried out to evaluate the effects of zilpaterol hydrochloride (ZH) and ractopamine hydrochloride (RH) combined with immunocastration on the welfare traits of feedlot Nellore cattle. Methods: Ninety-six Nellore males (average body weight [BW] = 409±50 kg; average 20 mo of age) were divided into two groups according to BW; half of the animals in each group received two doses of an immunocastration (ImC) vaccine in a 30 day interval, and the other half did not receive the vaccine (NoC). Afterward, the animals were housed and fed a common diet for 70 days. Then, they were split into three groups and fed one of the following diets for 30 additional days: control (CO) diet, with no β-AA; ZH diet, containing 80 mg/d ZH; and RH diet, containing 300 mg/d RH. Welfare traits were assessed by monitoring body surface temperature using infrared thermography (IRT) and plasma cortisol and temperament measurements. Results: There was no interaction between sexual condition and diet for any trait. The ImC and NoC groups did not differ in rectal and ocular temperatures. The ImC animals had higher flight speeds (p = 0.022) and tended to have higher cortisol levels (p = 0.059) than the NoC animals. Animals fed ZH and RH did not differ in cortisol levels, respiratory rate, rectal temperature, temperature measured by IRT, or temperament behaviour. Conclusion: The ImC animals showed a less stable temperament during handling practices than NoC, whereas ZH and RH supplementation had no adverse effects on animal welfare.

식육에서 베타아고니스트계 약물 잔류 연구 (Monitoring for β-agonist residues in raw meat in Seoul)

  • 최윤화;김미란;김영섭;이주형
    • 한국동물위생학회지
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    • 제40권1호
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    • pp.79-82
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    • 2017
  • We investigated the residues of ${\beta}-agonist$ (zilpaterol, ractopamine and clenbuterol) using LC-MS/MS in raw meat in Seoul. The recoveries ranged between 76.7~89.9% in beef respectively. The limits of detection were $0.01{\sim}0.09{\mu}g/kg$ and the limits of quantification were $0.03{\sim}0.28{\mu}g/kg$ respectively. Residues of ${\beta}-agonist$ drugs which exceeded maximum residue limits (MRL) were not exceed in any of the 267 samples.

LC-MS/MS를 이용한 축·수산물 중 β-agonist계 시험법 개발 및 검증 (Development and Validation of an Analytical Method for β-Agonists in Livestock and Fishery Products Using LC-MS/MS)

  • 이태호;김유라;박수정;김지영;최장덕;문귀임
    • 한국환경농학회지
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    • 제41권2호
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    • pp.135-151
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    • 2022
  • BACKGROUND: The β-agonists known as phenyl ethanolamine derivatives have a conjugated aromatic ring with amino group. They are used as tocolytic agents and bronchodilator to human and animal generally, and some of them are used as growth promoters to livestock. METHODS AND RESULTS: β-agonists in samples were extracted by 0.4 N perchloric acid and ethyl acetate. The target compounds were analyzed by liquid chromatography-electrospray tandem mass spectrometry (LC-ESI-MS/MS). Validation of method was performed according to CODEX guidelines (CAC/GL-71). The matrix matched calibration gave correlation coefficients>0.98, and the obtained recoveries were in the range of 62.0-109.8%, with relative standard deviation ≤ 20.1%. In addition, a survey was performed to inspect any residual β-agonist from 100 samples of livestock and fishery products and ractopamine was detected in one of the 100 samples. CONCLUSION(S): In this study, we established the analytical method for β-agonists through using the expanded target compounds and samples. And we anticipate that the established method would be used for analysis to determine veterinary drug residues in livestock and fishery products.