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1.
采用高效液相色谱法检测猪组织(肌肉、肝脏、肾脏)和血浆中的土霉素(OTC)残留量,通过对饲料中土霉素添加量和组织、血浆中土霉素残留量回归关系不同数学模型的分析,确立残留分布规律的最佳数学模型.饲料中土霉素的添加量在30~70 μg/g范围内,饲料添加量与猪组织(肌肉、肾脏、肝脏)、血浆的残留教学模型分别为:y=0.0096x-0.1727;y=0.165e0.0235x;y=0.4062e0.0115x;y=0.2428lnx-0.7284.通过对猪活体血浆样品的检测,根据建立的最佳残留数学模型,可算出饲料中土霉素的添加量和肌肉、肾脏、肝脏中土霉素的残留量.从而提供实现间接活体残留监测数学分析模型.  相似文献   

2.
采用高效液相色谱法检测猪肌肉、肾脏、肝脏和血浆中的磺胺二甲嘧啶残留量,通过对饲料中磺胺二甲嘧啶添加量和组织、血浆中残留量回归关系不同数学模型的分析,确立残留分布的规律的最佳数学模型.饲料中SM2的添加量在100~300μg/g的范围内,饲料添加量与猪组织(肌肉、肾脏、肝脏)、血浆的残留数学模型分别为:y=0.241 6e0.006 1x;y=1.9691e0.002 5x;y=3.049 5e0.001 9x;y=4.386 2e0.003 7x.通过对猪活体血浆样品的检测,根据建立的最佳残留数学模型,可算出饲料中磺胺二甲嘧啶的添加量和肌肉、肾脏、肝脏中磺胺二甲嘧啶的残留量,实现活体的监测.  相似文献   

3.
试验采用高效液相色谱法检测猪组织(肌肉、肝脏、肾脏)和血浆中的金霉素残留量,通过对饲料中金霉素添加量和组织、血浆中金霉素残留量回归关系不同数学模型的分析,确立残留分布的规律最佳数学模型。饲料中金霉素的添加量在50~150μg/g的范围内饲料添加量与猪组织(肌肉、肾脏、肝脏)、血浆的残留数学模型分别为:y=0.5535e0.0072x;y=1.666e0.0116x;y=4.4048ln(x)-14.669;y=1.4527e0.0092x。  相似文献   

4.
采用高效液相色谱法检测猪肌肉、肾脏、肝脏和血浆中的磺胺二甲嘧啶(Sulfamethazinum,SM2)残留量.通过对饲料中SM2添加量和组织、血浆中残留量回归关系不同数学模型的分析,确立残留分布规律的最佳数学模型.饲料中SM2的添加量在100~300μg/g的范围内,饲料添加量与猪组织(肌肉、肾脏、肝脏)、血浆中的残留数学模型分别为:y=0.241 6 e0.0061x,y=1.969 1 e0.0025x,y=3.049 5 e0.0019x,y=4.386 2 e0.0037x.通过对猪活体血浆样品的检测,根据建立的最佳残留数学模型,可算出饲料中SM2的添加量和肌肉、肾脏、肝脏中SM2的残留量,实现活体的监测.  相似文献   

5.
《畜牧与兽医》2019,(12):61-65
旨在研究脱氢醋酸钠作为饲料防霉剂应用后在猪组织中的残留消除。选用33只健康杜长大三元杂交猪,200 mg/kg脱氢醋酸钠拌料饲喂1个月。分别于停药1~21 d的不同时间取肌肉、肝脏、肾脏和脂肪组织, HPLC法测定脱氢醋酸钠含量。结果表明,脱氢醋酸钠在猪肾脏和肝脏组织中的残留水平较高,肌肉次之,脂肪中最少。休药1 d时,猪肾脏、肝脏、肌肉和脂肪中的平均残留量分别为1.12 mg/kg、1.06 mg/kg、0.59 mg/kg和0.21 mg/kg;脱氢乙酸钠在组织中的含量低于定量限0.2 mg/kg水平所需要的休药时间分别为:肌肉6 d、肝脏11 d、肾脏13 d、脂肪1 d后。脱氢乙酸钠在猪不同组织中的残留消除半衰期分别为:肌肉6.7 d、肝脏7.2 d、肾脏9.1 d、脂肪5.4 d。上述结果显示,脱氢乙酸钠在猪组织中的残留消除相对较快,组织残留量均低于1.2 mg/kg。  相似文献   

6.
试验采用高效液相色谱法检测猪组织(肌肉、肝和肾)中的金霉素、土霉素、磺胺二甲嘧啶和喹乙醇残留量,通过对饲料中4种药物添加量和组织中残留量的分析,研究其残留规律.结果表明,在药物的添加范围内,猪组织中磺胺二甲嘧啶的残留规律为肝>肾>肌肉;金霉素的残留规律为肾>肝>肌肉;土霉素的残留规律为肝>肾>肌肉;喹乙醇的残留规律为肝>肾>肌肉.  相似文献   

7.
研究脱氢乙酸钠作为饲料防霉剂在鸡组织中的残留消除,为其在鸡组织中的残留监控及休药期的制定提供理论依据。黄羽肉鸡连续饲喂200 mg/kg脱氢乙酸钠30 d后,于不同时间分别取肌肉、肝脏、肾脏和皮脂样品,采用反相高效液相色谱(HPLC)方法测定样品中脱氢乙酸钠含量。休药1 d时,鸡肾脏、肝脏、肌肉和皮脂中脱氢乙酸钠残留量分别为0.68、0.59、0.34和0.20 mg/kg。随着休药时间延长,各组织中脱氢乙酯钠的残留量逐渐降低,脱氢乙酸钠在肉鸡各组织中的残留水平依次为肾脏、肝脏、肌肉和皮脂。在组织中的残留消除半衰期分别为肾脏5.86 d、肝脏6.02 d、肌肉8.88 d及皮脂为10.38 d。若以0.2 mg/kg为临时最大残留限量(MRLs),则脱氢乙酸钠在鸡不同组织中的休药期分别为肾脏12.37d、肌肉9.37 d、肝脏9.18 d、皮脂4.16 d。得出结论:200 mg/kg脱氢乙酸钠拌料饲喂肉鸡30 d,在肉鸡各组织中的残留水平较低,均低于0.7 mg/kg;残留消除相对较快。  相似文献   

8.
为了研究替米考星预混剂在猪体内残留消除规律,试验采用400 mg/kg替米考星预混剂饲喂猪,饲喂过程中及饲喂后不同时间取猪肌肉、肝脏和肾脏,用高效液相色谱法检测替米考星浓度。结果表明:饲喂期间,猪肌肉、肝脏、肾脏中替米考星含量在0.1~1.5μg/g之间,停药14天猪肌肉、肝脏和肾脏中替米考星含量已经降到最高残留限量以下。  相似文献   

9.
试验通过高效液相色谱-质谱联用法研究血根碱在鸡、鸭及猪肝脏、肾脏和肌肉中的残留状况,为血根碱预混剂作为植物源饲料添加剂使用的安全性提供依据与参考。采用单因素试验设计,试验一和试验二分别选取40日龄三黄鸡和60日龄攸县麻鸭各30只,分为对照组(基础饲粮)、高剂量组(基础饲粮+80 mg/kg血根碱预混剂)、低剂量组(基础饲粮+40 mg/kg血根碱预混剂),饲喂30 d后屠宰,取其肝脏、肾脏和肌肉样品,测定其中血根碱残留量;试验三选取20头80 kg左右健康杜×长×大三元杂交生长猪20头,分为对照组(基础饲粮)和试验组(基础饲粮+80 mg/kg血根碱预混剂),试验期为30 d,试验结束当天屠宰取其肝脏、肾脏和肌肉样品,测定其中血根碱残留量。试验一结果表明,高剂量组和低剂量组鸡的肝脏、肾脏和肌肉中血根碱残留量均低于定量限5 ng/g,对照组无血根碱残留;试验二结果显示,高剂量组和低剂量组的鸭肝脏、肾脏和肌肉中血根碱残留量均低于定量限5 ng/g,对照组无血根碱残留;试验三结果表明,试验组猪肝脏、肾脏及肌肉中血根碱残留量均小于定量限5 ng/g,对照组无血根碱残留。在本试验的血根碱添加量和测定方法条件下,鸡、鸭和猪脏器和肌肉中血根碱的残留量均低于5 ng/g。  相似文献   

10.
马杜霉素在鸡组织中残留消除及临床毒性的研究   总被引:13,自引:0,他引:13  
本文报道以3.0、5.0、7.0和9.0mg/kg马杜霉素剂量水平添加到饲料中饲喂AA肉鸡,研究马杜霉素对肉鸡的毒性作用及其在鸡组织中的残留消除。从临床症状、增重与饲料转化、死亡率、血清生化参数以及组织病理学等方面研究结果表明,饲料中添加3.0-5.0mg/kg剂量马杜霉素对肉鸡是安全的,未见任何毒副作用,而7.0-9.0mg/kg剂量则引起肉鸡中毒,中毒表现为,增重和饲料转化率明显下降,血清AST异常升高,心脏和肝脏出现病理变化。残留消除研究表明,马杜霉素主要残留于肉鸡的脂肪和肝脏,其次是肾脏,肌肉中残留最少。马杜霉素以5.0mg/kg剂量添加于饲料中饲喂肉鸡,停药2-3d,肉鸡组织中马杜霉素的残留量低于最高残留限量的规定。.  相似文献   

11.
喹乙醇在鲫体内消除规律的研究   总被引:1,自引:0,他引:1  
报道了鲫单剂量口灌50mg/kg喹乙醇在血浆、肌肉和肝胰脏中消除规律的研究。用乙腈-乙酸乙酯(1/1:V/V)提取组织中的喹乙醇,血浆中喹乙醇用3%的三氯乙酸沉淀蛋白,乙酸乙酯和磷酸盐缓冲液提取喹乙醇代谢物3-甲基喹嗯啉-2-羧酸,超高效液相色谱串联质谱法测定血浆及组织中喹乙醇及其代谢物的浓度。鲫单剂量口灌喹乙醇50mg/kg后,在血浆、肌肉和肝胰脏中的喹乙醇随着时间的延长呈现不同浓度的降解趋势。喹乙醇在血浆中的消除需要4d,在肌肉和肝胰脏中需要7d;喹乙醇的代谢物3-甲基喹嗯啉-2-羧酸在鲫体内消除比较缓慢,肌肉中需要15d,肝胰脏中需要20d。  相似文献   

12.
研究灰黄霉素在家兔组织中的分布及消除规律,为灰黄霉素用于治疗家兔真菌病的安全性评价提供依据。选择42只新西兰白兔,于饲料中添加灰黄霉素(800g/1000kg)混饲,连续饲喂14d,分别于停药后1、3、5、7、9、14、21d,各处死6只,取其肝、肾、肌肉、皮肤及脑组织。以盐酸普萘洛尔为内标,二氯甲烷提取后用高效液相色谱-串联质谱仪(HPLC—MS/MS)进行各种组织中灰黄霉素浓度分析。结果显示,连续用药14d后,灰黄霉素在家兔组织中的分布情况为:肝组织浓度最高(134.61μg/kg),肾组织次之(54.09μg/kg),脑组织浓度最低(未检出);停药后,随着时间的延长,灰黄霉素在肌肉、肝、肾和皮肤组织中的浓度逐渐下降,且在肝脏中的消除速度最快,停药21d后,灰黄霉素在肾组织中浓度为3.39μg/kg,在肝组织中浓度为12.36μg/kg,其他组织低于定量限或未检出。建议家兔生产中慎用灰黄霉素。  相似文献   

13.
按照年龄、体重、性别等相近的原则选取日龄和体重相似的72头杜长大三元猪,配对随机分为4组,每组18头,组内设三个重复,每个重复6头仔猪(3♂+3♀)。4个组分别在基础日粮中添加0mg/kgGABA(对照组)、50mg/kgGABA(试验Ⅰ组)、100mg/kgGABA(试验Ⅱ组)和120mg/kgGABA(试验Ⅲ组)。预试期7d,试验期30d。试验结果表明:在育肥猪日粮中添加50mg/kg、100mg/kg和120mg/kgGABA,日增重分别比对照组提高8.09%(P〉0.05)、13.47%(P〈0.05)和11.41%(P〈0.05),降低料肉比5.98%(P〉0.05)、7.17%(P〈0.05)和5.58%(P〈0.05);各试验组可以提高血清中总蛋白(TP)的含量(P〉0.05)和葡萄糖(GLU)的含量(P〈0.05),同时降低血清中尿素氮(SUN)的水平(P〈0.05);日粮中添加50mg/kg、100mg/kg和120mg/kgGABA平均每头猪净收入分别比对照组多j2.97元/头、51.19元/头和19.15元/头。GABA能明显提高育肥猪的日增重和饲料转化率,改善育肥猪的营养物质的代谢效率。综合提高养猪的经济效益,因此在育肥猪日粮中添加GABA具有重要的现实意义。  相似文献   

14.
The objective of this experiment was to explore the effects of different sources and levels of selenium (Se) on growth performance and tissue Se content of 10~11 months porcupine.Eighty and 10-month-old porcupine with a similar body weight were assigned to 5 groups with 8 replicates of 2 porcupines each.The porcupine were fed a basal diet without Se complementation (control group) or the basal diet adding 0.30 mg/kg Se in the form of sodium selenite (group Ⅰ),0.20 mg/kg Se in the form of yeast selenium (group Ⅱ),0.30 mg/kg Se in the form of yeast selenium (group Ⅲ) and 0.30 mg/kg mixed Se (0.15 mg/kg sodium selenite and 0.15 mg/kg yeast selenium)(group Ⅳ),respectively.The pre-test period lasted for 7 days and the trial period lasted for 45 days.The results showed that compared with the control group,there was no significant differences in the average daily feed intake (ADFI) in each group (P>0.05),the average daily gain (ADG) in groups Ⅱ and Ⅲ was significantly increased (P<0.05),the feed/gain (F/G) in group Ⅲ was significant decreased (P<0.05).Compared with the control group,the concent of Se in liver and muscle of group Ⅲ was extremely significantly increased (P<0.01),the content of Se in liver and muscle of groups Ⅱ and Ⅳ was also significantly increased (P<0.05 or P<0.01),and there was no significant difference in group Ⅰ(P>0.05).In conclusion,the basal diet supplemented with yeast selenium could improve the growth performance and increase the tissue Se concent in 10~11 months porcupine,and adding 0.30 mg/kg yeast selenium had the best effect.  相似文献   

15.
建立了猪肝脏、肾脏、肌肉和脂肪中盐酸沃尼妙林的高效液相色谱检测方法并研究盐酸沃尼妙林预混剂在猪体内各组织中的残留消除规律。对24头健康猪以200mg/kg的剂量混饲给药21d。在停药后0、6、12、18、24、36h分别宰杀4头猪,采集各组织进行药物残留测定。方法的检测限为0.025~0.062 5μg/g,定量限为0.05~0.1μg/g,肝脏的平均回收率为75.5%~76.4%,变异系数为2.3%~3.8%;肾脏的平均回收率为75.8%~78.5%,变异系数为4.1%~6.0%;肌肉的平均回收率为79.3%~80.0%,变异系数为3.0%~4.7%;脂肪的平均回收率为76.7%~77.3%,变异系数为3.3%~5.4%。结果表明,盐酸沃尼妙林在肝脏中残留量最高,肾脏其次;肌肉和脂肪中的残留量显著低于肝脏和肾脏,停药24h时,残留量低于定量限;停药36h时残留量均低至检测限以下。盐酸沃尼妙林预混剂在猪组织中消除迅速,建议休药期为2d。  相似文献   

16.
The pharmacokinetics of monensin including apparent volume of distribution, total body clearance, systemic bioavailability, partition coefficients and tissue residues were determined in chickens. The drug was given by intravenous injection in the left wing vein at the dose of 0.46 mg/kg and by intracrop administration at the dose of 4 mg/kg according to a destructive sampling. The pharmacokinetic variables were compared after noncompartmental, naïve averaged, naïve pooled and nonlinear mixed-effects modelling analyses. Partition coefficients and tissue residues were determined after a treatment with feed additives (125 mg/kg of feed) of 33 days. The clearance, volume of distribution and bioavailabilty were approximately 2.2 L/h/kg, approximately 9 L/kg and approximately 30% respectively except with nonlinear mixed effects models that presented values of 1.77 L/h/kg, 14.05 L/kg and 11.36% respectively. Tissue/plasma partition coefficients were estimated to 0.83, 3.39 and 0.51 for liver, fat and thigh muscle respectively. Monensin residues after treatment were not detected 6 h after withdrawal except for fat where monensin was still quantifiable 12 h after. Pharmacokinetic variables seem to be inaccurate when assessed with non linear mixed-effects modelling associated to destructive sampling in chickens. Values varied slightly with noncompartmental, naïve averaged and naïve pooled analyses. The absorption, elimination and partition parameters will be incorporated into a physiologically based pharmacokinetic model and the depletion study will be used to test the ability of this model to describe monensin residues in edible tissues under different dosage regimens.  相似文献   

17.
应用液相色谱-串联质谱监测技术研究了三聚氰胺药饵多次给药后在中华鳖体内的药物代谢动力学。结果表明,中华鳖血液、肝脏、肌肉中三聚氰胺浓度分别在8、4、2h时达到高峰;最高峰时血液、肝脏、肌肉中药物质量浓度平均分别为16.98、16.79和12.05mg/kg。在血液、肝脏和肌肉组织中三聚氰胺浓度的t1/2(ke)分别为24.11、107.75和36.49h。三聚氰胺在血液、肝脏、肌肉组织中的代谢过程均符合一室模型,相应的动力学方程分别为:C血液=17.08×(e-0.0287t-e0.0558t),C肌肉=11.64×(e-0.0190t-e2.1425t),C肝脏=15.72×(e-0.0064t-e2.5558t)。说明药饵给药后三聚氰胺在中华鳖体内消除较慢。  相似文献   

18.
本文研究了喹烯酮预混剂对肉鸡生产性能的影响。选用150羽7日龄肉仔鸡,随机分为3组,每组3个重复。对照空白组饲喂基础日粮,喹乙醇对照组饲喂添加75ppm的喹乙醇预混剂基础日粮,试验组饲喂添加75ppm的喹烯酮预混剂基础日粮,试验期35d。结果:实验组肉鸡的末期平均体重、净增重和日增重均高于空白对照组和喹乙醇组,差异显著(P〈0.05);试验组的平均采食量均高于两对照组(P〉0.05);试验组的饲料转化率较空白对照组提高了3.69%(P〈0.05),比喹乙醇组高1.5%(P〉0.05)。结果表明在较高的营养水平条件下喹烯酮对肉鸡有良好的的促生长作用。  相似文献   

19.
1. We measured the distribution and depletion of residues of flubendazole and its major metabolites in breast muscle, thigh muscle and liver of guinea fowls during and after oral administration of the veterinary medicine Flubenol 5% at two doses. 2. The guinea fowls were treated orally with normal feed, medicated at doses of 56 and 86 mg per kg feed for 7 successive days. Afterwards, depletion was observed for 8 d. Just before slaughter, body weights were measured. Thigh muscle, breast muscle and liver of three female and three male birds were sampled. The concentrations of the flubendazole-derived residues were determined by a liquid chromatographic-mass spectrometric method. 3. The highest residue concentrations were obtained for the reduced metabolite. With the therapeutic dose, the maximum mean residue concentrations obtained for this compound in thigh muscle, breast muscle and liver were 312, 288 and 1043 microg/kg, respectively. The values for flubendazole, the parent molecule, were 114, 108 and 108 microg/kg, respectively. The residues of the hydrolysed metabolite were negligible in the sampled muscle tissues. After 24 h of depletion, the sum of the residues of parent and metabolites in muscle tissue still exceeded 50 microg/kg. After 8 d of depletion, flubendazole-derived residues at low concentrations could still be measured in both muscle tissues and liver. Generally, the disposition of residues in breast and thigh muscle was comparable. 4. The European Union has not established a maximum residue limit (MRL) for flubendazole in edible tissues of guinea fowl. In contrast, the existing MRLs for other bird species are expressed as the sum of parent flubendazole and its hydrolysed metabolites. An estimated withdrawal period of three days will assure residue safety in the edible tissues of guinea fowl treated with flubendazole at therapeutic dose. After this withdrawal period following treatment of the guinea fowl, the residues were approximately constant, very low and far below the established safe MRL level for other bird species.  相似文献   

20.
β-激动剂克伦特罗在猪肝脏和肌肉组织中的残留   总被引:8,自引:0,他引:8  
本文报道用高效液相色谱法检测β 肾上腺素能激动剂(克伦特罗Clenbuterol)在猪肝脏和背最长肌中的残留量。在肥育猪日粮中添加3mg/kg克伦特罗,试验期30天,停药0、1、2、3、4天屠宰取肝脏和肌肉样。组织经匀浆浓缩提取,色谱条件为:CLC ODS色谱柱;以20mmol/LKH2PO4+30μmol/LEDTA(pH3.9)乙腈=8218(V/V)为流动相;紫外检测波长为243nm。结果表明,克伦特罗最低检测限为2ng/g。停药当天(0天)肝脏和肌肉组织残留量分别为208.5ng/g和10.0ng/g。停药后残留量迅速下降,肌肉在停药后第2天即检测不出,而肝脏要到第4天才检测不出。  相似文献   

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