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1.
氟苯尼考颗粒与氟苯尼考粉在猪体内的药物动力学比较   总被引:1,自引:0,他引:1  
健康猪14头随机分为A、B2组,分别单剂量胃管灌服氟苯尼考粉和颗粒,按体质量给药剂量均为30 mg/kg,进行比较药动学研究.高效液相色谱法(HPLC)测定其血药浓度.采用药动学分析软件WinNonlin 5.2.1的非房室模型处理血药浓度-时间数据.氟苯尼考粉灌胃给药的主要药物动力学参数为:t1/2β=(10.22±0.18)h,ke=(0.07±0.01)h-1,tmax=(1.67±0.48)h,Cmax=(24.68±1.13)μg·mL-1,AUC=(190.97±16.60)μg·mL-1·h,MRT=(8.33±0.42)h,tcp=(17.66±1.52)h.氟苯尼考颗粒灌胃给药的主要药物动力学参数为:t1/2β=(16.36±4.14)h,ke=(0.05±0.01)h-1,tmax=(5.71±0.47)h,Cmax=(12.23±0.78)μg·mL-1,AUC=(155.44±6.59)μg·mL-1·h,MRT=(14.96±0.35)h,tcp=(23.03±0.49)h.试验结果表明,与氟苯尼考粉相比,氟苯尼考颗粒的消除半衰期更长,有效血药浓度维持时间也较长.  相似文献   

2.
8头健康猪按体质量单次深部肌内注射盐酸林可霉素-硫酸大观霉素(5 mg.kg-1林可霉素,10 mg·kg-1大观霉素)混悬注射液后,用高效液相色谱法分别测定林可霉素和大观霉素的血药浓度,使用非房室统计矩分析方法处理得到血药浓度-时间数据.林可霉素主要药动学参数分别为:ke=(0.21±0.01)h-1;t1/2β=(3.38±0.09)h;tmax=(0.29±0.02)h;Cmax=(5.15±0.18)μg·mL-1;AUC0~LOQ=(10.27±0.38)μg·mL-1.h;MRT=(3.52±0.11)h;ClB/F=(0.46±0.01)L·h-1·kg-1;VZ/F=(2.26±0.12)L·kg-1.大观霉素主要药动学参数分别为:ke=(0.43±0.01)h-1;t1/2β=(1.64±0.06)h;tmax=(0.44±0.03)h;Cmax=(20.05±0.70)μg·mL-1;AUC0~LOQ=(51.82±0.98)μg·mL-1·h;MRT=(2.39±0.04)h;ClB/F=(0.19±0.01)L·h-1·kg-1;VZ/F=(0.46±0.02)L·kg-1.结果表明,肌内注射盐酸林可霉素-硫酸大观霉素混悬注射液后,两药均迅速吸收并快速消除,但后者吸收稍慢,消除较快.  相似文献   

3.
复方茵芩制剂中黄芩苷的药代动力学研究   总被引:1,自引:1,他引:1  
探讨复方茵芩制剂有效成分黄芩苷在小鼠体内的药物代谢动力学特征,按16.5 g.kg-1(相当于黄芩苷239.5 mg.kg-1)的剂量给小鼠口服复方茵芩制剂,用高效液相色谱法(HPLC)检测用药后0.25、0.5、1.0、2.0、3.0、4.0、5.0、6.0、8.0、12.0、14.0、16.0、20.0、24.0、36.0、48.0、72.0 h血浆中药物黄芩苷的质量浓度,研究在小鼠体内的药物代谢动力学.结果表明,复方茵芩制剂中黄芩苷在小鼠体内的药时数据符合开放性二室模型,动力学方程为:C=16.76 e-0.45t+3.10 e-0.03t-20.99 e-2.13t;主要药代动力学参数:T1/2α1.54 h,T1/2β5.25±2.96 h,T1/2 Ka0.34 h,AUC0→∞128.99 mg.L-1.h-1,CL/F0.19 L.h-1,Vd/F6.363 L.kg-1,Tpeak1.05 h,Cmax11.19μg.mL-1.  相似文献   

4.
Pharmacokinetics of flunixin meglumine (FM) was investigated in 14 healthy pigs following single intravenous (i.v.) and intramuscular (i.m.) administration of the drug at the dosage of 2.2 and 1.1 mg kg-1. Blood samples were collected at different intervals after administration, and concentrations of FM were determined by HPLC method with a limit of detection of 0.1μg mL-1. The FM concentration-time data were fitted to a two-compartment open model after single i.v. dosing in pigs. The main pharmacokinetic parameters were as follows: tl/2a, 0.49 ± 0.03 and 0.58±0.07 h; tl/2β, 6.28±0.13 and 7.37 ±0.59 h; V/F, 0.01 ±0.001 and 0.01 ±0.002 L kg-1; CL, 0.01 ± 0.002 and 0.01 ± 0.002 L h-l; AUC, 237.73 ± 52.46 and 147.71 ± 36.76μg h-1 mL-1. The drug concentration-time data were fitted to a two-compartment model with first-order absorption after single i.m. administration in pigs. The main pharmacokinetic parameters were as follows: t1/2α, 0.90± 0.07 and 0.86±0.10 h; t1/2β, 8.79±0.85 and 9.60±0.10 h; V/F, 0.02±0.004 and 0.02±0.003 L kg-1; CL, 0.01±0.002 and 0.01 ±0.003 L h-l; AUC, 174.63 ± 45.84 and 112.42 ± 31.19 pg h-1 mL 1. The results of the present study showed that FM was rapidly absorbed, extensively distributed, and slowly eliminated in pigs. The drug was completely absorbed after single i.m. administration and a good bioavailability in pigs.  相似文献   

5.
 【目的】 研究并比较泰妙菌素混悬注射液和泰妙菌素注射液在猪体内的药物代谢动力学特征及生物利用度。【方法】 7头健康猪,按随机拉丁方设计,进行单次给药剂量(10 mg•kg-1 b.w)静注、肌注泰妙菌素注射液和肌注泰妙菌素注射混悬液,高效液相色谱串联质谱法测定猪血浆中泰妙菌素的浓度,罗红霉素作为内标,3P97药动学计算软件处理血浆药物浓度-时间数据。【结果】 猪静注给药的药时数据符合无吸收三室开放模型,主要药动学参数为:t1/2β为2.04±0.23 h,t1/2α为0.39±0.06 h,t1/2π为0.12±0.04 h,Vd 为8.73±1.83 L•kg-1,AUC为3.78±0.52μg•mL-1•h-1,ClB为2.99±0.43 L•kg-1•h-1)。猪肌注泰妙菌素注射液的药时数据符合一级吸收二室开放模型,主要的药物动力学参数分别为:t1/2Ka(0.06±0.01)h,t1/2β(3.67±0.41)h,Tmax(0.18±0.03)h,Cmax(1.32±0.25)μg•mL-1,AUC(2.62±0.21)μg•mL-1•h-1,生物利用度为73.51%。猪肌注泰妙菌素混悬液的药时数据则符合一级吸收一室开放模型,主要的药物动力学参数为:t1/2Ka(0.04±0.01)h,t1/2Ke(2.90±0.43)h,Tmax(0.27±0.03)h,Cmax(0.7±0.11)μg•mL-1,AUC(2.80±0.35)μg•mL-1•h-1,生物利用度为75.73%。t检验比较肌注泰妙菌素注射液和泰妙菌素注射混悬液的主要药动学参数,结果表明,两者除达峰浓度Cmax有显著差异外,AUC、t1/2Ka、Tmax、t1/2Ke和生物利用度均无显著性差异。【结论】泰妙菌素注射混悬液肌注后在猪体内具有吸收迅速,体内分布广,达峰迅速,消除较快的药动学特征。  相似文献   

6.
复方制剂中黄芩甙成分在奶牛血浆和乳中药动学的研究   总被引:3,自引:0,他引:3  
文章以高效液相色谱 (HPL C)法为定量手段 ,研究复方制剂中黄芩甙经子宫内灌注给药后在奶牛血浆和乳汁中药物代谢动力学特征。采用 MCPKP药代动力学程序处理药时数据 ,分析黄芩甙在血浆和乳中的药动学参数。结果表明 ,黄芩甙在血浆、乳中的药动学特征均符合一级吸收一室开放模型。黄芩甙在血浆中的主要药动学参数为 :C0=0 .37︼g· m L- 1 、Ka=1.73· h- 1 、K =0 .2 5· h- 1 、t1/ 2 Ka=0 .70 h、t1/ 2β=2 .93h、Cm ax=0 .2 4︼g· m L- 1 、Tmax=2 .2 3h、AU C=1.5 2 m g· (L h) - 1 、Tlag=0 .5 0 h。黄芩甙在乳汁中的主要药动学参数为 :C0 =0 .76︼g· m L- 1 、Ka=0 .88· h- 1 ,K=0 .38h- 1、t1/ 2 Ka=0 .79h、t1/ 2 β=1.82 h、Cm ax=0 .31︼g· m L- 1、Tmax=3.2 7h、AU C=2 .0 0mg· (L h) - 1、Tlag=1.6 0 h。  相似文献   

7.
实验性感染大肠杆菌—败血霉形体病鸡,单剂量(5 mg.kg-1)内服司帕沙星,研究其组织动力学和残留情况。采用HPLC面积-内标法测定各组织中司帕沙星浓度,利用药动学分析软件MCPKP分析药-时数据。疾病模型鸡肝脏、肺脏和心脏中的药—时数据符合一级吸收三项指数方程,主要动力学参数为:t1/2α0.3505,0.8381,0.6005 h;t1/2β11.7802,13.8479,2.4578 h;tmax 1.0653,1.1397,0.7546 h;Cmax 3.3591,2.2951,1.7226μg.mL-1;AUC24.4230,30.663,5.3780 mg.L-1.h-1,Tcp(ther)81.0240,108.52,18.410 h。肾脏和肌肉组织中药-时数据符合一级吸收二项指数方程,主要动力学参数为:t1/2K 2.2287,7.5072 h;tmax1.4655,1.8644 h;Cmax1.9926,1.1317μg.mL-1;AUC9.8536,14.5240 mg.L-1.h-1;Tcp(ther)19.923,58.156 h。各组织中药物浓度降至0.001 mg.kg-1时需休药7 d。  相似文献   

8.
50日龄健康岭南三黄肉鸡24只随机分为2组,雌雄各半.分别进行单剂量(10 mg.kg-1)静注和内服洛克沙胂的药物动力学(简称药动学)研究.以反相高效液相色谱法测定血浆中洛克沙胂质量浓度,采用WinNonlin 5.2药动学软件的非房室模型统计矩原理分析药物质量浓度-时间数据.鸡静注给药后主要药动学参数为:t1/2β=(2.37±0.11)h,Vz=(5.29±0.37)L.kg-1,AUC0-∞=(6.55±0.28)mg.L-1.h,CL=(1.56±0.07)L.h-1.kg-1.内服给药的主要药动学参数为:t1/2β=(3.02±0.08)h,tmax=(1.00±0.07)h,Cmax=(1.09±0.08)mg.L-1,AUC0-∞=(2.30±0.10)mg.L-1.h,MRT=(2.44±0.13)h,F=(35.28±1.0)%.洛克沙胂在鸡体内的药动学特征表现:静注分布较为广泛,消除迅速;内服给药后,吸收较快但不完全,生物利用度较低.  相似文献   

9.
【目的】研究马波沙星在罗非鱼Oreochromis niloticus体内的药物代谢动力学(简称药动学)特征,为临床合理用药提供参考。【方法】将罗非鱼随机分成2组,水温维持在30℃,以10 mg·kg-1分别单剂量肌内注射和口服给药,高效液相色谱(HPLC)-荧光检测法测定血浆中马波沙星的质量浓度,用Win Nonlin 6.1药动学软件的"非房室模型"分析药动学参数。【结果】肌内注射马波沙星后,药物吸收和消除均较口服快,体内分布广泛。达峰时间(tmax)为0.25 h,峰质量浓度(ρmax)为4.31μg·mL~(-1),消除半衰期(t1/2λz)为19.21 h,表观分布容积为3.94L·kg-1,药-时曲线下面积(AUC)为70.36μg·mL~(-1)·h-1。口服马波沙星后,药物吸收和消除均较慢,体内分布广泛。tmax为4.00 h,ρmax为2.45μg·mL~(-1),t1/2λz为22.67 h,表观分布容积为4.27 L·kg-1,AUC为76.66μg·mL~(-1)·h-1。【结论】10 mg·kg-1马波沙星能够有效治疗大多数敏感菌引起的罗非鱼感染。  相似文献   

10.
The pharmacokinetics of quinocetone and its major metabolites in healthy swine was investigated in this paper.Quinocetone was administered to 8 healthy cross-bread swine intravenously and orally at a dosage of 4 and 40 mg kg-1 body weight respectively in a randomized crossover design test with two-week washout period.A sensitive highperformance liquid chromatography-tandem mass spectrometry (HPLC-MS/MS) method was developed for the determination of quinocetone and its metabolite 1-desoxyquinocetone in plasma.Plasma concentration versus time profiles of quinocetone and its metabolite l-desoxyquinocetone were analyzed by non-compartmental analysis using Winnonlin 5.2 software.Mean maximum concentrations (Cmax) for quinocetone was found to be (0.56±0.13) μg mL-1 at 2.92 h,after oral administration of quinocetone.Mean maximum concentrations (Cmax) for l-desoxyquinocetone after intravenous or oral administration of quinocetone were (0.0095±0.0012) μg mL-1 at 0.083 h and (0.0067±0.0053) μg mL-1 at 3.08 h.The apparent elimination half-lives (T1/2) for quinocetone and its metabolite 1-desoxyquinocetone were (2.24±0.24) and (5.23±0.56) h after intravenous administration of quinocetone and (2.91±0.29) and (11.85±2.89) h after oral administration of quinocetone,respectively.Mean areas under the plasma concentration-time curve (AUC0-∞) for quinocetone and 1-desoxyquinocetone were (2.02±0.15) and (0.2±0.002) μg h mL-1 respectively after intravenous administration of quinocetone,and (3.5±0.79) and (0.053±0.03) μg h mL-1 after oral administration of quinocetone,respectively.Quinocetone was rapidly absorbed and metabolized in swine after oral and intravenous administration.The plasma concentration-time curve (AUC0-∞) of 1-desoxyquinocetone were much smaller than those of quinocetone,while the elimination half-lives (T1/2) were much longer than those of quinocetone after intravenously (i.v.) or oral administration.  相似文献   

11.
氟苯尼考单剂量腹腔注射和灌服后在鲫体内的药代动力学   总被引:3,自引:0,他引:3  
将健康鲫150尾随机分成两组,按30mg.kg-1剂量分别单次腹腔注射和灌服氟苯尼考,用高效液相色谱法研究其在鲫体内的药代动力学特征,数据用3p97药代动力学软件分析。结果表明,腹腔液射和灌服两种给药方式的血药经时过程均符合一级吸收一室开放模型。腹腔注射和灌服给药的动力学方程分别为ρ=3.465 5(e-0.51t-e-14.88t)和ρ=7.669 9(e-0.04t-e-0.12t)。药时曲线下面积(AUC)分别为(3.905±0.056)和(1.803±0.133)mg.L-1.h;分布速率半衰期(t1/2Ka)分别为(0.047±0.001)和(5.962±0.021)h,消除速率半衰期(t1/2Ke)分别为(1.367±0.025)和(16.763±0.017)h,体清除率(CLB)分别为(0.102±0.001)和(0.018±0.017)L.kg-1.h-1,最高血药质量浓度(ρmax)分别为(25.289±2.664)和(42.137±3.887)mg.L-1。  相似文献   

12.
The objective of this study was to determine the effects of ionomycin combined with cytochalasin B (CB), cycloheximide (CHX), or 6-dimethylaminopurine (6-DMAP) on the activation of porcine oocytes. In Experiment 1, in vitro matured oocytes were activated with 15,20,25 or 30 mmol L-1 ionomycin separately. Activation rates of 20,25 mmol L-1 and 30 mmol L-1 treatments were higher (P<0.05) than that of 15 mmol L-1 treatment. In Experiment 2, in vitro matured oocytes were activated with 20 mmol L-1 ionomycin for 10,20,30,40 or 50 min and then incubated with 2 mmol L-1 6-DMAP for 6 h.Cleavage and blastocyst rates [(72.40±13.02)%, (25.37±11.43)%] after treatments for 40 min were higher (P>0.05) thanthose of the other treatments. In Experiment 3, matured oocytes were activated with ionomycin and then incubated with 7.5 mgmL-1 CB, 10 mg mL-1 CHX, 2 mmol L-16-DMAP, 7.5 mg mL-1 CB + 10 mg mL-1 CHX or 7.5 mg mL-1 CB + 2 mmol L-1 6-DMAP for6 h. The rates of activation, cleavage and blastocyst of 2 mmol L-1 6-DMAP treatment [(86.05±4.29)%, (61.77±8.10)% and(21.62±3.31)%] were higher (P<0.05) than those of 7.5 mg mL-1 CB treatment. In Experiment 4, matured oocytes wereactivated with ionomycin and then incubated with 2 mmol L-1 6-DMAP for 3.5, 5.5 or 7.5 h. Cleavage rates and blastocyst rates of 5.5 h treatment [(66.59±14.36)% and (25.40±10.16)%] were higher (P>0.05) than those of other treatments. In conclusion, activation of porcine oocytes appears to be most successful using the combination of ionomycin (20 mmol L-1,40 min) followed by 6-DMAP (2 mmol L-1, 5.5 h).  相似文献   

13.
为了寻找替代抗生素的促生长物质预防畜禽大肠杆菌病,能有效地利用我国丰富的植物资源,在不同的季节采集当地常见的孝顺竹竹叶提取有效成分,同时从患乳房炎奶牛的乳汁中和患大肠杆菌的病猪心、肝等组织中分离出致病性强、对抗生素耐药的大肠杆菌,对其进行抑菌试验。结果显示:不同季节采集的竹叶水提物对大肠杆菌具有不同的抑制作用,春季最大抑菌圈为17mm,MIC为3.125mg·mL-1,MBC为6.25mg·mL-1;夏季最大抑菌圈为15mm,MIC为3.125mg·mL-1,MBC为6.25mg·mL-1;秋季抑菌圈最大为12mm,MIC为6.25~12.50mg·mL-1,MBC为12.5~25.0mg·mL-1;冬季最大抑菌圈为20mm,MIC 1.56mg·mL-1,MBC为3.125mg·mL-1。抗生素耐药的菌株对竹叶提取物敏感程度,不同季节的竹叶提取物对大肠杆菌抑制效果强弱为:冬季春季夏季秋季。  相似文献   

14.
奶牛乳体细胞数变化及影响因素调查   总被引:3,自引:0,他引:3  
调查分析了大庆地区四个规模化牧场近3年奶牛DHI数据。结果表明,乳体细胞评分均值为5.05(其乳体细胞数均值为49万·mL-1)。75.75%的奶牛个体,其生鲜乳体细胞数小于50万·mL-1。胎次、泌乳阶段、自然月份等因素影响奶牛生鲜乳体细胞数。调查结果为牛场奶牛综合管理及制定科学可行的乳房炎防治措施提供依据。  相似文献   

15.
The pharmacokinetics of milbemycin oxime was investigated in dogs following oral(per os, PO) and intravenous(IV) administration. Three groups of dogs received milbemycin oxime tablets as a single PO dose equal to 0.25, 0.5 and 1.0 mg · kg-1 of milbemycin oxime, respectively, another group received a single IV dose of 0.5 mg · kg-1. Blood samples were collected at predetermined times after drug administration and the milbemycin oxime concentrations in plasma were determined by LC-MS/MS. The drug protein binding in dog plasma in vitro was determined by equilibrium dialysis at concentrations spanning the range of values observed in vivo in dog plasma. After PO administration at doses of 0.25, 0.5 and 1.0 mg · kg-1, milbemycin oxime was slowly absorbed and eliminated, the time to reach the maximum plasma concentration(Tmax) was 4.14±0.20, 4.27±0.14 and 4.06±0.13 h, the mean absorption time(MAT) was 19.06, 13.67 and 11.77 h, the terminal rate half-life(t1/2λz) was 15.06±0.37, 11.09±0.54 and 9.76±0.89 h and the total body clearance(Cl) was 1.15±0.05, 1.18±0.03 and 1.17±0.07 m L · min-1 · kg-1, respectively. The maximum plasma concentration(Cmax, 36.50±1.40, 76.11±2.77 and 182.05±7.20 ng · m L-1, respectively) and the area under the first-moment curve(AUC-10→∞, 985.83±49.46, 1 663.12±51.42 and 3 558.04±197.88 mg · h · L, respectively) increased accordingly to the administered dose rates; the oral bioavailabilities were estimated to be 88.61%, 74.75% and 79.96%, respectively. The values of fu were 0.12%, 0.14% and 0.13% in dog plasma, respectively. In conclusion, the pharmacokinetics of milbemycin oxime in dogs following oral administration revealed its higher oral bioavailability and advantageous pharmacokinetic properties, such as its lower total body clearance and longer elimination half-life, and indicated that the single oral dose of 0.50 mg · kg-1 of milbemycin oxime which was recommended in all the parasitological efficacy studies allowed an adequate concentration of the drug.  相似文献   

16.
从43头荷斯坦奶牛(体细胞数<200 000个·mL-1)中筛选出处于分娩第14天的自然发生亚临床酮病的9头奶牛作为试验组(1.0 mmol·L-1≤血清β-羟丁酸<2.6 mmol·L-1),根据泌乳天数、年龄、胎次、产奶量配对的9头健康奶牛作为对照组(血液β-羟丁酸<1.0 mmol·L1),检测不同种类白细胞数量...  相似文献   

17.
A RP-HPLC method was used for the determination of eprinomectin concentration in sheepplasma following i.v. and s.c. administration at a single dose of 0. 2 mg kg-1. Eprinomectin in plasma within2.5 - 200 ng mi-1 ranges had a good linear relationship(R=0. 9968). The average recovery of the method was99.65±3.84%. The RSD% of within-day and between-day assays were less than 10 and 12%, respectively.The extract of plasma samples were loaded onto a C18 catridge. After solvent exchange, the methanol eluatewas derivatized via the addition of 1-methylimidazole and trifluoroacetic anhydride in acetonitrile. The fluo-rescent derivative was analyzed. The main pharmacokinetic parameters were as follows, for i.v. administra-tion: T1/2β =12. 66± 2. 05 h, AUC0-t = 1.02 ± 0.3 mg h L-1 , fc =0. 13+0.05; for s.c. administration:T1/2sa = 4.42 ±l. 04 h, Cmax =0. 02±0.01 μg mi-1 , Tmax = 15.36 ± 2.91 h, t1/2K=26. 22±9.04 h, AUC0-t= 1.19±0.37 mg h L-1. The results showed that eprinomectin was distributed widely and taken long time toeliminate in sheep after i. v. adminstration. When given subcutaneously, eprinomectin had better absorptionand longer residue time in sheep. Eprinomectin was eliminated much slowly after s. c. adminstration comparedwith i.v. administration.  相似文献   

18.
对8头健康和8头患子宫内膜炎奶牛经子宫内灌注土霉素注射液,研究了土霉素在奶牛血浆中的药动学特征.应用反向高效液相色谱法为检测手段对血浆中土霉素浓度进行测定,采用3p97药动学软件分析药-时数据.结果表明:土霉素在健康奶牛子宫内不易被吸收入血,而在患病奶牛血浆中的最高血药浓度较低.土霉素在患子宫内膜炎奶牛体内的药动学特征符合一级吸收一室开放模型,主要药动学参数:药时曲线下面积(AUC)为(18.53±10.92)mg.L-1.h-1,血药峰浓度(Cmax)为(1.66±0.84)μg/mL,达峰时间(tmax)为(0.35±0.06)h,吸收半衰期(t1/2ka)为(0.05±0.01)h,清除半衰期(t1/2ke)为(7.67±2.44)h.土霉素灌注给药在患子宫内膜炎的奶牛子宫内吸收快但不完全,消除较慢.  相似文献   

19.
[目的]研究奶牛乳房炎主要病原微生物及乳汁中微生物群系分布.[方法]对CJ和HZS 2个牛场的奶牛进行乳房炎检查,视觉和触觉等临床检查奶牛乳房及乳汁后,将2个场中确诊为临床乳房炎的奶牛随机采集乳汁样本各3份,并将非临床型奶牛的乳汁样本随机采集各1份,通过对乳房炎奶牛和非临床型奶牛乳样中细菌的16S rRNA基因V3-V...  相似文献   

20.
【目的】研究抗球虫药盐酸氯苯胍在家兔体内的药物代谢动力学特征及内服给药的生物利用度。【方法】16只健康新西兰大白兔,公母各半,分为2组,一组以2.00 mg·kg~(-1)单次静脉注射给药,另一组以100.00 mg·kg~(-1)单次内服给药,通过耳部静脉采血,并用HPLC-UV法检测血浆中的盐酸氯苯胍浓度。使用WinnonlinTM药动学软件非房室模型计算相关药动学参数,采用SPSS 16.0软件得到药时曲线图。【结果】兔静脉注射盐酸氯苯胍(2.00mg·kg~(-1))后,药-时曲线下面积为1.72μg·h·m L~(-1),血浆清除率为1.17 L·h~(-1)·kg~(-1),表观分布容积为2.87L·kg~(-1),消除半衰期为1.72 h;内服盐酸氯苯胍(100.00 mg·kg~(-1))后,药-时曲线下面积为6.33μg·h·m L~(-1),消除半衰期为8.94 h。盐酸氯苯胍2种给药方式的药动学参数均存在显著差异(P0.05),内服给药的生物利用度较低,仅为7.36%。【结论】盐酸氯苯胍静脉注射给药的表观分布容积较大,药物在兔组织中分布广泛,并且消除迅速;内服盐酸氯苯胍后,药物经肠道吸收的量较少,体内药物残留较低。  相似文献   

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