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1.
目的 研究多剂量口服盐酸氨溴索缓释胶囊的人体药代动力学和相对生物利用度。方法 选择盐酸奎宁为定量内标物 ,采用反相高效液相色谱法测定了多剂量口服 75mg盐酸氨溴索国产缓释胶囊和进口缓释胶囊在健康人体内的盐酸氨溴索血药浓度 ,以考察盐酸氨溴索缓释胶囊多剂量口服达稳态过程和稳态药代动力学特征。结果  75mg盐酸氨溴索缓释胶囊连续口服d 4起 ,体内盐酸氨溴索血药浓度基本达稳态水平。国产缓释胶囊和进口缓释胶囊的稳态药代动力学参数Tmax分别为 (4 2± 0 7)h和 (4 1± 0 8)h ,Cmax分别为 (2 0 8 73± 31 91) μg·L-1和 (2 12 5 6± 2 9 6 4) μg·L-1,Cmin分别为 30 76± 10 47μg·L-1和 (2 9 80± 10 2 3)μg·L-1,AUCss分别为 (2 113 90± 430 6 0 ) μg·h·L-1和2 0 88 2 2± 40 2 5 2 μg·h·L-1,Cav分别为 (88 0 8± 17 94) μg·L-1和 (87 0 1± 16 77) μg·L-1,DF分别为 (2 0 7± 0 31)和(2 16± 0 37) ,多剂量口服 75mg国产盐酸氨溴索缓释胶囊的相对生物利用度为 10 1 10 %± 6 33 %。结论 盐酸氨溴索国产缓释胶囊和进口缓释胶囊的主要稳态药代动力学参数差异均无显著性 ,两种制剂具有生物等效性  相似文献   

2.
目的 :选择 12名男性健康志愿者 ,进行单剂量口服硝酸异山梨醇酯缓释胶囊的人体药动学研究。方法 :采用毛细管气相色谱法 ,测定单剂量口服 4 0mg国产与进口硝酸异山梨醇酯缓释胶囊在健康人体内的硝酸异山梨醇酯浓度。结果 :硝酸异山梨醇酯缓释胶囊的体内动态过程呈一级吸收的二房室开放模型 ,国产与进口缓释胶囊的Cmax分别为 (2 3.6± 6 .2 ) μg·L-1和 (2 3.7± 5 .1) μg·L-1,tmax分别为 (3.3± 0 .6 )h和 (3.8± 0 .6 )h ,MRT分别为 (9.1± 0 .8)h和 (9.1± 0 .7)h ,t1/ 2 分别为 (8.2± 1.0 )h和 (8.1± 0 .9)h ,AUC0~ 2 4分别为 (12 6 .3± 15 .4 ) μg·h·L-1和 (12 4 .0± 14 .1) μg·h·L-1,AUC0→∞ 分别为 (139.4±14 .8) μg·h·L-1和 (136 .7± 13.8) μg·h·L-1。结论 :国产与进口硝酸异山梨醇酯缓释胶囊具有相似的人体药动学特征  相似文献   

3.
目的 :比较国产和进口单硝酸异山梨酯缓释胶囊的人体药动学和相对生物利用度。方法 :采用单次和多次给药的 4周期双交叉设计 ,气相色谱 电子捕获检测法 (GC ECD)测定 2 2名健康男性志愿者血浆中单硝酸异山梨酯的浓度。结果 :单次 (2 5mg)口服国产和进口单硝酸异山梨酯缓释胶囊后的药动学参数分别为 :Tmax为 (5 .7±s 0 .5 )h和 (5 .8±1 .0 )h ,Cmax为 (2 3 6± 62 ) μg·L-1和 (2 42± 62 )μg·L-1,T1/ 2 为 (8.3± 1 .6)h和 (8.4± 2 .1 )h ,AUC0 3 6为 (3 .7± 0 .9)mg·h·L-1和 (3 .6±0 .9)mg·h·L-1,AUC0 ∞ 为 (4 .0± 0 .9)mg·h·L-1和 (3 .8± 0 .8)mg·h·L-1,平均滞留时间MRT为 (1 1 .5±0 .8)h和 (1 1 .4± 0 .7)h。多次 (2 5mg,6d)口服国产和进口单硝酸异山梨酯缓释胶囊后的稳态药动学参数分别为 :Tmax 为 (5 .2± 0 .7)h和 (5 .4±0 .9)h,Cmax为(3 1 4± 67) μg·L-1和 (3 1 0± 5 8) μg·L-1,Cmin为(63± 1 4) μg·L-1和 (65± 1 6) μg·L-1,稳态血药浓度均值Cav为 (1 87± 3 8) μg·L-1和 (1 83± 3 8) μg·L-1,AUC0 3 6h为 (5 .0± 1 .0 )mg·h·L-1和 (4 .9± 1 .0 )mg·h·L-1,波动度DF为 (1 3 4± 2 0 )%和 (1 3 4± 1 8) %。单次和多次口服国产与进口单硝酸异山梨酯  相似文献   

4.
国产盐酸尼卡地平缓释胶囊人体药代动力学及生物利用度   总被引:2,自引:0,他引:2  
目的 比较国产和进口盐酸尼卡地平 (Nic)缓释胶囊的药代动力学及生物利用度。方法 选择 12名健康志愿者随机交叉单剂量及多剂量口服两种Nic缓释胶囊 ,采用GC ECD检测 ,内标法定量测定其血药浓度。结果 两种缓释胶囊空腹给药 ,其单剂量及多剂量达稳态后经时血药浓度均呈双峰曲线 ,国产胶囊单剂量给药的主要参数 :Cmax1( 14 2± 8 2 ) μg·L-1,Cmax2 ( 16 9± 5 8) μg·L-1,Tmax1( 0 79±0 45 )h ,Tmax2 ( 5 0 8± 0 79)h ,T1/2Ke( 5 49± 2 5 3)h ,AUC0~ 2 4 ( 97 9± 2 4 8) μg·h·L-1。多剂量给药的主要参数 :Cmax( 36 7± 6 1) μg·L-1,Cmin( 7 3± 1 6 ) μg·L-1,Cav( 18 9± 3 2 ) μg·L-1,FI( 1 5 6± 0 2 6 ) ,AUC0~ 36( 341 4±48 5 ) μg·h·L-1。国产Nic缓释胶囊单剂量及多剂量给药与进口制剂比较的相对生物利用度各为 97 5 %± 19 3 %和98 2 %± 16 5 %。结论 方差分析及双单侧t检验表明 ,两种制剂具有生物等效性  相似文献   

5.
5-单硝酸异山梨酯缓释胶囊的人体生物等效性   总被引:3,自引:0,他引:3  
采用GC法测定 5 单硝酸异山梨酯血浆药物浓度 ,研究 5 单硝酸异山梨酯缓释胶囊相对生物利用度和生物等效性。 18名健康志愿者随机交叉单剂量口服试验药 (T)与对照药 (R) 4 0mg ,测得Cmax分别为 (348 3± 146 8)ng/mL和 (347 9± 2 0 2 4)ng/mL ;Tmax 分别为 (4 7± 1 8)h和(4 6± 1 7)h ;AUC( 0 -n) 分别为 (3 933 2± 142 5 0 )ng h/mL和 (3 6 93 0± 12 39 5 )ng h/mL ;相对生物利用度为 (10 6 6± 16 9) %。 18名志愿者随机交叉多剂量口服T与R ,测得达稳态的Cmax分别为 (2 30 9± 72 4)ng/mL和 (190 9± 6 6 9)ng/mL ;Cmin分别为 (4 2 6± 2 3 5 )ng/mL和 (4 7 4±2 2 1)ng/mL ;AUCSS分别为 (2 939 4± 92 2 1)ng h /mL和 (2 6 6 7 4± 832 9)ng·h /mL ;DF分别为1 6± 0 4和 1 3± 0 3 ;相对生物利用度为 (111 0 2± 2 1 0 5 ) %。经生物等效性分析 ,两制剂在单剂量与多剂量条件下生物等效  相似文献   

6.
目的评价国产和进口5-单硝酸异山梨醇酯缓释胶囊在人体生物等效性研究.方法18名健康受试者随机交叉给药,分别单次(40mg)及多次口服进行人体生物等效性研究,用液相色谱/质谱联用测定血浆中5-单硝酸异山梨醇酯的浓度.结果经数据处理,单次口服国产和进口5-单硝酸异山梨醇酯缓释胶囊的AU0-36分别为7490±1144μg·h·L和7355±1007μg·h·L-1,tpeak分别为4.92±1,31h和4.67±0.79h,Cmax分别为519.15±60.53μg·L-1和523.67±68.99μg·L-1;多次口服达稳态时AUC0-36分别为8514±1318μg·h·L-1和8586±836μg·h·L-1,tpeak分别为4.83±0.94h和4.75±1.14h,Cmax分别为570.44±78.89μg·L-1和580.43±64.04 μ g·L-1,波动系数FI分别为135.10±15.53%和134.82±9.71%.国产5-单硝酸异山梨醇酯缓释胶囊单次给药及多次给药稳态时的相对生物利用度分别为101.9±7.3%和99.1±11.9%.结论单次及多次给药所得梯形法计算的两者的AUC0-36、Cmax、tpeak进行方差分析和双单侧检验结果表明两者具有生物等效性.  相似文献   

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在 18名男性健康受试者中研究国产右美沙芬缓释混悬液的药物动力学特性及生物等效性。采用双周期交叉设计 ,反相高效液相色谱 -荧光检测法测定血浆中右美沙芬活性代谢物去甲右美沙芬的浓度。单剂量口服 6 0 m g右美沙芬缓释混悬液与进口对照品的 cmax分别为 4 36 .8± 116 .7和 4 0 9.5± 113.7ng/m l;Tmax为 3.3± 1.0和 3.4±0 .8h;T1 /2 为 7.5± 2 .7和 7.5± 3.1h;AUC0→ tn为 3435± 6 6 4 .2和 32 6 9± 6 2 6 .0 ng· ml- 1 · h。多剂量服药达稳态后两制剂的波动度分别为 (12 1.9± 37.1% )和 (133.2± 4 0 .6 ) %。主要药动学参数经统计学检验表明 :国产右美沙芬缓释混悬液与进口同类产品具生物等效性 ,相对生物利用度为 (10 5 .9± 13.8) %。  相似文献   

8.
国产异丁司特缓释胶囊的人体相对生物利用度研究   总被引:2,自引:0,他引:2  
目的考察国产异丁司特缓释胶囊的人体相对生物利用度。方法12名男性健康受试者随机分为3组 ,分别口服单剂量日本产异丁司特缓释胶囊20mg、国产异丁司特缓释胶囊20mg、异丁司特原料药10mg,交叉自身对照。于服药后取静脉血 ,用HPLC法测定血清异丁司特浓度。结果三种制剂的Cmax 分别为 (54.9±9.7)、(60.7±9.1)、(62.2±11.5) μg·L-1,tmax 分别为 (3.8±0.8)、(3.9±0.8)、(1.75±0.34)h ,t1/2(ke)为(11.5±1.4)、(12.1±1.0)、(3.5±0.5)h ,AUC(0~t) 为(618.1±57.7)、(588.2±66.6)、(233.0±46.4)μg·h·L-1。以日本杏林公司产品作为参比制剂 ,国产异丁司特缓释胶囊的人体相对生物利用度为(95.6±11.0) %。结论经双向单侧t检验 ,国产和进口缓释胶囊具有生物等效性 ,与原料药相比具有明显的缓释特性  相似文献   

9.
目的 :评价试验制剂复方单硝酸异山梨醇酯缓释片 (T)与参比制剂单硝酸异山梨醇酯缓释片和阿司匹林肠溶片 (R)的生物等效性 ,以及缓释制剂释放特点、稳态血浓度和波动度。方法 :采用高效液相色谱法分别测定单剂和多剂交叉给药单硝酸异山梨醇酯和阿司匹林代谢物水杨酸经时血浓度 ,计算药物动力学参数 ,并进行方差分析和双单侧t检验。结果 :单剂给药试验制剂和参比制剂单硝酸异山梨醇酯半衰期 (t1 2 )分别为 8.3± 0 .6、8.2± 0 .6h ,血浓度峰值 (Cmax)分别为 0 .5 1± 0 .0 9、 0 .5 3±0 .0 9mg·L-1,达峰时间 (tmax)分别为 4 .8± 0 .4、4 .6± 0 .3h ,药时曲线下面积 (AUC0 -t)分别为 4 .90±0 .6 1、5 .2± 0 .8mg·h-1·L-1,相对生物利用度 (F)为(96 .1± 10 .8) % ;试验制剂和参比制剂阿司匹林代谢物水杨酸t1 2 分别为 2 .4± 0 .3、2 .5± 0 .3h ,Cmax分别为 3.4± 0 .5、3.0± 0 .4mg·L-1,tmax分别为 1.7±0 .2h和 4 .9± 0 .3h ,AUC0 -t分别为 13.4± 2 .5和13.0± 2 .5mg·h-1·L-1,以水杨酸计阿司匹林F为(10 3.6± 9.6 ) %。多剂给药试验制剂和参比制剂单硝酸异山梨醇酯Cmax 分别为 0 .6 8± 0 .14、0 .6 7±0 .13mg·L-1,Cmin 分别为 0 .17± 0 .0 3、 0 .17±0 .0 4mg·L-1,波动系数 (DF)  相似文献   

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目的 :以进口去氧氟尿苷胶囊为对照 ,考察国产去氧氟尿苷胶囊的药动学及 2种制剂的生物等效性。方法 :10名肿瘤病人随机双交叉口服 2种胶囊 80 0mg ,采用HPLC法测定药物的血药浓度。结果 :进口和国产去氧氟尿苷胶囊的药动学参数———Cmax分别为 (5 .1± 1.4 )mg·L- 1,(4.6± 1.2 )mg·L- 1;Tmax分别为 (1.0± 0 .4 )h ,(0 .8± 0 .4 )h ;AUC分别为 (6 .5± 1.7)mg·h·L- 1,(6 .0± 1.6 )mg·h·L- 1。国产去氧氟尿苷胶囊相对生物利用度为 (95± 12 ) %。结论 :2种制剂生物等效  相似文献   

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Clinical and in vitro investigations were carried out to test the efficacy of gut lavage, hemodialysis, and hemoperfusion in the treatment of poisoning with paraquat or diquat. In a patient suffering from diquat intoxication 130 times more diquat was removed by gut lavage 30 h after ingestion than was removed by complete aspiration of the gastric contents.Determination of in vitro clearances for paraquat and diquat by hemodialysis showed that, at serum concentrations of 1–2 ppm, such as are frequently encountered in poisoning in man, toxicologically relevant quantities of herbicide cannot be removed from the body. At a concentration of 20 ppm, on the other hand, hemodialysis proved to be effective, the clearance being 70 ml/min at a blood flow rate of 100 ml/min. The efficacy of hemoperfusion with coated activated charcoal was on the whole better. Especially at concentrations around 1–2 ppm, the clearance values for hemoperfusion were some 5–7 times higher than those for hemodialysis.In a patient suffering from paraquat poisoning, both hemodialysis as well as hemoperfusion were carried out. The in vitro results could be confirmed: At serum concentrations of paraquat less than 1 ppm no clearance could be obtained by hemodialysis while by hemoperfusion with activated charcoal quite high clearance values were measured and the serum level dropped down to zero.
Zusammenfassung Klinische Untersuchungen und Laboratoriumsversuche wurden durchgeführt, um die Wirksamkeit von Darmspülung, Hämodialyse und Hämoperfusion bei Paraquat- und Deiquat-Vergiftungen zu prüfen.Bei einem Patienten wurde 30 Std nach Deiquat-Aufnahme durch Darmspülung 130mal mehr Deiquat entfernt als durch vollständige Aspiration des Mageninhaltes. In vitro-Versuche ergaben, daß bei Blutserumkonzentrationen von 1–2 ppm, die bei Vergiftungen oft gemessen werden, durch Hämodialyse keine toxikologisch relevanten Paraquat- oder Deiquat-Mengen entfernt werden können. Dagegen erwies sich die Hämodialyse bei 20 ppm und einer Blutumlaufgeschwindigkeit von 100 ml/min mit einer Clearance von 70 ml/min als wirksam. Die Hämoperfusion mit beschicheter Aktivkohle war in diesen Versuchen aber eindeutig überlegen, denn insbesondere bei Konzentrationen um 1–2 ppm waren die Clearance-Werte 5–7mal höher als bei der Hämodialyse.Die in vitro-Ergebnisse wurden bei einem Patienten mit einer Paraquat-Vergiftung bestätigt: Bei Konzentrationen unter 1 ppm war die Hämodialyse wirkungslos, während durch Hämoperfusion relativ hohe Clearance-Werte erreicht wurden, so daß der Serumspiegel rasch unter die Nachweisgrenze abfiel.
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This study describes a new approach for organophosphorous (OP) antidotal treatment by encapsulating an OP hydrolyzing enzyme, OPA anhydrolase (OPAA), within sterically stabilized liposomes. The recombinant OPAA enzyme was derived from Alteromonas strain JD6. It has broad substrate specificity to a wide range of OP compounds: DFP and the nerve agents, soman and sarin. Liposomes encapsulating OPAA (SL)* were made by mechanical dispersion method. Hydrolysis of DFP by (SL)* was measured by following an increase of fluoride ion concentration using a fluoride ion selective electrode. OPAA entrapped in the carrier liposomes rapidly hydrolyze DFP, with the rate of DFP hydrolysis directly proportional to the amount of (SL)* added to the solution. Liposomal carriers containing no enzyme did not hydrolyze DFP. The reaction was linear and the rate of hydrolysis was first order in the substrate. This enzyme carrier system serves as a biodegradable protective environment for the recombinant OP-metabolizing enzyme, OPAA, resulting in prolongation of enzymatic concentration in the body. These studies suggest that the protection of OP intoxication can be strikingly enhanced by adding OPAA encapsulated within (SL)* to pralidoxime and atropine.  相似文献   

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Abstract

The uptake of metals from food and water sources by insects is thought to be additive. For a given metal, the proportions taken up from water and food will depend both on the bioavailable concentration of the metal associated with each source and the mechanism and rate by which the metal enters the insect. Attempts to correlate insect trace metal concentrations with the trophic level of insects should be made with a knowledge of the feeding relationships of the individual taxa concerned. Pathways for the uptake of essential metals, such as copper and zinc, exist at the cellular level, and other nonessential metals, such as cadmium, also appear to enter via these routes. Within cells, trace metals can be bound to proteins or stored in granules. The internal distribution of metals among body tissues is very heterogeneous, and distribution patterns tend to be both metal and taxon specific. Trace metals associated with insects can be both bound on the surface of their chitinous exoskeleton and incorporated into body tissues. The quantities of trace meals accumulated by an individual reflect the net balance between the rate of metal influx from both dissolved and particulate sources and the rate of metal efflux from the organism. The toxicity of metals has been demonstrated at all levels of biological organization: cell, tissue, individual, population, and community. Much of the literature pertaining to the toxic effects of metals on aquatic insects is based on laboratory observations and, as such, it is difficult to extrapolate the data to insects in nature. The few experimental studies in nature suggest that trace metal contaminants can affect both the distribution and the abundance of aquatic insects. Insects have a largely unexploited potential as biomonitors of metal contamination in nature. A better understanding of the physico-chemical and biological mechanisms mediating trace metal bioavailability and exchange will facilitate the development of general predictive models relating trace metal concentrations in insects to those in their environment. Such models will facilitate the use of insects as contaminant biomonitors.  相似文献   

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Advances in the molecular biological knowledge of neuronal nicotinic acetylcholine receptors (nAChRs) have led to a growing interest by the pharmaceutical industry in the development of novel compounds that selectively modulate nAChR function. The ability of (-)-nicotine, an activator of nAChRs, to enhance attentional aspects of cognition in animals and humans, to exert neuroprotective and anxiolytic-like effects, and presumably to mediate the negative correlation between smoking and Alzheimer's (and Parkinson's) Disease, has focused interest on the potential therapeutic utility of modulators of nAChR function for treatment of some of the deficits associated with these progressive, neurodegenerative conditions. Numerous compounds are known which activate nAChRs and which might serve as lead compounds toward the development of such agents. The pharmacologic diversity of neuronal nAChR subtypes suggests the possibility of developing selective compounds which would have more favourable side-effect profiles than existing agents. This broader class of agents, collectively called cholinergic channel modulators (ChCMs), is anticipated to encompass compounds which would have more favourable side-effect profiles than existing agents, which generally exhibit low selectivity. This selectivity may be achieved by preferentially activating some subtypes of nAChRs (i.e., Cholinergic Channel Activators, ChCAs) or inhibiting the function of other subtypes (Cholinergic Channel Inhibitors, ChCIs). An overview of the biology of nAChRs and the rationale for the use of ChCMs for the treatment of dementia related to neurodegenerative diseases are presented, followed by a discussion of lead compounds and compounds under consideration for clinical evaluation.  相似文献   

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In order to find out the values of the steroid resources for the future use. the compositions and contents of steroidal sapogenins from 13 domestic plants have been investigated. As a result,Dioscorea nipponica, D. quinqueloba andSmilax china were found to have large amount of diosgenin. And pennogenin inTrillium kamtschaticum andParis verticillata, yuccagenin inAllium fistulosum, hecogenin inAgave americana and neochlorogenin inSolanum nigum were appeared to be major steroidal sapogenins.  相似文献   

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