• Title/Summary/Keyword: Distribution pharmacokinetics

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Effects of processing method on the pharmacokinetics and tissue distribution of orally administered ginseng

  • Chen, Jianbo;Li, Meijia;Chen, Lixue;Wang, Yufang;Li, Shanshan;Zhang, Yuwei;Zhang, Lei;Song, Mingjie;Liu, Chang;Hua, Mei;Sun, Yinshi
    • Journal of Ginseng Research
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    • v.42 no.1
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    • pp.27-34
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    • 2018
  • Background: The use of different methods for the processing of ginseng can result in alterations in its medicinal properties and efficacy. White ginseng (WG), frozen ginseng (FG), and red ginseng (RG) are produced using different methods. WG, FG, and RG possess different pharmacological properties. Methods: WG, FG, and RG extracts and pure ginsenosides were administered to rats to study the pharmacokinetics and tissue distribution characteristics of the following ginsenosides-DRg1, Re, Rb1, and Rd. The concentrations of the ginsenosides in the plasma and tissues were determined using UPLC-MS/MS. Results: The rate and extent of absorption of Rg1, Re, Rb1, and Rd appeared to be affected by the different methods used in processing the ginseng samples. The areas under the plasma drug concentration-time curves (AUCs) of Rg1, Re, Rb1, and Rd were significantly higher than those of the pure ginsenosides. In addition, the AUCs of Rg1, Re, Rb1, and Rd were different for WG, FG, and RG. The amounts of Rg1, Re, Rd, and Rb1 were significantly (p < 0.05) higher in the tissues than those of the pure ginsenosides. The amounts of Re, Rb1, and Rd from the RG extract were significantly higher than those from the WG and FG extracts in the heart, lungs, and kidneys of the rats. Conclusion: Our results show that the use of different methods to process ginseng might affect the pharmacokinetics and oral bioavailability of ginseng as well as the tissue concentrations of Rg1, Re, Rd, and Rb1.

Pharmacokinetics and Tissue Distribution of DWP20349 and DWP20351, New Quinolones Having 3-Amino-4-methyl thiomethylpyrrolidinyl Group on C7, in Rats (C7위치에 3-아미노-4-메칠치오메칠피로리디닐기를 치환한 신규 퀴놀론계 항생물질 DWP20349 및 DWP20351의 흰쥐에서의 체내동태 및 조직분포)

  • Cho, Jae-Youl;Nam, Kweon-Ho;Yoo, Eun-Sook;Lee, Jae-Wook;Yu, Young-Hyo;Park, Myung-Hwan
    • YAKHAK HOEJI
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    • v.41 no.3
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    • pp.312-320
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    • 1997
  • Pharmacokinetics and tissue distribution of DWP20349 and 20351, new quinolones, were examined in rats after a single intravenous and oral administration. Analyses of DWP20349 an d DWP20351 in plasma, tissue, and urine were determined by both HPLC and bioassay(microbiological assay). The plasma concentrations of the drugs declined biexponentially. The terminal half-lives ($t_{1/2\beta}$) of drugs were about 114 min (DWP20349) and 105 min (DWP20351) after intravenous dosing, and were 77 min (DWP20349) and 79 min (DWP20351) after oral dosing. The volume of distrbution at steady-state ($Vd_{ss}$) and total body clearances ($Cl_t$) of DWP20349 and DWP20351 were 760 ml/kg and 1126 ml/kg, and 5ml/min/kg and 10 ml/min/kg, respectively. The extents of bioavailability if DWP20349 and DWP20351 after oral administration were 29% and 28%, respectively. 24 h urinary recoveries measured by bioassay were 1.8% (DWP20349) and 1.3% (DWP20351) after oral dosing, and 2.4% (DWP20349) and 1.9% (DWP20351) after intravenous dosing. Plasma protein binding ratios ranged from 87%-90% (DWP20349) and 61%-68% (DWP20351). These drugs were highly distrbuted by the order of lung, kidney, liver and plasma (DWP20394), and lung, liver, kidney and plasma (DWP20351) after 1 hour orally administered.

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Pharmacokinetics and Tissue Distribution of a New Fluoroquinolone Containing C7-Bicyclic Structure in Rats (C7-이환체 구조를 갖는 새로운 플루오로퀴놀론계 항생물질의 흰쥐 체내동태와 조직분포)

  • 조재열;한승희;김병오;남권호;손호정;이재욱;유영효;박명환
    • Biomolecules & Therapeutics
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    • v.5 no.4
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    • pp.419-425
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    • 1997
  • The pharmacokinetics of DWP20364 (1-cyclopropyl -5-amino-6,8-difluoro-7-(2,7-diazabiclo [3,3,0] oct-4-ene-7-yl)-1,4-dihydro-4-oxoquinoline-3-carboxylic acid), a novel fluoroquinolone containing C7-bicyc-talc structure, were compared with those of ciprofloxacin (CPFX) after single intravenous (i.v.) and oral (p.o.) administration to rats using microbiological assay (bioassay). After i.v. administration to rats, the plasma concentrations of the two drugs declined biexponentially. The terminal half-lives (t$_{1}$2$\beta$/) of DWP20364 were 110$\pm$ 13.2 min and 117$\pm$3.09 min after i.v. and p.o. administration, respectively, and they were significantly higher than those of CPFX (45.5$\pm$9.52 min and 48.3$\pm$ 12.1 min, respectively). Similar results were also obtained from plasma concentrations and area under the plasma concentration-time curves. The total body clearance of DWP20364, 7.82$\pm$0.37 ml/min/kg was significantly slower than that of CPFX, 27.3 $\pm$ 11.1 m1/ min/kg. Above data suggested that the antimicrobial activity of DWP20364 could be longer than that of CPFX. The urinary recovery after i.v. and p.o. administration of DWP20364 was significantly lower than those of CPFX suggesting that the effect of DWP20364 on urinary tract infection could be lower than that of CPFX. The serum protein binding values of DWP20364 at 2$\mu$g/ml were apparently 91.5~93.1% in rats and human. DWP20364 was distributed by the order of liver, lung, kidney, sf)leon, heart, muscle and brain collected at 30 min after orally administered.

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Pharmacokinetics of LB20304, a New Fluoroquinolone, in Rats and Dogs

  • Seo, Mi-Kyeong;Lee, Sun-Hwa;Choi, Yun-Jeong;Jeong, Yi-Na;Lee, Sung-Hack;Kim, In-Chull;Lee, Yong-Hee
    • Archives of Pharmacal Research
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    • v.19 no.5
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    • pp.359-367
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    • 1996
  • The pharmacokinetics of LB20304 was investigated following intravenous (IV) and oral administration to rats and dogs. Additionally, in vitro metabolism and serum protein binding studies were also conducted. The total body clearance, apparent volume of distribution, terminal half-life, and extent of bioavailability were 21.8 ml/min/kg, 2265 ml/kg, 93.6 min, and 30.8% for rats; and 7.95 ml/min/kg, 4144 ml/kg, 363 min, and 81.1% for dogs, respectively. LB20304 was stable in the liver microsome containing NADPH generating system and its serum protein binding was 58.5-65.8% for rats, 19.1-29.6% for dogs, and 56.9-59.6% for humans. Its tissue concentration levels in lever, stomach, small intestine, and kidney were 9.5 to 26.1 times greater than plasma level, but the concentration in testis was quite low and that in brain was negligible in rats. The 48 hr urinary recovery of the dose was 44% for IV dosing and 14% for oral dosing, shereas the 48 hr biliary recovery of the dose was 6.4% for IV dosing and 4.5% for oral dosing in rats. In summary, the pharmacokinetic properties of LB20304 were characterized by its good oral absorption, long plasma half-life, and good tissue distribution.

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Population Pharmacokinetics for Gentamicin in Korean and Caucasian Appendicitis Patients Using Nonparametric Expected Maximum (NPEM) Algorithm (한국인과 코카시안 충수돌기염 환자에서 비모수적 기대최대치(NPEM) 연산방법에 의한 겐타마이신의 모집단 약물동태학)

  • Burm, Jin-Pil
    • Korean Journal of Clinical Pharmacy
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    • v.21 no.2
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    • pp.74-80
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    • 2011
  • Population pharmacokinetics for gentamicin were compared with 20 Korean patients (14 male and 6 female) and 25 Caucasian appendicitis patients (16 male and 9 female). Two to six blood specimens were collected from all patients at the following times : just before a regularly scheduled infusion and at 0.5 hour after the end of a 0.5 hour infusion. Nonparametric expected maximum(NPEM) algorithm for population modeling was used. The estimated parameters were the elimination rate constant(K), the slope(KS) of the relationship between K versus creatinine clearance(Ccr), the apparent volume of distribution (V), the slope(VS) of the relationship between V versus weight, gentamicin clearance(CL) and the slope(CS) of the relationship between CL versus Ccr and the V. The output includes two marginal probability density function(PDF), means, medians, modes, variance, skewness, kurtosis, and CV%. The mean K(KS) were$0.402{\pm}0.129hr^{-1}$ ($0.00486{\pm}0.00197[hr{\cdot}mL/min/1.73m^2]^{-1}$) and $0.425{\pm}0.137hr^{-1}$($0.00432{\pm}0.00168[hr{\cdot}mL/min/1.73m^2]^{-1}$) for Korean and Caucasian populations, respectively. The mean V(VS) were not different at $14.3{\pm}3.69L$($0.241{\pm}0.0511L/kg$) and $15.8{\pm}4.81L$($0.236{\pm}0.0531L/kg$) for Korean and Caucasian populations, respectively (P>0.2). The mean CL(CS) were $5.68{\pm}1.69L/hr$ ($0.0714{\pm}0.0222L/kg[hr{\cdot}mL/min/1.73m^2]$) and $6.29{\pm}1.84L/hr$ ($0.0629{\pm}0.0189L/kg[hr{\cdot}mL/min/1.73m^2]$) for Korean and Caucasian populations, respectively. There are no differences in gentamicin pharmacokinetics between Korean and Caucasian appendicitis patients.

Comparison of Analytical Methods of Tacrolimus in Plasma and Population Pharmacokinetics in Liver Transplant Recipients (Tacrolimus의 혈중농도측정법 비교 및 간이식환자에서의 집단 약동학)

  • Kim, Eun-Young;Kang, Won-Ku;Gwak, Hye-Sun
    • Korean Journal of Clinical Pharmacy
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    • v.18 no.1
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    • pp.60-67
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    • 2008
  • This study aimed to compare a microparticle enzyme immunoassay (MEIA) with a liquid chromatography-tandem mass spectrometry (LC/MS/MS) technique for the measurement of tacrolimus concentrations in adult liver transplant recipients, to investigate how the assay choice influenced the population pharmacokinetics of tacrolimus and to identify patient characteristics that affected pharmacokinetic parameters in each assay. Tacrolimus concentrations from 29 liver (n=52 paired-samples) transplant recipients measured by both MEIA and LC/MS/MS were used to evaluate the performance of these methods in the clinical setting. Tacrolimus pharmacokinetics was studied independently using MEIA and LC/MS/MS data in 70 adult patients using a population approach performed with NONMEM. Patient characteristics which influenced pharmacokinetic parameters in each assay were compared. The relation between LC/MS/MS and MEIA measurements was best described by the regression equation MEIA=1.465*LC/MS/MS-1.336 (r=0.91). Multiple linear regression analysis showed significant inverse relationships between assay difference and hematocrit (Hct) (p<0.025) in liver graft recipients. In MEIA, the population estimate of tacrolimus CL/F and apparent volume of distribution (Vd/F) were found to be 10.1 L/h and 226 L, and in LC/MS/MS, 13 L/h and 305 L respectively. Neither patient's age, weight, gender, grafted hepatic weight, albumin concentration, nor markers of liver function influenced tacrolimus CL/F The final model of CL/F was found to be 10.1+(Hct/Hct mean)$^{12.0}$ in MEIA and 13+(1+Hct/578) in LC/MS/MS indicating that CL/F was influenced by hematocrit.

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Enviromental Influences on Gentamicin Pharmacokinetics by Using Population Pharmacokinetic Methods (모집단 약물동태학 방법에 의한 겐타마이신 약물동태에 미치는 환경의 영향)

  • Burm, Jin-Pil
    • YAKHAK HOEJI
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    • v.56 no.1
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    • pp.48-54
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    • 2012
  • Enviromental differences in gentamicin pharmacokinetics by using population pharmacokinetic methods were compared with 20 Korean patients and 24 Korean-American appendicitis patients. Two to six blood specimens were collected from all patients at the following times : just before a regularly scheduled infusion and at 0.5 hour after the end of a 0.5 hour infusion. Nonparametric expected maximum (NPEM) algorithm for population modeling was used. The estimated parameters were the elimination rate constant (K), the slope (KS) of the relationship between K versus creatinine clearance ($C_{cr}$), the apparent volume of distribution (V), the slope (VS) of the relationship between V versus weight, gentamicin clearance (CL) and the slope (CS) of the relationship between CL versus $C_{cr}$ and the V. The output includes two marginal probability density function (PDF), means, medians, modes, variance and CV%. The mean K (KS) were $0.402{\pm}0.129\;h^{-1}(0.00486{\pm}0.00197\;[h{\cdot}ml/min/1.73\;m^2]^{-1})$ and $0.411{\pm}0.135\;h^{-1}(0.00475{\pm}0.00180\;[h{\cdot}ml/min/1.73\;m^2]^{-1})$ for Korean and Korean-American populations, respectively. The mean V (VS) were not different at $14.3{\pm}3.6l(0.241{\pm}0.0511l/kg)$ and $15.1{\pm}3.84l(0.239{\pm}0.0492l/kg)$ for Korean and Korean-American populations, respectively (p>0.2). The mean CL (CS) were $5.68{\pm}1.69l/h(0.0714{\pm}0.0222l/kg[h{\cdot}ml/min/1.73\;m^2])$ and $5.70{\pm}1.77l/h(0.0701{\pm}0.0215l/kg[h{\cdot}ml/min/1.73\;m^2])$ for Korean and Korean-American populations, respectively. There were no enviromental differences in gentamicin pharmacokinetics between Korean and Korean-American appendicitis patients.

Population Pharmacokinetics for Gentamicin in American and Korean-American Appendicitis Patients Using Nonparametric Expected Maximum(NPEM) Algorithm (비모수적 기대최대치(NPEM)연산방법에 의한 미국인과 재미동포 충수돌기염 환자에게 겐타마이신의 모집단 약물동태학)

  • ;;Stanford Jhee;Gill, Mark A.
    • YAKHAK HOEJI
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    • v.39 no.2
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    • pp.103-112
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    • 1995
  • Population pharmacokinetics for gentamicin were compared with 24 American patients (16 male and 8 female) and 16 Korean-American appendicitis patients(12 male and 4 female). Two to six blood specimens were collected from all patients at the following times: just before a regularly scheduled infusion and at 1/2 hour after the end of a 1/2 hour infusion. Nonparametric expected maximum(NPEM) algorithm for population modeling was used. The estimated parameters were the elimination rate constant(K), the slope of the relationship between K versus creatinine clearance(KS), the apparent volume of distribution(V), the slope of the relationship between V versus weight(VS), gentamicin clearance(CL) and the slope of the relationship between CL versus creatinine clearance and the VS(CS). The output includes a 3-dimensional plot of the joint probability density function(PDF), two marginal PDF, means, medians, modes, variance, skewness, kurtosis, and CV%. The mean K(KS) were 0.424$\pm$0.139(0.00429$\pm$0.00164) and 0.411$\pm$0.135 hr$^{-1}$ (0.00475$\pm$0.00180[hr.mL/min/1.73m$^{2}]^{-1}$) for American and Korean-American populations, respectively. The mean V(VS) were not different at 15.6$\pm$4.77(0.233$\pm$0.0526) and 15.1$\pm$3.84L(0.239$\pm$0.0492 L/kg) for American and Korean-American populations, respectively (P>0.2). The mean CL (CS) were 6.28$\pm$1.85(0.0634$\pm$0.0191) and 5.70$\pm$1.77 L/hr(0.0701$\pm$0.0215 L/kg[hr.mL/min/1.73m$^{2}$)] for American and Korean-American populations, respectively. There are no differences in gentamicin pharmacokinetics between American and Korean-American Appendicitis patients.

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Pharmacokinetics of Phenytoin in Rabbits Pretreated with Diltiazem (딜티아젬 전처리 가토에서 페니토인의 약물동태학적 연구)

  • Park, Jung Mi;Lee, Jin Hwan;Choi, Jun Shik;Burm, Jin Pil
    • Korean Journal of Clinical Pharmacy
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    • v.3 no.2
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    • pp.139-145
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    • 1993
  • This study was attempted to investigate the pharmacokinetics of phenytoin(4mg/kg iv,) in rabbits pretreated with diltiazem(l and 2.5mg/kg) for 7 days. The plasma concentration and area under the curve(AUC) of phenytoin were increased significantly(p<0.05) in rabbits pretreated with diltiazem(2.5mg/kg) compared with those of control rabbits. Volume of distribution and total body clearance were decreased significantly(p<0,05) in rabbits pretreated with diltiazem compared with those of control rabbits. From the results of this experiment, it is desirable that dosage ragimen of phenytoin should be adjusted and that therapeutic drug monitoring should be practiced for reduction of side or toxic effect when phenytoin will be administered with diltiazem in clinical practice.

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PREPARATION AND PHARMACOKINETICS OF METHOTREXATE DELIVERY SYSTEM USING LONG-CIRCULATING LIPOSOMES

  • Hong, Myo-Sook;Kim, Chong-Kook
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1996.04a
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    • pp.287-287
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    • 1996
  • Long-circulating liposomes have prompted interests in using them as a drug delivery system. This improvements in delivery has been thought to be the results from sustained action of liposomes in plasma without RES uptake. Although methotrexate(MTX) has been one of the most widely used antineoplastc drug, its use was limited by prompt RES uptake. The purpose of this study was to prepare long-circulating liposomes for MTX using highly water-soluble polymer (PEG-PE). In vitro, release of MTX from liposomes in phosphate buffer (pH 7.4), rat liver homogenate, and rat plasma was investigated. The pharmacokinetics and organ distribution of fee drug, conventional and long-circulating liposomes were also compared with one another after intravenous administration to rats.

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