• 제목/요약/키워드: lipid%3A water partition coefficient

검색결과 6건 처리시간 0.018초

세팔로스포린 3'-퀴놀론의 물리화학적 성질, 안정성 및 체내약물동태 (Physicochemical Properties, Stabilities and Pharmacokinetics of Cephalosporin 3'-Quinolone Dithiocarbamate)

  • 나성범;공재양;김완주;지웅길
    • 약학회지
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    • 제37권6호
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    • pp.638-646
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    • 1993
  • A cepfialosporin with an aminothiazoiylmethoxyimino-type side chain at the 7 position and bicyclic quinolone dithicarbamate at the 3' position was synthesized. It has broad and potent antivacterial activity in vitro. The antibacterial spectrum reflects contributions of both the cephalosporin moiety and the quinolone moiety. Thus, this compound was named DACD implying a dualaction cephalosporin derivative. In this paper, the physicochemical proper-ties (lipid-water partition, pKa), stability and pharmacokinetics of DACD were determined and compared with cefotaxime 3'-norfloxacin dithiocarbamate (CENO). Stability tests were studied in pH 1.20, 6.80 and 8.00 buffers and in the presence of AB type human plasma, rat liver homogenate and its .betha.-lactamase. The pharmacokinetic parameters of DACD were evaluated in mice after a single intravenous dose of 40 mg/kg. The results are as follows. The lipid-water partition coefficient of DACD was higher than that of CENO. The calculated pKa values of CENO and DACD, were 6.82$\pm$0.03, 7.53$\pm$0.21, respectively. In the hydrolysis test, half-lives (t$^{1/2}$) of CENO and DACD was 66.0 hr and 80.0 hr in pH 6.80 buffer, 190 hr and 91.4 hr in pH 8.00 buffer. CENO and DACD were rapidly hydrolyzed in human plasma and in rat liver hornogenate. Half-lives (t$_{1/2}$ of CENO and DACD were 1.29 hr and 1.15 hr in hyman plasma, 0.62 hr and 0.71 hr rat liver homogenate. In $\beta$-lactamase stability test, CENO and DACD were very stable to the .betha.-lactamases obtained from three different strains. Half-life (t$_{1/2}$) and areas under the curve (AUC) in mice were 2.33 hr and 15.97 (mg.h/1), respectively.

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이부프로펜의 피페라진 유도체에 대한 약리활성연구 (Studies of Pharmacological Activity on the Piperazine Derivatives of Ibuprofen)

  • 조한진;나성범;남상철;박목순;지웅길
    • 약학회지
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    • 제34권2호
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    • pp.126-132
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    • 1990
  • To enhance the activity of ibuprofen, amides of ibuprofen, 1-piperazinyl-2-(4-isobutylphenyl)propionamide(Ibu-P.A.) and 1-(4-methylpiperazinyl)-2-(4-isobutylphenyl)propionamide (Ibu-M.P.), were synthesized and the pharmaceutical properties and the pharmacological activities of the amides were studied. The lipid:water partition coefficients and pKa values were examined in vitro, and the antiinflammatory effect, analgesic effects, acute toxicity, and intestinal absorption were studied for the amides and compared with ibuprofen in vivo. The results are summarized as belows; 1) The lipid:water partition coefficients of Ibu-M.P. were higher than those of ibuprofen. 2) The calculated pKa values of ibuprofen and Ibu-M.P. were 5.49 and 8.66, respectively. 3) The antiinflammatory effects of ibuprofen, Ibu-P.A., and Ibu-M.P. were same intensity, but the duration of the effects of Ibu-P.A. and Ibu-M.P. were longer than that of ibuprofen. 4) The analgesic effect of Ibu-M.P. was more potent than those of ibuprofen and Ibu-P.A. in the acetic acid-induced writhing test. 5) The $LD_{50}$ was 495 mg/kg for ibuprofen, 187 mg/kg for Ibu-M.P., and over 1250 mg/kg for Ibu-P.A.. 6) The absorption rate constants(k) and half-life($t_{1/2}$) were 0.74($hr^{-1}$) and 0.94(hr) for ibuprofen, and 0.72 ($hr^{-1}$) and 0.96 (hr) respectively for Ibu-M.P..

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경피흡수를 위한 케토롤락 하이드로겔의 제제설계 및 평가 (Formulation Design and Evaluation of Ketorolac Tromethamine Hydrogel for Transdermal Delivery System)

  • 조인숙;이계원;이종화;지웅길
    • Journal of Pharmaceutical Investigation
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    • 제33권1호
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    • pp.21-28
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    • 2003
  • Ketorolac tromethamine(KT) is a nonsteroidal agent with potent analgesic and moderate anti-inflammatory activity. The lipid-water partition coefficient of KT was evaluated and KT gel was formulated as a gel containing different pH, different concentrations of polymer (poloxamer 407, carbopol 941), propylene glycol, ethanol and various enhancers. The resulting KT gels were evaluated with respect to their viscosity, in vitro drug permeation rate through hairless mouse skin and stability. In n-octanol and chloroform, the lipid-water partition coefficient of KT was the highest at pH 4 phosphate buffer. The apparent viscosity of KT gel increased with an increase in gel pH, polymer and enhancer concentration. But the apparent viscosity of KT gel decreased with an increase in ethanol concentration. The permeation rate of KT through hairless mouse skin from gels different pH was maximum at pH 4 which is close to KT $pK_{a}$ 3.54. The permeation rate decreased with an increase in polymer, propylene glycol concentration. But the permeation rate increased with an increase in ethanol. The increase of drug concentration from 1 to 3% induced linear increase in permeation rate. The best enhancer was the combination of $Labrasol^{\circledR},\;Transcutol^{\circledR}$, oleic acid and l-menthol. In the accelerated stability test(25, 40 and $50{\circ}C$), pH 5 gel was most stable and pH 4 gel was most unstable for 90 days.

Pranoprofen Argininate 및 Pranoprofen Lysinate의 약제학적 연구 (Pharmaceutical Study on Pranoprofen Argininate and Pranoprofen Lysinate)

  • 지웅길
    • Journal of Pharmaceutical Investigation
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    • 제17권4호
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    • pp.197-204
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    • 1987
  • Novel pranoprofen algininate and lysinate salts were manufactured and their salt formation was confirmed by melting point, infrared spectroscopy, nuclear magnetic resornance spectroscopy, differential scanning calorimetry and powder X-ray diffractometry. The physical properties of pranoprofen lysinate and argininate salts were compared with those of pranoprofen through in vitro and in vivo tests. Solubility, $pK_a$ and lipid-water partition coefficient were measured through in vitro experiments, while antiinflammatory efficacy, analgesic effect, acute toxicity and in situ absorption were tested through in vivo experiments. The results obtained were as follows: 1) The solubilities of pranoprofen argininate and lysinate salts were increased markedly in pH 6.8 and pH 7.5 phosphate buffer solutions, comparing with that of pranoprofen itself. 2) $pK_a$ values of pranoprofen, pranoprofen argininate and lysinate salts were 6.34, 7.99 and 7.56 in carbon tetrachloride, and 5.86, 6.69 and 7.92 in chloroform, respectively by liquid-liquid partition method. 3) The lipid-water partition coefficients of pranoprofen argininate and lysinate salts were increased more than that of pranoprofen in carbon tetrachloride, chloroform, or benzene-pH 6.8 buffer system, but were nearly identical using pH 1.2 buffer as water phase. 4) Antiinflammatory effects of pranoprofen argininate and lysinate salts were remarkably increased and analgesic effects of the salts were as same as that of pranoprofen. 5) Pranoprofen argininate and lysinate salts were safer than pranoprofen itself in acute toxicity, and the in situ absorption rates of pranoprofen, pranoprofen argininate and lysinate salts were 0.392, 0.960 and $0.762\;hr^{-1}$, respectively according to the rat intestine recirculation experiment.

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5-플로우로우라실 프로드럭의 제조, 물리화학적 성질 및 항암효과 (Synthesis, Physicochemical Properties and Antitumor Activity of 5-Fluorouracil Prodrugs)

  • 지웅길;이계원
    • 약학회지
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    • 제40권3호
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    • pp.279-292
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    • 1996
  • To assess their stability as a prodrug of 5-fluorouracil (5-FU), four N-acyloxycarbonyl derivatives (1-(N-tert-butyloxycarbonyl)glycyloxymethyl-5-FU :BGFU, 1-(N-tert-butyloxycar bonyl)-leucyloxymethyl-5-FU:BLFU, 1-(N-tert-carbobenzyloxymethyl) glycyloxymethyl-5-FU:CGFU and 1-(N-tert-carbobenzlyoxymethyl)leucyloxymethyl-5-FU:CLFU) possessing differently protected amino acids, and two acetic acid derivatives (5FU-1-acetylpentane:FUAP and 5-FU-1-acetylhexane:FUAH) were synthesized and their physicochemical properties, hydrolysis kinetics, acute toxicity and antitumor activity were evaluated. The lipid-water partition coefficients of six 5-FU prodrugs were higher than that of 5-FU and their aqueous solubilities were in the following rank order; BGFU>FUAP>CGFU>BLFU>CLFU${\simeq}$FUAH. The hydrolysis of N-acyloxycarboyl derivatives, greater at higher pH, was enhanced in presence of liver homogenate or human plasma. Meanwhile, acetic acid ester derivatives, very stable, were hydrolyzed by liver homogenate. Absorption rate constants were 0.181, 0.121, 0.111, 0.168, 0.168, 0.116 and 0.125 $hr^{-1}$ for 5-FU, BGFU, BLFU, CGFU, CLFU, FUAP and FUAH, respectively. The cytotoxicity of N-acyloxycarbonyl derivatives was 4 to 5 times lower than that of 5-FU, but that of acetic acid ester derivatives was negligeble. The $LD_{50}$ values were 204, 325.97 (133.59, amount as 5-FU), 708.16 (262.13), 663.50 (211.77), 382.33 (192.54) and 272.33 (130.09) mg/kg for 5-FU, BGFU, CGFU, CLFU, FUAP and FUAH, respectively. While N-acyloxycarbonyl derivatives showed enhanced antitumor activity and therapeutic ratio (3.30, 3.06, 4.19, 3.11 and 1.81 for BGFU, BLFU, CGFU, CLFU and 5-FU, respectively), FUAH and FUAP showed a smaller therapeutic ratio (0.79 and 0.83).

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5-Fluorouracil의 Prodrug에 대한 안정성 및 생체이용율에 관한 연구(I). 1-Glycyloxymethyl-5-fluorouracil HCl의 제조, 물리화학적 성질, 안정성 및 항암효과 (Stability and Bioavailability on Prodrug of 5-Flurouracil (I). Synthesis, Physicochemical Properties, Stabilities and Antitumor Activities of 1-Glycyloxymethyl-5-fluorouracil Hydrochloride)

  • 지웅길;이계원;박목순
    • Journal of Pharmaceutical Investigation
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    • 제22권3호
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    • pp.185-196
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    • 1992
  • To assess its suitability as a prodrug of 5-fluorouracil (5-FU), 1-glycyloxymethyl-5-FU HCl (GFU), a 5-fluorouracil derivative having a glycyloxymethyl group at the N-l position was synthetized. Its physicochemical properties and hydrolysis kinetics, in aqueous solution of pH $1{\sim}10$ and in the presence of human plasma or rat liver homogenate were studied. Its acute toxicity and antitumor activity against sarcoma 180 were also examined, GFU showed higher lipid/water partition coefficient than 5-FU. The calculated $pK_{\alpha}$ values of 5-FU and GFU were 8.02 and 7,20, respectively. The decomposition rates of GFU in aqueous solution showed a pH-dependence over the pH range used, which could be ascribed to solvent catalysed hydrolysis reaction at pH lower than 4,16 and to specific hydroxide ion hydrolysis reaction at pH higher than 4,16, The half-life of GFU was 6,9 min in 80% human plasma solution and less than 3 min in rat liver homogenate at $37^{\circ}C$, The $LD_{50}$ value of 5-FU was 240 mg/kg while that of GFU was 440.6 mg/kg (226 mg as 5-FU). Both of 5FU and GFU showed a strong antitumor activity, Therapeutic ratios of 5-FU and GFU were 3.07 and 3.55, respectively.

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