• 제목/요약/키워드: ketoprofen lotion

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케토프로펜 로오숀의 약물동력학적 특성과 항염증작용 (Pharmacokinetic Properties and Antiinflammatory Activity of Ketoprofen Lotion)

  • 단현광;배준호;박은석;지상철
    • Biomolecules & Therapeutics
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    • 제6권1호
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    • pp.45-49
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    • 1998
  • The pharmacokinetic properties and antiinflammatory activity of 3% ketoprofen lotion (ID-lotion), formulated with poloxamer 407, were evaluated using rats. For the pharmacokinetic study, the lotion, at the dose of 4.5 mg/kg, was applied on the dorsal skin of rats and the drug concentration in plasma was determined using an HPLC method. As references, ketoprofen suspended in saline was administered orally, and E-lotion, which is a 3% ketoprofen lotion in the Japanese market was applied transdermally. Following the transdermal application of ID-lotion and E-lotion, $C_{max}$ were 316 $\pm$22.3 ng/ml and 163 $\pm$ 12.2 ng/ml, respectively, at the same Tma of 2 hours postdose, while $C_{max}$ and $T_{max}$ after oral administration of the drug were 1,030$\pm$89.1 ng/ml and 0.25 hours, respectively. Relative bioavailabilities of ID-lotion and I-lotion were 69.3% and 34.2%, respectively. The antiinflammatory activity of the two 3% ketoprofen lotions was evaluated with carrageeneninduced edema method after 50 mg of the lotions was applied on the paw of rats. ID-lotion showed 67.6% inhibition of the edema formation, while I-lotion showed 34.\\\\`r%. The calculated ED5o after transdermal application of ID-lotion was 2.5 mg/kg, while that after oral administration was 7.0 mg/kg. Based on these results, the relative equiponderal availability of ID-lotion was 296% compared to the oral administration of ketoprofen.n.n.n.

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케토프로펜 로오숀으로부터 약물의 피부투과 (Skin Permention of Ketoprofen from Lotion)

  • 단현광;이윤석;박은석;지상철
    • Biomolecules & Therapeutics
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    • 제5권4호
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    • pp.357-363
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    • 1997
  • The effects of formulation variables of topical lotion on the skin permeation of ketoprofen were evaluated using excised rat skins. The formulation variables were the amounts of poloxamer 407, drug and ethanol, and penetration enhancers. The Keshary-Chien diffusion cells were used for the diffusion study. The flux of ketoprofen linearly decreased as the concentration of poloxamer increased from 5% to 15% in the preparation, and linearly increased as the amount of drug increased. Penetration enhancers such as fatty acids and fatty alcohols showed markedly enhancing effects at the level of 5%. Among them, the highest flux was shown in linolenic acid. From these results, optimum formula containing 3% ketoprofen, 5% poloxamer 407, 40% ethanol and 5% linolenic acid having the flux of 537.6 $\mu$g/$\textrm{cm}^2$/hr were noted.

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