• Title/Summary/Keyword: Transdermal Permeation

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Transdermal Delivery of Ethinylestradiol UsingEthylene-vinyl Acetate Membrane

  • Shin, Sang-Chul;Byun, Soo-Young
    • Journal of Pharmaceutical Investigation
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    • v.25 no.3
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    • pp.53-59
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    • 1995
  • Ethinylestradiol (EE)-containing matrix was fabricated with ethylene-vinyl acetate(EVA) copolymer to control the release of the drug, Effect of addition of PEG 400 as receptor solution, the stripping of skin and Azone pretreatment on skin on the permeation of EE through the excised mouse skin was also studied. The permeation rate of EE through the excised mouse skin was affected by the PEG 400 volume fraction. The Azone pretreatment on skin didn't affect on the steady state flux, however, the lag time was shortened. The permeation rate of EE through the stripped skin was much larger than that through the whole skin. It showed that the stratum corneum acts as a barrier of skin permeation. The fact that there is little difference in EE permeation between the intact skin and the stripped skin with EVA membrane shows the permeation of EE through the mouse skin is mainly controlled by the membrane.

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Skin Permeation Characteristics of Estradiol Patches and Their Comparative Efficacy Test in Ovariectomized Rabbits (에스트라디올 패취의 피부투과 특성 및 난소제거 토끼에서의 비교 효력시험)

  • Ryoo, Je-Phil;Choi, Mi-Suk;Choi, Jong-Kun;Kim, Soo-Hyeon;Kim, Eung-Goo;Yoon, Byung-Il
    • Journal of Pharmaceutical Investigation
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    • v.25 no.1
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    • pp.47-54
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    • 1995
  • Transdermal patch formulations of estradiol to treat post-menopausal symptoms and prevent osteoporosis in women were developed and evaluated for the permeation characteristics through the excised hairless mouse abdorminal skin and the uterotropic effect on the ovariectomized rabbits. The design of patch formulations was optimized by varying several formulation parameters, such as type of enhancers, amount of enhancers, amount of drug loading and coating thickness. Compared to a commercially available transdermal product, several patch formulations showed the similar skin permeation profiles (following zero-order kinetics), but their skin permeation rates were lasted for the longer period (a week). In one-week uterotropic efficacy test in the ovariectimized rabbits, the selected patch formulations showed the positive effect in atrophy of the urogenital epithelium. The mean values of uterus weight in rabbits after application of patches containing estradiol were much higher than those in control group (containing no drug).

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Transdermal Permeation of $[{^3}H]Acyclovir$ Using Niosome (니오솜을 이용한 $[^{3}H]$아시클로버의 경피투과)

  • Park, Sae-Hae;Lee, Soon-Young;Yong, Chul-Soon
    • Journal of Pharmaceutical Investigation
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    • v.28 no.1
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    • pp.43-50
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    • 1998
  • Niosomes are vesicles formed from synthetic non-ionic surfactants, offering an alternative to chemically unstable and expensive liposomes as a drug carrier. Non-ionic surfactant and cholesterol mixture film leads to the formation of vesicular system by hydration with sonication method. The formation of niosome was ascertained by negative staining of TEM. The entrapment efficiency of niosomal suspension was gradually increased with increasing the ratio of cholesterol to surfactant. It was found that the niosome with 6 : 4 (polyoxyethylene 2-cetyl ether: cholesterol) ratio was more stable than those with other ratios. The topical application of acyclovir(ACV) in the treatment of herpes simplex virus type 1(HSV-1) skin disease has a long history. There are an increasing number of reports, however, in which topical ACV therapy is not as effective as oral administration. Lack of efficacy with topical ACV has been hypothesized to reflect the inadequate delivery of drug to the skin. We investigated the permeation of niosome containing $[^{3}H]ACV$ in hairless mouse skin using Franz diffusion cell model. Permeation coefficient(P) of aqueous ACV was $6.7{\times}10^{-4}\;(cm/hr)$ and that of ACV in niosome was $23.4{\times}10^{-4}\;(cm/hr)$, suggesting about 3.5 times increase in the transdermal permeation.

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Transdermal Delivery of Ceramide Using Sodium Deoxycholate-based Deformable Liposomes

  • Kim, Dong-Chan;Noh, Sang-Myoung;Kim, Young-Bong;Baek, Kwang-Hyun;Oh, Yu-Kyoung
    • Journal of Pharmaceutical Investigation
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    • v.38 no.5
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    • pp.319-323
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    • 2008
  • For transdermal delivery of ceramides, various liposomes formulations were studied and evaluated. Sodium deoxycholate (SDC), Tween 20 and Span 85 were used as edge activators. The skin permeation of ceramides was performed using a Franz cell apparatus with hairless mouse skin. Among edge activators, SDC showed the higher values of deformability index and skin permeation than did others. For optimization of formulations, we varied the ratios of lipids to edge activators and the compositions between phosphatidylcholine (PC) and ceramides. The optimal ratio of lipid to SDC was observed to be 6:1 (w:w) and that of PC and ceramide was 1:1. Our results suggest that the skin permeation of ceramides could be enhanced by optimized deformable formulations of liposomes containing SDC as a major edge activator.

Low-frequency Ultrasound Enhanced Transdermal Drug Delivery Across Rat Skin

  • Lee, Hwa-Jin;Kim, Jong-Youl;Park, Jin-Nam;Shin, Young-Hee
    • Journal of Pharmaceutical Investigation
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    • v.37 no.6
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    • pp.365-368
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    • 2007
  • The primary aim of this study was to investigate the enhancement effect of low-frequency ultrasound on skin permeation. In vitro permeation experiments were performed using Franz modified diffusion cells with ketoprofen as model drug. The effect of various ultrasound factors-ultrasound application mode (continuous mode and discontinuous mode), ultrasound intensity (0.26 $W/cm^2$, and 0.29 $W/cm^2$) and duty cycle (3%, 16%, 50%, and 83%) were studied. The highest permeation was observed at 0.29 $W/cm^2$ intensity, 50% duty cycle, and discontinuous mode. The result suggested the feasibility of low frequency ultrasound application for the phonophoretic transdermal drug delivery system.

Enhanced Controlled Transdermal Delivery of Hydrochlorothiazide from an Ethylene-vinyl Acetate Matrix

  • Kim, Dal-Keun;Park, Jung-Chan;Chang, Ik-Hyun;Kang, Chung;Ryu, Sang-Rok;Shin, Sang-Chul
    • Journal of Pharmaceutical Investigation
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    • v.40 no.3
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    • pp.167-173
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    • 2010
  • Repeated oral administration of hydrochlorothiazide, a loop diuretic, due to transient high blood levels, may cause adverse effects such as gastric disturbance, nausea, high blood sugar, and hyper lipidemia. Transdermal administration could avoid some of these systemic side effects and gastric disorders. We have developed a matrix using ethylene-vinyl acetate (EVA), a heat-processible and flexible material, for transdermal delivery of hydrochlorothiazide. Drug solubility was highest at 40% PEG-400 volume fraction. Drug release increased as concentration increased with a linear relationship between the release rate and the square root of loading dose. Increasing temperature increased drug release from the EVA matrix. The activation energy, measured from the slope of log P versus 1000/T, was 11.9 kcal/mol for a 2.5% loading dose from EVA matrix. Diethyl phthalate had the highest plasticizing effects on the release of hydrochlorothiazide. To increase the skin permeation of hydrochlorothiazide from the EVA matrix, enhancers such as the saturated fatty acids, the unsaturated fatty acids, and the non-ionic surfactants were added to the EVA matrix, and skin permeation was evaluated using a modified Keshary-Chien diffusion cell fitted with intact excised rat skin. Polyoxyethylene 23-lauryl ether showed the highest enhancing effects. In conclusion, transdermal delivery of hydrochlorothiazide could be improved from an EVA matrix containing plasticizer and permeation enhancer.

Transdermal permeation-enhancing activity of N-adamantyl n-alkanamides for lbuprofen in the rabbit

  • Han, Suk-Kyu;Park, Yong-Hoon;Ko, Young-Ill;Kim, Young-Mi
    • Archives of Pharmacal Research
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    • v.19 no.2
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    • pp.95-99
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    • 1996
  • Four N-adamantyl n-alkanamides were prepared by amide condensation reaction between amantadine and n-alkanoic acid. Their enhancing activity on the penetration of ibuprofen through rabbit skin from petrolatum ointment was evaluated in in-vivo experiment. The experiments showed that the compounds have a strong transdermal penetration-enhancing activity, and their activities were comparable with that of Azone. The measurements of the fluorescence polarization of DP[-i-labelled DPPC liposomes showed that these compounds considerablly decreased the phase transition temperature of the liposomes. The mechanism of the transdermal penetration-enhancing activity of the compounds was ascribed to the reduction of the resistance to drug flux of the stratum corneum lipid layers due to the loose packing of the layers when the bulk head group of the enhancers inserts into the layers.

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In vitro and In vivo Evaluation of Novel Gel Formulations of Testosterone for Transdermal Delivery

  • Heo, Sung-Koun;Cho, Young-Seok;Han, Sang-Dae;Chang, Jin-Kang;Yoon, Eun-Ju;Ko, Dae-Woong;Lim, Chang-Baeg;Chung, Suk-Jae;Shim, Chang-Koo;Kim, Dae-Duk
    • Journal of Pharmaceutical Investigation
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    • v.35 no.5
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    • pp.329-332
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    • 2005
  • HPMC-based novel gel formulations for the transdermal delivery of testosterone (TS) were developed, and the effect of various skin permeation enhancers was studied in vitro and in vivo. In vitro hairless mouse skin permeation of TS from the gel was investigated using Keshary-Chien diffusion cells for 8 hours at $37^{\circ}C$. In vivo plasma concentration profiles of TS after applying the gel on the abdominal skin of rat were determined using a commercial radioimmunoassay kit. Hairless mouse skin permeation of TS increased with the addition of permeation enhancers both in vitro and in vivo. Combination of diethanolamine (2%) and N-methylpyrrolidone (NMP, 6%) was the most effective among tested. Plasma concentration of TS significantly increased for at least 24 hours with the addition of diethanolamine and NMP. These results suggest the feasibility of the development of a HPMC-based gel formulation for the transdermal delivery of TS.

Formulation and In vitro Evaluation of Transdermal Drug Delivery System for Galantamine

  • Hossain, Md. Kamal;Subedi, Robhash Kusam;Chun, Myung-Kwan;Kim, Eun-Jung;Moon, Hwan-Shik;Choi, Hoo-Kyun
    • Journal of Pharmaceutical Investigation
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    • v.41 no.1
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    • pp.1-7
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    • 2011
  • The effects of different formulation variables including pressure sensitive adhesive (PSA), permeation enhancer, thickness of the matrix and loading amount of drug on the transdermal absorption of galantamine were investigated across the hairless mouse skin. The permeation profile of galantamine was different depending on the types of PSA, loading amount of drug, thickness of the matrix and type of enhancer used. Highest flux of galantamine was obtained from acrylic PSA but crystals were formed in the patch within 72 h. Among the PSAs screened, crystal formation was not observed only in the patches formulated in Styrene Butadiene Styrene (SBS) matrix. Permeation rate increased linearly as the concentration of galantamine in SBS matrix increased from 2.5 to 15% w/w. Among the enhancers screened, Brij$^{(R)}$ 30 provided highest flux of galantamine. Matrix thickness of 80 ${\mu}m$ was optimum for maintaining adhesiveness as well as consistently delivering galantamine for longer period of time.

Enhanced Transdermal Delivery of Furosemide from the EVA Matrix through the Rat Skin

  • Chang, Ik-Hyeon;Cho, Hwa-Young;Noh, Jin-Hyung;Park, Jung-Chan;Park, Yong-Sun;Kim, Seong-Jin;Shin, Sang-Chul
    • Journal of Pharmaceutical Investigation
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    • v.39 no.1
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    • pp.19-21
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    • 2009
  • This study was performed to examine the possibility of increasing the level of furosemide permeation from the ethylene-vinyl acetate (EVA) matrix through the skin by incorporating various enhancers in the EVA matrix. The effects of the enhancers on the level of furosemide permeation through the skin were evaluated using Franz diffusion cells with intact excised rat skins. The enhancers examined were the fatty acids (saturated, unsaturated), the pyrrolidones, the propylene glycol derivatives, the glycerides and the non-ionic surfactants. Among the enhancers used, polyoxyethylene-2-oleyl ether (a non-ionic surfactant) showed the best enhancement. The polyoxyethylene 2-oleyl ether as a permeation enhancer could be used for development of furosemide-EVA transdermal matrix system.