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In vivo transdermal delivery of diclofenac by ion-exchange iontophoresis with geraniol

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In vivo transdermal delivery of diclofenac by ion-exchange iontophoresis with geraniol

国立国会図書館請求記号
Z53-V41
国立国会図書館書誌ID
10194358
資料種別
記事
著者
Kaoru Kigasawaほか
出版者
Tokyo : Pharmaceutical Society of Japan
出版年
2009-04
資料形態
掲載誌名
Biological and pharmaceutical bulletin 32(4) 2009.4
掲載ページ
p.684~687
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資料種別
記事
著者・編者
Kaoru Kigasawa
Kazuaki Kajimoto
Misuzu Watanabe 他
タイトル(掲載誌)
Biological and pharmaceutical bulletin
巻号年月日等(掲載誌)
32(4) 2009.4
掲載巻
32
掲載号
4
掲載ページ
684~687
掲載年月日(W3CDTF)
2009-04
ISSN(掲載誌)
0918-6158
ISSN-L(掲載誌)
0918-6158
出版事項(掲載誌)
Tokyo : Pharmaceutical Society of Japan
出版地(国名コード)
JP
本文の言語コード
eng
NDLC
対象利用者
一般
所蔵機関
国立国会図書館
請求記号
Z53-V41
連携機関・データベース
国立国会図書館 : 国立国会図書館雑誌記事索引
書誌ID(NDLBibID)
10194358
整理区分コード
632

デジタル

要約等
A novel iontophoretic system utilizing ion-exchange membranes is effective for selective transdermal delivery of ionized drugs. In the present study, we examined <i>in vivo</i> availability and safety of ion-exchange iontophoresis in the transdermal delivery of anionic diclofenac, a well known anti-inflammatory medication, to rat dorsal skin. While iontophoresis increased the plasma concentration of diclofenac sodium and skin injury was not observed, no anti-inflammatory effect was exerted. To enhance the efficiency of transdermal delivery of diclofenac sodium, iontophoresis was combined with topical application of one of three terpenes (menthol, nerolidol or geraniol) as chemical enhancers. By combining iontophoresis with geraniol, the plasma concentration of diclofenac sodium increased over 20-fold, and suppression of inflammation was achieved. Skin irritation was not seen even after 1.5 h iontophoresis. The enhancing effect of geraniol is attributed to increased penetration of the drug into the stratum corneum as well as enhanced transport across the anion-exchange membrane. Ion-exchange iontophoresis combined with geraniol is a highly effective transdermal delivery system.
DOI
10.1248/bpb.32.684
オンライン閲覧公開範囲
インターネット公開
連携機関・データベース
科学技術振興機構 : J-STAGE

デジタル

要約等
A novel iontophoretic system utilizing ion-exchange membranes is effective for selective transdermal delivery of ionized drugs. In the present study, we examined <i>in vivo</i> availability and safety of ion-exchange iontophoresis in the transdermal delivery of anionic diclofenac, a well known anti-inflammatory medication, to rat dorsal skin. While iontophoresis increased the plasma concentration of diclofenac sodium and skin injury was not observed, no anti-inflammatory effect was exerted. To enhance the efficiency of transdermal delivery of diclofenac sodium, iontophoresis was combined with topical application of one of three terpenes (menthol, nerolidol or geraniol) as chemical enhancers. By combining iontophoresis with geraniol, the plasma concentration of diclofenac sodium increased over 20-fold, and suppression of inflammation was achieved. Skin irritation was not seen even after 1.5 h iontophoresis. The enhancing effect of geraniol is attributed to increased penetration of the drug into the stratum corneum as well as enhanced transport across the anion-exchange membrane. Ion-exchange iontophoresis combined with geraniol is a highly effective transdermal delivery system.
オンライン閲覧公開範囲
インターネット公開
参照
Noninvasive and per-sistence transfollicular drug delivery system using a combination of liposome and iontophoresis
Electric Stimulus Opens Intercellular Spaces in Skin
電位勾配を用いた経皮投与の基礎理論と応用
参照
Enhanced skin permeation of diclofenac by iontophoresis: in vitro and in vivo studies
Characterization of the Permselective Properties of Excised Human Skin During Iontophoresis
lontophoretic Devices for Drug Delivery
A RAPID METHOD OF TOTAL LIPID EXTRACTION AND PURIFICATION
The effects of electric current applied to skin: A review for transdermal drug delivery
The effect of iontophoresis and vehicle pH on the in-vitro permeation of lignocaine through human stratum corneum
Enhancing effect of terpenes on the in vitro percutaneous absorption of diclofenac sodium
A Review of Selected Investigational Nonsteroidal Antiinflammatory Drugs of the 1980s
Clinical Pharmacokinetics of Diclofenac
Iontophoresis: Applications in Transdermal Medication Delivery
The effect of terpene concentrations on the skin penetration of diclofenac sodium
Comparison of Depolarizing and Direct Current Systems on Iontophoretic Enhancement of Transport of Sodium Benzoate Through Human and Hairless Rat Skin
Iontophoretic Delivery Model Inorganic and Drug Ions
Iontophoretic Delivery of Nonpeptide Drugs: Formulation Optimization for Maximum Skin Permeability
Terpenes and the Lipid–Protein–Partitioning Theory of Skin Penetration Enhancement
Transdermal iontophoresis of insulin
Iontophoretic Drug Delivery: Effects of Physicochemical Factors on the Skin Uptake of Nonpeptide Drugs
Influence of Electrical and Chemical Factors on Transdermal Iontophoretic Delivery of Three Diclofenac Salts.
Effect of lipophilicity on in vivo iontophoretic delivery
連携機関・データベース
国立情報学研究所 : CiNii Research
書誌ID(NDLBibID)
10194358
NII論文ID
110007160679