Krishnaiah Y S R, Chandrasekhar D V, Rama B, Jayaram B, Satyanarayana V, Al-Saidan S M
Department of Pharmaceutics, Faculty of Pharmacy, Health Science Center, Kuwait University, Kuwait.
Skin Pharmacol Physiol. 2005 Nov-Dec;18(6):263-72. doi: 10.1159/000087607. Epub 2005 Aug 19.
Hydroxypropyl methylcellulose (HPMC) gel drug reservoir system prepared with 70:30 v/v ethanol-water solvent system containing 6% w/w of limonene was effective in promoting the in vitro transdermal delivery of nicorandil. The objective of the present study was to fabricate and evaluate a limonene-based transdermal therapeutic system (TTS) for its ability to provide the desired steady-state plasma concentration of nicorandil in human volunteers. The in vitro permeation of nicorandil from a limonene-based HPMC gel drug reservoir was studied across excised rat skin (control), EVA2825 membrane, adhesive-coated EVA2825 membrane and adhesive-coated EVA2825 membrane-excised rat skin composite to account for their effect on the desired flux of nicorandil. The flux of nicorandil from the limonene-based HMPC drug reservoir across EVA2825 membrane decreased to 215.8 +/- 9.7 microg/cm(2).h when compared to that obtained from control, indicating that EVA2825 was effective as a rate-controlling membrane. The further decrease in nicorandil flux across adhesive-coated EVA2825 membrane and adhesive-coated EVA2825 membrane-excised rat skin composite showed that the adhesive coat and skin also controlled the in vitro transdermal delivery. The limonene-based drug reservoir was sandwiched between adhesive-coated EVA2825-release liner composite and a backing membrane. The resultant sandwich was heat-sealed as circle-shaped patch (20 cm(2)), trimmed and subjected to in vivo evaluation in human volunteers against immediate-release tablets of nicorandil (reference formulation). The fabricated limonene-based TTS of nicorandil provided a steady-state plasma concentration of 21.3 ng/ml up to 24 h in healthy human volunteers. It was concluded that the limonene-based TTS of nicorandil provided the desired plasma concentration of the drug for the predetermined period of time with minimal fluctuations and improved bioavailability.
用含6%(w/w)柠檬烯的70:30(v/v)乙醇-水溶剂体系制备的羟丙基甲基纤维素(HPMC)凝胶药物储库系统,在促进尼可地尔的体外透皮给药方面是有效的。本研究的目的是制备并评估一种基于柠檬烯的透皮治疗系统(TTS),以确定其在人类志愿者体内提供所需尼可地尔稳态血浆浓度的能力。研究了尼可地尔从基于柠檬烯的HPMC凝胶药物储库在切除的大鼠皮肤(对照)、EVA2825膜、涂有粘合剂的EVA2825膜以及涂有粘合剂的EVA2825膜-切除的大鼠皮肤复合物上的体外渗透情况,以考量它们对尼可地尔所需通量的影响。与对照相比,基于柠檬烯的HMPC药物储库中尼可地尔透过EVA2825膜的通量降至215.8±9.7μg/cm²·h,这表明EVA2825作为速率控制膜是有效的。尼可地尔透过涂有粘合剂的EVA2825膜以及涂有粘合剂的EVA2825膜-切除的大鼠皮肤复合物的通量进一步降低,这表明粘合剂涂层和皮肤也控制了体外透皮给药。基于柠檬烯的药物储库夹在涂有粘合剂的EVA2825-释放衬垫复合物和背衬膜之间。将所得的三明治结构热封成圆形贴片(20 cm²),修剪后在人类志愿者体内与尼可地尔速释片(参比制剂)进行体内评估。所制备的基于柠檬烯的尼可地尔TTS在健康人类志愿者体内长达24小时提供了21.3 ng/ml的稳态血浆浓度。得出的结论是,基于柠檬烯的尼可地尔TTS在预定时间段内提供了所需的药物血浆浓度,波动最小且生物利用度提高。