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经皮睾酮递送:阴囊与非阴囊递送系统的比较

Transdermal testosterone delivery: comparison between scrotal and nonscrotal delivery systems.

作者信息

Lin S, Xing Q F, Chien Y W

机构信息

Controlled Drug-Delivery Research Center, College of Pharmacy, Rutgers University, Piscataway, New Jersey 08854, USA.

出版信息

Pharm Dev Technol. 1999 Aug;4(3):405-14. doi: 10.1081/pdt-100101376.

Abstract

The purpose of this investigation was to study the bioequivalence of two testosterone transdermal delivery systems (T-TDSs). Testoderm, designed to deliver testosterone through scrotal skin, and Androderm, designed for nonscrotal permeation. In vitro permeation and release kinetics as well as in vivo pharmacokinetics in the castrated Yucatan miniature swine (minipigs) model of both T-TDSs were studied side by side under the same experimental conditions. In vitro skin permeation kinetics studies demonstrated that testosterone permeates through minipig dorsal skin at zero-order kinetics from both T-TDSs. The nonscrotal T-TDS, however, has a permeation rate which is approximately 13 times higher than that for the scrotal T-TDS. The release of testosterone from the nonscrotal T-TDS showed a biphasic release profile between cumulative amount released and time, whereas a monophasic release profile between cumulative amount released and square root of time was observed for the scrotal T-TDS. Pharmacokinetic analysis of plasma testosterone profiles in minipigs indicated a significant difference (p < 0.001) in daily dose of testosterone delivered (1.20 versus 4.83 mg/day), maximum concentration (Cmax) (54.2 versus 218.0 ng/dl), and area under concentration-time curve (AUC0-28)[665 versus 3208 (ng/dl) x hr] between these T-TDSs. However, there is no difference in time to reach Cmax mean residence time, and daily-delivered-dose-normalized Cmax and AUC0-28. The difference in pharmacokinetic profiles resulted from the difference in daily doses delivered, which could be attributed remarkably to the difference in permeation rate (approximately 13-fold) between the nonscrotal and scrotal T-TDSs.

摘要

本研究的目的是探讨两种睾酮透皮给药系统(T-TDS)的生物等效性。Testoderm旨在通过阴囊皮肤递送睾酮,而Androderm则设计用于非阴囊渗透。在相同实验条件下,对两种T-TDS在去势的尤卡坦小型猪(小型猪)模型中的体外渗透和释放动力学以及体内药代动力学进行了并排研究。体外皮肤渗透动力学研究表明,睾酮从两种T-TDS以零级动力学透过小型猪背部皮肤。然而,非阴囊T-TDS的渗透速率比阴囊T-TDS高约13倍。非阴囊T-TDS中睾酮的释放显示出累积释放量与时间之间的双相释放曲线,而阴囊T-TDS则观察到累积释放量与时间平方根之间的单相释放曲线。小型猪血浆睾酮曲线的药代动力学分析表明,两种T-TDS在每日递送的睾酮剂量(1.20对4.83mg/天)、最大浓度(Cmax)(54.2对218.0ng/dl)和浓度-时间曲线下面积(AUC0-28)[665对3208(ng/dl)×小时]方面存在显著差异(p<0.001)。然而,达到Cmax的时间、平均驻留时间以及每日递送剂量标准化的Cmax和AUC0-28没有差异。药代动力学曲线的差异是由于每日递送剂量的差异,这可显著归因于非阴囊和阴囊T-TDS之间渗透速率的差异(约13倍)。

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