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首页> 外文期刊>International Journal of Pharmaceutics >Transdermal delivery of antiparkinsonian agent, benztropine. I. Effect of vehicles on skin permeation.
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Transdermal delivery of antiparkinsonian agent, benztropine. I. Effect of vehicles on skin permeation.

机译:抗帕金森病剂苯并曲平的透皮给药。 I.载剂对皮肤渗透的影响。

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The influence of pH and various lipophilic and hydrophilic vehicles on the epidermal permeation of benztropine (BZ) free base and its mesylate salt were studied in vitro using the hairless mouse (HLM) and human cadaver (HC) skin membranes. The pH-partition behavior of BZ base (pK(a)=10) was examined using n-octanol and Britton-Robinson buffers over the pH range of 5-12. Unexpectedly, the ionized species of BZ yielded a high partition coefficient (log K(octanol/water)=2. 14), which was reflected by its relatively high skin permeability (P=1.6x10(-2)cm h(-1)). BZ base delivered from a lipophilic vehicle with a solubility parameter range of 7.1-10.3 (cal cm(3))(1/2) exhibited a significantly enhanced rate of permeation as compared to that attained from a hydrophilic vehicle of solubility parameter range between 12.5-23.4 (cal cm(3))(1/2). Among the neat solvents examined, a lipophilic carrier, isopropyl myristate (IPM) provided the most enhancing effect on the permeation of BZ base. In addition, the neat IPM carrier offered the maximum BZ base flux of 150 &mgr;g per cm(2) h(-1) across HC skin, which was approximately 16 times greater than the target delivery rate of BZ from a 10-cm(2) device. In comparison, BZ base exhibited a 2-60 times greater flux than BZ mesylate when delivered from the neat solvents. However, interestingly enough, the binary cosolvents consisting of IPM and short-chain alkanols such as ethanol (EtOH), isopropanol (iPrOH), and tertiary butanol (tBtOH), in particular a 2:8 combination, produced a marked synergistic enhancement of BZ flux from the mesylate salt, whereas a retarding effect was noticed for the permeation of BZ base. The enhancement potency for the BZ mesylate permeation increased linearly with the carbon number of the branched alcohols present in the binary mixtures. A tBtOH-IPM (2:8) combination produced the highest BZ flux from the mesylate salt, i.e. , 2016 mg per cm(2) h(-1), which was 100-fold greater than from water and 44-540-fold greater than the individual neat solvents, respectively. The observed permeation enhancement of BZ mesylate by the alkanol-IPM mixtures was probably as a result of a combination of decreasing barrier ability of the stratum corneum by the binary vehicles and moderately partitioning BZ mesylate through the viable epidermis/dermis.
机译:使用无毛小鼠(HLM)和人体尸体(HC)皮肤膜,体外研究了pH值以及各种亲脂性和亲水性媒​​介物对苯并平(BZ)游离碱及其甲磺酸盐的表皮渗透的影响。使用正辛醇和Britton-Robinson缓冲液在5-12的pH范围内检查了BZ碱的pH分配行为(pK(a)= 10)。出乎意料的是,BZ的离子化物种产生了高分配系数(log K(辛醇/水)= 2。14),这由其较高的皮肤渗透性反映出来(P = 1.6x10(-2)cm h(-1) )。从溶解度参数范围为7.1-10.3(cal cm(3))(1/2)的亲脂性媒介物递送的BZ碱与从溶解度参数范围为12.5的亲水性媒介物获得的渗透速率相比显着提高-23.4(cal cm(3))(1/2)。在所检查的纯溶剂中,亲脂性载体肉豆蔻酸异丙酯(IPM)对BZ碱的渗透作用最强。此外,纯净的IPM载体在HC皮肤上提供的最大BZ基础通量为每厘米(2)h(-1)150 mg / g,这比10厘米BZ的目标传递速率大约大16倍(2)设备。相比之下,当从纯溶剂中递送时,BZ碱的通量是甲磺酸BZ的2-60倍。然而,有趣的是,由IPM和短链烷醇(例如乙醇(EtOH),异丙醇(iPrOH)和叔丁醇(tBtOH))组成的二元助溶剂(特别是2:8的组合)产生了显着的BZ协同增效作用甲磺酸盐的通量,而BZ碱的渗透有阻滞作用。随着二元混合物中支链醇碳原子数的增加,BZ甲磺酸盐渗透的增强能力呈线性增加。 tBtOH-IPM(2:8)组合从甲磺酸盐产生最高的BZ通量,即2016 mg / cm(2)h(-1),比水高100倍,是44-540倍分别大于各个纯溶剂。链烷醇-IPM混合物观察到的甲磺酸BZ渗透性增强可能是由于二元载体降低了角质层的屏障能力以及通过活的表皮/真皮适度分配甲磺酸BZ的结果。

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