Hydroxyzine from topical phospholipid liposomal formulations: evaluation of peripheral antihistaminic activity and systemic absorption in a rabbit model.

AAPS PharmSci Pub Date : 2003-11-05 DOI:10.1208/ps050428
Abeer A W Elzainy, Xiaochen Gu, F Estelle R Simons, Keith J Simons
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引用次数: 24

Abstract

Hydroxyzine, an effective but sedating H1-antihistamine is given orally to treat allergic skin disorders. This study was performed to assess the peripheral H(1)-antihistaminic activity and extent of systemic absorption of hydroxyzine from liposomes applied to the skin. Using L-alpha-phosphatidylcholine (PC), small unilamellar vesicles (SUVs) and multilamellar vesicles (MLVs) containing hydroxyzine were prepared. Hydroxyzine in Glaxal Base (GB) was used as the control. Using a randomized, crossover design, each formulation, containing 10 mg of hydroxyzine, was applied to the shaved backs of 6 rabbits (3.08 +/- 0.05 kg). Histamine-induced wheal tests and blood sampling were performed at designated time intervals up to 24 hours. Compared with baseline, hydroxyzine from all formulations significantly suppressed histamine-induced wheal formation by 75% to 95% for up to 24 hours. Mean maximum suppression, 85% to 94%, occurred from 2 to 6 hours, with no differences among the formulations. The areas of plasma hydroxyzine concentration versus time area under the curve (AUCs) from PC-SUV and PC-MLV, 80.1 +/- 20.8 and 78.4 +/- 33.9 ng/mL/h, respectively, were lower than that from GB, 492 +/- 141 ng/mL/h (P < or =.05) over 24 hours. Plasma concentrations of cetirizine arising in-vivo as the active metabolite of hydroxyzine, from PC-SUV, PC-MLV, and GB, were similar with AUCs of 765 +/- 50, 1035 +/- 202, and 957 +/- 227 ng/mL/h, respectively (P < or =.05). Only 0.02% to 0.06% of the initial hydroxyzine dose remained on the skin after 24 hours. In this model, hydroxyzine from SUV and MLV had excellent topical H1-antihistaminic activity, and minimal systemic exposure occurred. Cetirizine formed in-vivo contributed to some of H1-antihistaminic activity.

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羟嗪从局部磷脂脂质体制剂:评估外周抗组胺活性和全身吸收的兔模型。
羟嗪是一种有效但具有镇静作用的h1 -抗组胺药,用于口服治疗过敏性皮肤病。本研究旨在评估外周H(1)-抗组胺活性和皮肤脂质体对羟嗪的全身吸收程度。以l - α -磷脂酰胆碱(PC)为原料,制备了含羟嗪的单层小囊泡(suv)和多层小囊泡(MLVs)。以玻璃碱羟嗪(GB)为对照。采用随机交叉设计,每个配方含有10 mg羟嗪,应用于6只兔子(3.08 +/- 0.05 kg)剃光的背部。组胺诱导的轮试验和血液取样在指定的时间间隔内进行,最长可达24小时。与基线相比,所有配方的羟嗪在长达24小时内显著抑制组胺诱导的轮状形成75%至95%。2 ~ 6小时的平均最大抑制率为85% ~ 94%,各剂型间无差异。PC-SUV和PC-MLV处理的24 h血浆羟嗪浓度曲线下面积(aus)分别为80.1 +/- 20.8和78.4 +/- 33.9 ng/mL/h,低于GB处理的492 +/- 141 ng/mL/h (P < or = 0.05)。体内西替利嗪作为羟嗪的活性代谢物,在PC-SUV、PC-MLV和GB中产生的血浆浓度与AUCs相似,分别为765 +/- 50、1035 +/- 202和957 +/- 227 ng/mL/h (P < or = 0.05)。24小时后,只有0.02%至0.06%的初始羟嗪剂量留在皮肤上。在该模型中,来自SUV和MLV的羟嗪具有优异的局部h1抗组胺活性,并且发生最小的全身暴露。体内形成的西替利嗪有助于部分h1抗组胺活性。
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