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首页> 外文期刊>Journal of Veterinary Pharmacology and Therapeutics >Prediction of formulation effects on dermal absorption of topically applied ectoparasiticides dosed in vitro on canine and porcine skin using a mixture-adjusted quantitative structure permeability relationship
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Prediction of formulation effects on dermal absorption of topically applied ectoparasiticides dosed in vitro on canine and porcine skin using a mixture-adjusted quantitative structure permeability relationship

机译:使用混合物调整的定量结构渗透性关系预测制剂在体外对犬和猪皮肤局部施用的除草剂的真皮吸收的影响

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摘要

Topical application of ectoparasiticides for flea and tick control is a major focus for product development in animal health. The objective of this work was to develop a quantitative structure permeability relationship (QSPeR) model sensitive to formulation effects for predicting absorption and skin deposition of five topically applied drugs administered in six vehicle combinations to porcine and canine skin in vitro. Saturated solutions (20L) of C-14-labeled demiditraz, fipronil, permethrin, imidacloprid, or sisapronil were administered in single or binary (50:50 v/v) combinations of water, ethanol, and transcutol (6 formulations, n=4-5 replicates per treatment) nonoccluded to 0.64cm(2) disks of dermatomed pig or dog skin mounted in flow-through diffusion cells. Perfusate flux over 24h and skin deposition at termination were determined. Permeability (logKp), absorption, and penetration endpoints were modeled using a four-term Abrahams and Martin (hydrogen-bond donor acidity and basicity, dipolarity/polarizability, and excess molar refractivity) linear free energy QSPeR equation with a mixture factor added to compensate for formulation ingredient interactions. Goodness of fit was judged by r(2), cross-validation coefficient, coefficients (q(2)s), and Williams Plot to visualize the applicability domain. Formulation composition was the primary determinant of permeation. Compounds generally penetrated dog skin better than porcine skin. The vast majority of permeated penetrant was deposited within the dosed skin relative to transdermal flux, an attribute for ectoparasiticides. The best QSPeR logKp model for pig skin permeation (r(2) = 0.86, q(2)s = 0.85) included log octanol/water partition coefficient as the mixture factor, while for dogs (r(2) = 0.91, q(2)s = 0.90), it was log water solubility. These studies clearly showed that the permeation of topical ectoparasiticides could be well predicted using QSPeR models that account for both the physical-chemical properties of the penetrant and formulation components.
机译:外用除草剂治疗跳蚤和壁虱的控制是动物保健产品开发的主要重点。这项工作的目的是建立一种对制剂效应敏感的定量结构渗透性关系(QSPeR)模型,以预测在猪和犬皮肤中以六种媒介物组合施用的五种局部应用药物的吸收和皮肤沉积。将C-14标记的咪达唑,氟虫腈,苄氯菊酯,吡虫啉或西沙普尼的饱和溶液(20L)以水,乙醇和反苯甲酚的单一或二元(50:50 v / v)组合形式给药(6剂,n = 4每次处理-5次重复)不阻塞安装在流通扩散池中的0.64cm(2)皮肤或猪皮的盘。测定24小时内的灌注液通量和终止时的皮肤沉积。使用四项Abrahams和Martin(氢键供体的酸度和碱度,双极性/极化率和过量摩尔折射率)的线性自由能QSPeR方程对渗透率(logKp),吸收和渗透终点进行建模,并添加了混合因子以补偿用于配方成分相互作用。拟合优度由r(2),交叉验证系数,系数(q(2)s)和Williams Plot判断,以可视化适用范围。制剂组成是渗透性的主要决定因素。化合物通常比猪皮更能穿透狗皮。相对于透皮通量而言,绝大多数渗透的渗透剂沉积在一定剂量的皮肤内,这是外杀寄生虫剂的一个属性。猪皮肤渗透的最佳QSPeR logKp模型(r(2)= 0.86,q(2)s = 0.85)包括辛醇/水分配系数对数作为混合因子,而对于狗(r(2)= 0.91,q( 2)s = 0.90),为对数水溶性。这些研究清楚地表明,使用QSPeR模型可以很好地预测局部外寄生虫杀虫剂的渗透,该模型考虑了渗透剂和制剂成分的物理化学性质。

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