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人指甲板中的水扩散率。

Water diffusivity in human nail plate.

作者信息

Gunt Hemali B, Miller Matthew A, Kasting Gerald B

机构信息

The University of Cincinnati Medical Center, Cincinnati, OH 45267-0004, USA.

出版信息

J Pharm Sci. 2007 Dec;96(12):3352-62. doi: 10.1002/jps.20988.

Abstract

The diffusivity of water in human nail at 32 degrees C was determined for cadaveric, human finger nails having water contents ranging from 0.536 g H(2)O/g dry nail to 0.035 g H(2)O/g dry nail by measuring the desorption of tritiated water from nails suspended in water or in the vapor phase above salt solutions yielding a range of relative humidities (RH). Diffusivity increased with increasing RH from (7.7 +/- 1.3) x 10(-10) cm(2) s(-1) at 15% RH to (3.2 +/- 1.1) x 10(-7) cm(2) s(-1) in the liquid phase study at 100% RH, a more than 400-fold increase. The diffusivity values, which may be understood in terms of the equilibrium water content of the nail and a free volume theory for diffusion in hydrophilic polymers, were consistent with water diffusivities measured in other keratinized tissues including wool, horn and the corneocyte phase of stratum corneum. Analysis of the tritium desorption data was complicated by a tritium exchange process between (3)H(2)O and nail keratin, the kinetics of which are presented in part. The combination of the concentration-dependent water diffusivity with the natural water activity gradient in nail in vivo leads to the prediction of a nonlinear steady-state water concentration profile in human nail in vivo which, in turn, has implications for ungual drug delivery.

摘要

通过测量悬浮于水中或处于一系列相对湿度(RH)的盐溶液上方气相中的指甲中氚标记水的解吸情况,测定了32摄氏度时水在人指甲中的扩散系数,所测指甲为含水量在0.536 g H₂O/g干指甲至0.035 g H₂O/g干指甲之间的尸体人指甲。在液相研究中,扩散系数随相对湿度增加而增大,从相对湿度15%时的(7.7±1.3)×10⁻¹⁰ cm² s⁻¹增加到相对湿度100%时的(3.2±1.1)×10⁻⁷ cm² s⁻¹,增长超过400倍。这些扩散系数值可以根据指甲的平衡含水量和亲水聚合物中扩散的自由体积理论来理解,与在其他角化组织(包括羊毛、角和角质层的角质形成细胞相)中测得的水扩散系数一致。氚解吸数据的分析因³H₂O与指甲角蛋白之间的氚交换过程而变得复杂,本文部分介绍了该过程的动力学。体内指甲中浓度依赖性水扩散系数与天然水活度梯度的结合,导致预测出体内人指甲中非线性稳态水浓度分布,这反过来又对指甲药物递送有影响。

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