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一种预测二甲基亚砜在关节软骨中渗透动力学的模型。

A model to predict the permeation kinetics of dimethyl sulfoxide in articular cartilage.

作者信息

Yu Xiaoyi, Chen Guangming, Zhang Shaozhi

机构信息

Institute of Refrigeration and Cryogenics, Zhejiang University , Hangzhou, China .

出版信息

Biopreserv Biobank. 2013 Feb;11(1):51-6. doi: 10.1089/bio.2012.0050.

Abstract

Cryopreservation of articular cartilage (AC) has excited great interest due to the practical surgical importance of this tissue. Characterization of permeation kinetics of cryoprotective agents (CPA) in AC is important for designing optimal CPA addition/removal protocols to achieve successful cryopreservation. Permeation is predominantly a mass diffusion process. Since the diffusivity is a function of temperature and concentration, analysis of the permeation problem would be greatly facilitated if a predictive method were available. This article describes, a model that was developed to predict the permeation kinetics of dimethyl sulfoxide (DMSO) in AC. The cartilage was assumed as a porous medium, and the effect(s) of composition and thermodynamic nonideality of the DMSO solution were considered in model development. The diffusion coefficient was correlated to the infinite dilution coefficients through a binary diffusion thermodynamic model. The UNIFAC model was used to evaluate the activity coefficient, the Vignes equation was employed to estimate the composition dependence of the diffusion coefficient, and the Siddiqi-Lucas correlation was applied to determine the diffusion coefficients at infinite dilution. Comparisons of the predicted overall DMSO uptake by AC with the experimental data over wide temperature and concentration ranges [137°C, 1047% (w/w)] show that the model can accurately describe the permeation kinetics of DMSO in AC [coefficient of determination (R(2)): 0.9610.996, mean relative error (MRE): 2.29.1%].

摘要

由于关节软骨(AC)在实际外科手术中的重要性,其冷冻保存引起了极大的关注。表征冷冻保护剂(CPA)在AC中的渗透动力学对于设计最佳的CPA添加/去除方案以实现成功的冷冻保存至关重要。渗透主要是一个质量扩散过程。由于扩散系数是温度和浓度的函数,如果有预测方法,渗透问题的分析将大大简化。本文描述了一个用于预测二甲基亚砜(DMSO)在AC中渗透动力学的模型。软骨被假定为多孔介质,并且在模型开发中考虑了DMSO溶液的组成和热力学非理想性的影响。扩散系数通过二元扩散热力学模型与无限稀释系数相关联。使用UNIFAC模型评估活度系数,采用Vignes方程估计扩散系数的组成依赖性,并应用Siddiqi-Lucas关联来确定无限稀释时的扩散系数。在较宽的温度和浓度范围[137°C,1047%(w/w)]内,将AC预测的DMSO总摄取量与实验数据进行比较,结果表明该模型可以准确描述DMSO在AC中的渗透动力学[决定系数(R(2)):0.9610.996,平均相对误差(MRE):2.29.1%]。

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