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Simplex optimization of acoustic assay for plasminogen activators

机译:纤溶酶原激活物的声学分析的单纯形优化

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This article discusses the optimization of a newly developed method for measuring the activity of plasminogen activators using a thickness-shear-mode acoustic sensor. A variable-size simplex algorithm was used for optimization. Preliminary tests were performed to design the first simplex. A desirability function was defined to translate each performance value to a membership value of 0 to 1. If there was more than one performance variable, their membership values were translated to an aggregated membership value using another function that considers their individual influence on sensor performance. Two rounds of optimization were carried out for streptokinase followed by a single optimization for tissue-type plasminogen activator. In the last optimization, ratios of control variables were used in order to reduce the number of parameters and to formulate easily adjustable assay conditions. The results showed the usefulness of the simplex method for optimizing this type of assay, and the importance of preliminary tests and prior knowledge in providing rapid convergence using fewer experiments. The optimized plasminogen activator assay can be considered a reference method for measurement of all members of this drug class.
机译:本文讨论了使用厚度剪切模式声学传感器测量纤溶酶原激活剂活性的新开发方法的优化。可变大小的单纯形算法用于优化。进行了初步测试以设计第一个单纯形。定义了一个期望函数,以将每个性能值转换为从0到1的隶属度值。如果存在多个性能变量,则使用另一个考虑其对传感器性能的影响的函数,将其隶属度值转换为聚合的隶属度值。对链激酶进行了两轮优化,随后对组织型纤溶酶原激活剂进行了一次优化。在最后的优化中,使用控制变量的比率以减少参数数量并制定易于调整的测定条件。结果表明,单纯形法对于优化这种类型的测定法的有用性,以及初步试验和先验知识在利用更少的实验提供快速收敛性方面的重要性。优化的纤溶酶原激活物测定可以被视为测量该药物类别所有成员的参考方法。

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