A Study on the Single Caprylic Acid Fractionation and Centrifugal Separation of Equine Rabies Immunoglobulin

Issada Manohorratad, A. Senjuntichai
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Abstract

This study proposes alternative caprylic acid precipitation and centrifugal separation for the equine rabies Immunoglobulin manufacturing process. The objective is to determine the optimal setting associated with the centrifugal machine and the optimal amount of caprylic acid for the maximum process yield (%). The experiments were designed based on the central composite design and performed to analyze the relationship of three factors which are the caprylic acid (1%-5%V/V), the rotation speed (7,500-12,500 rpm), and centrifugal time (20-40 min) on the yield of the process. For the first time, the prediction model as a second-degree polynomial regression is presented and developed by a response surface method (RSM) with R2 approximately 51%. RSM model also reveals that the process yield is affected by the concentration of caprylic acid and the amount of time to centrifuge the precipitated plasma but not by the rotation speed of the centrifugal machine. With the predicted process yield of about 12.97%, the optimal setting by RSM suggests the concentration of caprylic acid at 2.82% and the centrifugal time at 28 minutes.
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马狂犬病免疫球蛋白单辛酸分离与离心分离的研究
本研究提出了辛酸沉淀和离心分离替代马狂犬病免疫球蛋白生产工艺。目的是确定与离心机相关的最佳设置和最大工艺收率(%)的辛酸的最佳量。采用中心组合设计进行实验设计,分析辛酸浓度(1% ~ 5%V/V)、转速(7500 ~ 12500 rpm)、离心时间(20 ~ 40 min)对工艺得率的影响。首次提出并建立了R2约为51%的响应面法(RSM)二阶多项式回归预测模型。RSM模型还表明,工艺收率受辛酸浓度和沉淀等离子体离心时间的影响,而不受离心机转速的影响。在预测产率为12.97%的条件下,RSM的最佳工艺设置为辛酸浓度为2.82%,离心时间为28 min。
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审稿时长
20 weeks
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