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使用免疫吸附剂连续纯化生物材料的方法。

Method for continuous purification of biological material using immunosorbent.

作者信息

Hughes J J, Charm S E

出版信息

Biotechnol Bioeng. 1979 Aug;21(8):1439-55. doi: 10.1002/bit.260210810.

Abstract

A mechanical device for the continuous purification of biological material using immunosorbent was developed. The system consists of heat-sealed nylon pouches containing agarose-bound antibody, attached to an endless 35 mm wide Mylar belt that passes through four chambers sequentially. The biological material is bound and dissociated, and the immobilized antibody is regenerated for repeated isolation and purification of antigen. The belt design incorporates features to minimize carry-over between chambers and prevent damage to the agarose-bound antibody in repeated passes through the system. An existing batch method for the purification of human placental alkaline phosphatase using immobilized rabbit antisera was adapted to continuous purification in the device. The belt contained a low affinity immunosorbent and made five complete passes through the system. A decrease in antigen binding capacity between free immunosorbent suspensions and belt immunosorbent in pouches was observed. This was shown to be the result of the diffusion resistance offered by the pouch and the short exposure times of each pouch in the chambers. A decrease in antigen binding capacity between successive belt passes was also observed, and resulted from the inability of the agarose in the pouches to resuspend completely after each pass. The low efficiency of the agitation method and the roller device used to squeeze the pouches were the reasons for this deficiency.

摘要

开发了一种使用免疫吸附剂连续纯化生物材料的机械装置。该系统由含有琼脂糖结合抗体的热封尼龙袋组成,这些尼龙袋连接到一条35毫米宽的环形聚酯薄膜带上,该薄膜带依次穿过四个腔室。生物材料被结合和解离,固定化抗体被再生以重复分离和纯化抗原。带的设计具有一些特征,可将腔室之间的残留降至最低,并防止在系统中反复通过时对琼脂糖结合抗体造成损害。一种现有的使用固定化兔抗血清纯化人胎盘碱性磷酸酶的分批方法被应用于该装置中的连续纯化。带上含有低亲和力免疫吸附剂,并在系统中完整通过了五次。观察到游离免疫吸附剂悬浮液与袋中带免疫吸附剂之间的抗原结合能力下降。这被证明是由于袋子提供的扩散阻力以及每个袋子在腔室中的暴露时间较短所致。还观察到连续带通过之间抗原结合能力下降,这是由于袋中琼脂糖在每次通过后无法完全重新悬浮所致。搅拌方法和用于挤压袋子的滚筒装置效率低下是造成这种不足的原因。

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