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平板微滤膜聚阳离子网络对内毒素的选择性吸附

Selective adsorption of endotoxin inside a polycationic network of flat-sheet microfiltration membranes.

作者信息

Petsch D, Rantze E, Anspach F B

机构信息

Biochemicai Engineering Division, GBF-Gesellschaft fur Biotechnologische Forschung mbH, Braunschweig, Germany.

出版信息

J Mol Recognit. 1998 Winter;11(1-6):222-30. doi: 10.1002/(SICI)1099-1352(199812)11:1/6<222::AID-JMR427>3.0.CO;2-O.

Abstract

For the removal of remaining amounts of endotoxin, sorbents with high selectivity for endotoxin are required. Typically, particulate sorbents with positively charged ligands, such as histidine, polymyxin B poly-L-lysine and poly(ethyleneimine) (PEI), display moderate to high removal efficiencies in an environment of low ionic strength. It was found that polycationic ligands are most suitable to meet an endotoxin concentration which is below the threshold level required for parenteralia. Furthermore, protein recoveries close to 100% are obtained if the decontamination is performed at a pH close to the pI of acidic proteins. The high selectivity is probably caused by complexation of the polycationic ligand with the polyanionic endotoxin, leading to interactions with KD < 10(-9) M using PEI and assuming M(r) = 10 kDa for monomeric endotoxin; with BSA the same ligand reveals only KD = 4 x 10(-6) M. Using polymer-coated microfiltration membranes, immobilization of positively charged ligands leads to membrane adsorbers which are generally superior to chromatographic adsorbers and allow faster processing. Since immobilization takes place at polymer chains, low-molecular-weight ligands mainly add positive charges to the hydrophilic polymer. Consequently, membrane adsorbers with low-molecular-weight ligands, even DEAE, demonstrate similar selectivity to PEI or poly-L-lysine.

摘要

为了去除残留的内毒素,需要对内毒素具有高选择性的吸附剂。通常,带有带正电荷配体(如组氨酸、多粘菌素B、聚-L-赖氨酸和聚乙烯亚胺(PEI))的颗粒状吸附剂在低离子强度环境中显示出中等到高的去除效率。研究发现,聚阳离子配体最适合满足低于肠胃外给药所需阈值水平的内毒素浓度。此外,如果在接近酸性蛋白质等电点的pH值下进行去污处理,则蛋白质回收率接近100%。高选择性可能是由于聚阳离子配体与聚阴离子内毒素的络合作用,假设单体内毒素的分子量(Mr)为10 kDa,使用PEI时导致相互作用的解离常数(KD)<10^(-9) M;与牛血清白蛋白(BSA)结合时,相同的配体显示出的KD仅为4×10^(-6) M。使用聚合物涂层微滤膜时,固定带正电荷的配体可制成膜吸附器,其通常优于色谱吸附器,且处理速度更快。由于固定是在聚合物链上进行的,低分子量配体主要为亲水性聚合物增加正电荷。因此,带有低分子量配体(甚至是二乙氨基乙基(DEAE))的膜吸附器表现出与PEI或聚-L-赖氨酸相似的选择性。

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