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质粒DNA在灌注色谱基质上的吸附行为
引用本文:Limonta M,Zumalacárregui L,Soler D.质粒DNA在灌注色谱基质上的吸附行为[J].色谱,2012,30(5):522-526.
作者姓名:Limonta M  Zumalacárregui L  Soler D
作者单位:1. Center for Genetic Engineering and Biotechnology, Habana 10600, Cuba; 2. Higher Polytechnic Institute José Antonio Echeverría Cuba, Habana 19390, Cuba
摘    要:Anion exchange chromatography is the most popular chromatographic method for plasmid separation.POROS R1 50 is a perfusio n chro mato graphic suppo rt w hich is a reversed phase matrix and is an alternative to co nventio nal o nes due to its mass transfer pro perties.The adso rptio n and elutio n o f the pIDKE2 plasmid o nto reversed phase POROS R1 50 w as studied.Langmuir iso therm mo del w as adjusted in o rder to get the max imum adso rptio n capacity and the disso ciatio n co nstant fo r POROS R1 50-plasmid DNA(pDNA) system.Breakthro ugh curves w ere o btained fo r vo lumetric flo w s betw een 0.69-3.33 mL/min,given dynamic capacity up to 2.3 times higher than tho se repo rted fo r io nic ex change matrix used during the purificatio n pro cess o f plasmids w ith similar size to that o f pIDKE2.The efficiency w as less than 45% fo r the flo w co nditio ns and initial co ncentratio n studied,w hich means that the suppo rt w ill no t be o perated under saturatio n circumstances.

关 键 词:plasmid  purification  perfusion  chromatography  adsorption  isotherm
收稿时间:2011-11-24

Adsorption behavior of plasmid DNA onto perfusion chromatographic matrix
Limonta Miladys,Zumalacárregui Lourdes,Soler Dayana.Adsorption behavior of plasmid DNA onto perfusion chromatographic matrix[J].Chinese Journal of Chromatography,2012,30(5):522-526.
Authors:Limonta Miladys  Zumalacárregui Lourdes  Soler Dayana
Institution:1. Center for Genetic Engineering and Biotechnology, Habana 10600, Cuba; 2. Higher Polytechnic Institute José Antonio Echeverría Cuba, Habana 19390, Cuba
Abstract:Anion exchange chromatography is the most popular chromatographic method for plasmid separation. POROS RI 50 is a perfusion chromatographic support which is a reversed phase matrix and is an alternative to conventional ones due to its mass transfer properties. The adsorption and elution of the pIDKE2 plasmid onto reversed phase POROS R1 50 was studied. Langmuir isotherm model was adjusted in order to get the maximum adsorption capacity and the dissociation constant for POROS R1 50-plasmid DNA (pDNA) system. Breakthrough curves were obtained for volumetric flows between 0.69-3.33 mL/min, given dynamic capacity up to 2.3 times higher than those reported for ionic exchange matrix used during the purification process of plasmids with similar size to that of pIDKE2. The efficiency was less than 45% for the flow conditions and initial concentration studied, which means that the support will not be operated under saturation circumstances.
Keywords:plasmid purification  perfusion chromatography  adsorption isotherm
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