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Study and characterization of dual-function affinity chromatographic adsorbents having size exclusion and adsorption properties to isolate, purify and recover small biomolecules from complex biological mixtures.

机译:具有尺寸排阻和吸附特性的双功能亲和色谱吸附剂的研究与表征,可从复杂的生物混合物中分离,纯化和回收小生物分子。

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摘要

In this work, the main emphasis of the research concerns the development of isolation and purification methods of biomolecules from biological fluids. Several separation techniques were incorporated in chromatographic gels to obtain multifunctional hybrid chromatographic separation media for proteins, peptides and amino acid isolation and purification.;In the first part of the research, several chelating agents were synthesized and their effectiveness to purify immunoglobulins using Immobilized Metal Affinity Chromatography (IMAC) was investigated. Ethylenediamine triacetic acid (TED) with immobilized copper resulted in the most effective in terms of purification and protein capacities.;The next part of the work involved the development of hybrid chromatographic media that combines protein specific adsorption with sharp controlled size access permeation. This was accomplished by incorporating two types of ligand derivatives, one that permits the permeation of only certain molecular size range compounds, and a second one that specifically binds target biomolecules among the compounds of that specific molecular size range. Hybrid systems included binding ligands for Immobilized Metal Affinity Chromatography (IMAC), Ion Exchange Chromatography (IEX) and Hydrophobic Interaction Chromatography (HIC) combined with a controlled access polymer at different densities such as polyethylene glycol (PEG) and dextran derivatives. In general, low grafting density of high molecular weight PEG was found to be as effective as high grafting density of low molecular weight PEG in the rejecting properties of the semi-permeable synthesized media.;Theoretical and experimental batch adsorption studies were also performed with the hybrid media and a mathematical model was developed to study the uptake of proteins under specific conditions of controlled permeation.;In the last stage of this work, chelating surfactants were synthesized and used as reversible affinity ligands on reversed phase adsorbents for protein separations.;One of the main accomplishments of this research was the development of separation media for small molecular size compounds from larger molecules and from complex biological systems. Applications of special interest will include the isolation and purification of solutes, such as metal ions, toxins, drugs, biomolecules, including proteins, biotoxins, nucleic acids, peptides, hormones, and biomarkers from biological fluids (such as human serum, urine, etc.) and from aqueous solutions.
机译:在这项工作中,研究的主要重点是从生物流体中分离和纯化生物分子的方法的发展。在色谱凝胶中采用了几种分离技术,以获得用于蛋白质,肽和氨基酸分离与纯化的多功能混合色谱分离介质。在研究的第一部分,合成了几种螯合剂及其在固定化金属亲和力中纯化免疫球蛋白的有效性。色谱法(IMAC)进行了研究。乙二胺三乙酸(TED)与固定化的铜在纯化和蛋白质容量方面最有效。;下一部分工作是开发混合色谱介质,该介质结合了蛋白质特异性吸附和可控的大小可控渗透性。这是通过掺入两种类型的配体衍生物来实现的,一种仅允许某些分子大小范围的化合物渗透,另一种可以特异性结合该特定分子大小范围的化合物中的目标生物分子。混合系统包括固定配体亲和层析(IMAC),离子交换层析(IEX)和疏水相互作用层析(HIC)的结合配体,并与受控接入的聚合物以不同密度结合,例如聚乙二醇(PEG)和葡聚糖衍生物。一般而言,发现高分子量PEG的低接枝密度与低分子量PEG的高接枝密度在半渗透性合成介质的排斥特性上一样有效。开发了一种混合介质并建立了数学模型,以研究在受控渗透的特定条件下蛋白质的吸收。;在这项工作的最后阶段,合成了螯合表面活性剂并将其用作反相吸附剂上的可逆亲和配体,用于蛋白质分离。这项研究的主要成就是从大分子和复杂生物系统中分离出小分子化合物的分离介质。特别感兴趣的应用将包括从生物体液(例如人血清,尿液等)中分离和纯化溶质,例如金属离子,毒素,药物,生物分子,包括蛋白质,生物毒素,核酸,肽,激素和生物标志物。 。)和水溶液。

著录项

  • 作者

    Gonzalez Ortega, Omar.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Engineering Chemical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 306 p.
  • 总页数 306
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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