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利用植物制造的免疫吸附纳米颗粒进行亲和沉淀和磁分离以纯化治疗性蛋白质

Affinity Sedimentation and Magnetic Separation With Plant-Made Immunosorbent Nanoparticles for Therapeutic Protein Purification.

作者信息

McNulty Matthew J, Schwartz Anton, Delzio Jesse, Karuppanan Kalimuthu, Jacobson Aaron, Hart Olivia, Dandekar Abhaya, Giritch Anatoli, Nandi Somen, Gleba Yuri, McDonald Karen A

机构信息

Department of Chemical Engineering, University of California, Davis, Davis, CA, United States.

Nomad Bioscience GmbH, Halle, Germany.

出版信息

Front Bioeng Biotechnol. 2022 Apr 27;10:865481. doi: 10.3389/fbioe.2022.865481. eCollection 2022.

Abstract

The virus-based immunosorbent nanoparticle is a nascent technology being developed to serve as a simple and efficacious agent in biosensing and therapeutic antibody purification. There has been particular emphasis on the use of plant virions as immunosorbent nanoparticle chassis for their diverse morphologies and accessible, high yield manufacturing plant cultivation. To date, studies in this area have focused on proof-of-concept immunosorbent functionality in biosensing and purification contexts. Here we consolidate a previously reported pro-vector system into a single vector to investigate and expand the utility of virus-based immunosorbent nanoparticle technology for therapeutic protein purification. We demonstrate the use of this technology for Fc-fusion protein purification, characterize key nanomaterial properties including binding capacity, stability, reusability, and particle integrity, and present an optimized processing scheme with reduced complexity and increased purity. Furthermore, we present a coupling of virus-based immunosorbent nanoparticles with magnetic particles as a strategy to overcome limitations of the immunosorbent nanoparticle sedimentation-based affinity capture methodology. We report magnetic separation results which exceed the binding capacity reported for current industry standards by an order of magnitude.

摘要

基于病毒的免疫吸附纳米颗粒是一种新兴技术,正在被开发用作生物传感和治疗性抗体纯化中的一种简单而有效的试剂。人们特别强调使用植物病毒粒子作为免疫吸附纳米颗粒的底盘,因为它们具有多样的形态,并且可以通过植物培养进行易于操作的、高产率的制造。迄今为止,该领域的研究主要集中在生物传感和纯化背景下的概念验证免疫吸附功能。在这里,我们将先前报道的前载体系统整合到一个单一载体中,以研究和扩展基于病毒的免疫吸附纳米颗粒技术在治疗性蛋白质纯化方面的用途。我们展示了该技术在Fc融合蛋白纯化中的应用,表征了关键的纳米材料特性,包括结合能力、稳定性、可重复使用性和颗粒完整性,并提出了一种优化的处理方案,该方案降低了复杂性并提高了纯度。此外,我们提出将基于病毒的免疫吸附纳米颗粒与磁性颗粒偶联,作为克服基于免疫吸附纳米颗粒沉降的亲和捕获方法局限性的一种策略。我们报告的磁分离结果比当前行业标准报道的结合能力高出一个数量级。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8268/9092175/0c2ec5cfd654/fbioe-10-865481-g001.jpg

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