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病毒颗粒用于生物制药应用的下游工艺的理性设计和优化:当前进展。

Rational design and optimization of downstream processes of virus particles for biopharmaceutical applications: current advances.

机构信息

IBET, Apartado 12, P-2781-901 Oeiras, Portugal.

出版信息

Biotechnol Adv. 2011 Nov-Dec;29(6):869-78. doi: 10.1016/j.biotechadv.2011.07.004. Epub 2011 Jul 20.

Abstract

The advent of advanced therapies in the pharmaceutical industry has moved the spotlight into virus-like particles and viral vectors produced in cell culture holding great promise in a myriad of clinical targets, including cancer prophylaxis and treatment. Even though a couple of cases have reached the clinic, these products have yet to overcome a number of biological and technological challenges before broad utilization. Concerning the manufacturing processes, there is significant research focusing on the optimization of current cell culture systems and, more recently, on developing scalable downstream processes to generate material for pre-clinical and clinical trials. We review the current options for downstream processing of these complex biopharmaceuticals and underline current advances on knowledge-based toolboxes proposed for rational optimization of their processing. Rational tools developed to increase the yet scarce knowledge on the purification processes of complex biologicals are discussed as alternative to empirical, "black-boxed" based strategies classically used for process development. Innovative methodologies based on surface plasmon resonance, dynamic light scattering, scale-down high-throughput screening and mathematical modeling for supporting ion-exchange chromatography show great potential for a more efficient and cost-effective process design, optimization and equipment prototyping.

摘要

制药行业中先进疗法的出现将焦点转移到了细胞培养中生产的病毒样颗粒和病毒载体上,它们在包括癌症预防和治疗在内的众多临床靶标中具有巨大的应用潜力。尽管已有几个案例进入了临床阶段,但这些产品在广泛应用之前仍需要克服许多生物和技术方面的挑战。就制造工艺而言,目前有大量研究致力于优化现有的细胞培养系统,最近还致力于开发可扩展的下游工艺,以生产用于临床前和临床试验的材料。我们回顾了这些复杂生物制药的下游处理的现有选择,并强调了基于知识的工具箱在其处理的合理优化方面的最新进展。为了增加对复杂生物制品纯化工艺的了解而开发的合理工具,被认为是替代经典的基于经验的“黑盒”策略的一种选择,这些策略常用于工艺开发。基于表面等离子体共振、动态光散射、小规模高通量筛选和数学建模的创新方法,为支持离子交换色谱提供了更有效和更具成本效益的工艺设计、优化和设备原型制作的潜力。

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