Ribeiro João, Luís Marco Â, Rodrigues Bruno, Santos Fátima Milhano, Mesquita Joana, Boto Renato, Tomaz Cândida Teixeira
CICS-UBI-Health Sciences Research Centre, University of Beira Interior, 6201-506 Covilhã, Portugal.
Department of Chemistry, University of Beira Interior, Rua Marquês de Ávila e Bolama, 6201-001 Covilhã, Portugal.
Gels. 2024 Mar 14;10(3):198. doi: 10.3390/gels10030198.
The increasing demand for highly pure biopharmaceuticals has put significant pressure on the biotechnological industry to innovate in production and purification processes. Nucleic acid purification, crucial for gene therapy and vaccine production, presents challenges due to the unique physical and chemical properties of these molecules. Meeting regulatory standards necessitates large quantities of biotherapeutic agents of high purity. While conventional chromatography offers versatility and efficiency, it suffers from drawbacks like low flow rates and binding capacity, as well as high mass transfer resistance. Recent advancements in continuous beds, including monoliths and cryogel-based systems, have emerged as promising solutions to overcome these limitations. This review explores and evaluates the latest progress in chromatography utilizing monolithic and cryogenic supports for nucleic acid purification.
对高纯度生物制药的需求不断增加,给生物技术产业在生产和纯化工艺方面的创新带来了巨大压力。核酸纯化对于基因治疗和疫苗生产至关重要,但由于这些分子独特的物理和化学性质,核酸纯化面临诸多挑战。要符合监管标准,就需要大量高纯度的生物治疗剂。传统色谱法虽然具有通用性和高效性,但存在流速低、结合容量低以及传质阻力高等缺点。包括整体柱和基于冷冻凝胶的系统在内的连续床的最新进展,已成为克服这些局限性的有前景的解决方案。本综述探讨并评估了利用整体柱和低温载体进行核酸纯化的色谱法的最新进展。