Prodromou Raphael, Moore Brandyn, Chu Wenning, Deal Halston, Miguel Adriana San, Brown Ashley C, Daniele Michael A, Pozdin Vladimir, Menegatti Stefano
Department of Chemical and Biomolecular Engineering, North Carolina State University, 911 Partners Way, Raleigh, NC 27695, USA.
Joint Department of Biomedical Engineering, North Carolina State University and University of North Carolina at Chapel Hill, 911 Oval Drive, Raleigh, NC 27695, USA.
Adv Funct Mater. 2023 Apr 4;33(14). doi: 10.1002/adfm.202213881. Epub 2023 Jan 25.
The use of benign stimuli to control the binding and release of labile biologics for their isolation from complex feedstocks is a key goal of modern biopharmaceutical technology. This study introduces cyclic azobenzene-peptide (CAP) hybrid ligands for the rapid and discrete photo-responsive capture and release of blood coagulation Factor VIII (FVIII). A predictive method - based on amino acid sequence and molecular architecture of CAPs - was developed to correlate the conformation of CAP photo-isomers to FVIII binding and release. The combined and analysis of FVIII:peptide interactions guided the design of a rational approach to optimize isomerization kinetics and biorecognition of CAPs. A photoaffinity adsorbent, prepared by conjugating selected CAP G-cyclo[Lys-YYKHLYN-Lys]-G on translucent chromatographic beads, featured high binding capacity (> 6 mg of FVIII per mL of resin) and rapid photo-isomerization kinetics ( < 30s) when exposed to 420-450 nm light at the intensity of 0.1 W·cm. The adsorbent purified FVIII from a recombinant harvest using a single mobile phase, affording high product yield (>90%), purity (>95%), and blood clotting activity. The CAPs introduced in this report demonstrate a novel route integrating gentle operational conditions in a rapid and efficient bioprocess for the purification of life-saving biotherapeutics.
利用良性刺激来控制不稳定生物制品的结合与释放,以便从复杂原料中分离出来,这是现代生物制药技术的一个关键目标。本研究引入了环状偶氮苯 - 肽(CAP)杂合配体,用于快速、离散地光响应捕获和释放凝血因子VIII(FVIII)。基于CAP的氨基酸序列和分子结构开发了一种预测方法,以关联CAP光异构体的构象与FVIII的结合和释放。对FVIII:肽相互作用的综合分析指导了一种合理方法的设计,以优化CAP的异构化动力学和生物识别。通过将选定的CAP G - 环[Lys - YYKHLYN - Lys] - G偶联到半透明色谱珠上制备的光亲和吸附剂,在暴露于强度为0.1 W·cm的420 - 450 nm光时,具有高结合容量(每毫升树脂> 6 mg FVIII)和快速光异构化动力学(< 30秒)。该吸附剂使用单一流动相从重组收获物中纯化FVIII,获得了高产品收率(> 90%)、纯度(> 95%)和凝血活性。本报告中引入的CAP展示了一条新途径,即在快速高效的生物过程中整合温和的操作条件,用于纯化挽救生命的生物治疗药物。