A rapid method to monitor structural perturbations of high-concentrated therapeutic antibody solutions using Intrinsic Tryptophan Fluorescence Emission spectroscopy

IF 4.4 2区 医学 Q1 PHARMACOLOGY & PHARMACY European Journal of Pharmaceutics and Biopharmaceutics Pub Date : 2024-06-30 DOI:10.1016/j.ejpb.2024.114377
Lennart Brack , Olivia Merkel , Rudolf Schroeder
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Abstract

Drug product development of therapeutic antibody formulations is still dictated by the risk of protein particle formation during processing or storage, which can lead to loss of potency and potential immunogenic reactions. Since structural perturbations are the main driver for irreversible protein aggregation, the conformational integrity of antibodies should be closely monitored. The present study evaluated the applicability of a plate reader-based high throughput method for Intrinsic Tryptophan Fluorescence Emission (ITFE) spectroscopy to detect protein aggregation due to protein unfolding in high-concentrated therapeutic antibody samples. The impact of fluorophore concentration on the ITFE signal in microplate readers was investigated by analysis of dilution series of two therapeutic antibodies and pure tryptophan. At low antibody concentrations (< 5 mg/mL, equivalent to 0.8 mM tryptophan), the low inner filter effect suggests a quasi-linear relationship between antibody concentration and ITFE intensity. In contrast, the constant ITFE intensity at high protein concentrations (> 40 mg/mL, equivalent to 6.1 mM tryptophan) indicate that ITFE spectroscopy measurements of IgG1 antibodies are feasible in therapeutically relevant concentrations (up to 223 mg/mL). Furthermore, the capability of the method to detect low levels of unfolding (around 1 %) was confirmed by limit of detection (LOD) determination with temperature-stressed antibody samples as degradation standards. Change of fluorescence intensity at the maximum (ΔIaM) was identified as sensitive descriptor for protein degradation, providing the lowest LOD values. The results demonstrate that ITFE spectroscopy performed in a microplate reader is a valuable tool for high-throughput monitoring of protein degradation in therapeutic antibody formulations.

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利用本征色氨酸荧光发射光谱监测高浓度治疗性抗体溶液结构扰动的快速方法。
治疗性抗体制剂的药物产品开发仍然受制于加工或储存过程中蛋白质颗粒形成的风险,这可能会导致抗体效力下降和潜在的免疫原性反应。由于结构扰动是蛋白质不可逆聚集的主要驱动因素,因此应密切监测抗体构象的完整性。本研究评估了基于平板阅读器的本征色氨酸荧光发射(ITFE)光谱高通量方法的适用性,以检测高浓度治疗性抗体样品中因蛋白质解折叠导致的蛋白质聚集。通过分析两种治疗性抗体和纯色氨酸的稀释系列,研究了荧光团浓度对微孔板阅读器中 ITFE 信号的影响。低抗体浓度(40 毫克/毫升,相当于 6.1 毫摩尔色氨酸)表明,IgG1 抗体的 ITFE 光谱测量在治疗相关浓度(高达 223 毫克/毫升)下是可行的。此外,以温度应激抗体样品作为降解标准,通过检测限(LOD)测定,证实了该方法检测低水平解折(约 1%)的能力。最大值处的荧光强度变化(ΔIaM)被确定为蛋白质降解的灵敏描述因子,可提供最低的 LOD 值。研究结果表明,在微孔板阅读器中进行 ITFE 光谱分析是高通量监测治疗性抗体制剂中蛋白质降解的重要工具。
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来源期刊
CiteScore
8.80
自引率
4.10%
发文量
211
审稿时长
36 days
期刊介绍: The European Journal of Pharmaceutics and Biopharmaceutics provides a medium for the publication of novel, innovative and hypothesis-driven research from the areas of Pharmaceutics and Biopharmaceutics. Topics covered include for example: Design and development of drug delivery systems for pharmaceuticals and biopharmaceuticals (small molecules, proteins, nucleic acids) Aspects of manufacturing process design Biomedical aspects of drug product design Strategies and formulations for controlled drug transport across biological barriers Physicochemical aspects of drug product development Novel excipients for drug product design Drug delivery and controlled release systems for systemic and local applications Nanomaterials for therapeutic and diagnostic purposes Advanced therapy medicinal products Medical devices supporting a distinct pharmacological effect.
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