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基于控制降解研究的帕博利珠单抗的综合物理化学和功能分析:对抗原-抗体结合的影响。

Comprehensive physicochemical and functional analysis of pembrolizumab based on controlled degradation studies: Impact on antigen-antibody binding.

机构信息

Department of Analytical Chemistry, Science Faculty, Biohealth Research Institute (ibs.GRANADA), University of Granada, E-18071 Granada, Spain.

Department of Clinical Pharmacy, Biohealth Research Institute (ibs.GRANADA), San Cecilio University Hospital, E-18012 Granada, Spain.

出版信息

Eur J Pharm Biopharm. 2024 Jan;194:131-147. doi: 10.1016/j.ejpb.2023.12.005. Epub 2023 Dec 13.

Abstract

Monoclonal antibodies-based medicines are widely used in the treatment of different diseases. These medicines are very sensitive to exposure to different environmental conditions and their handling in hospitals may affect their safety and efficacy. This is the case for pembrolizumab (Keytruda®, 25 mg/mL), for which there is not yet much information on its risk behaviour associated with routine handling or unintentional mishandling. Here we performed a wider physicochemical and functional analysis of pembrolizumab medicine including controlled degradation studies: heat, freeze/thaw, agitation, accelerated light exposure and high hypertonic solution. After that, the samples were analysed by a set of analytical techniques to evaluated critical quality attributes: Far-UV CD, IT-FS, DLS, RP/UHPLC(UV)-MS, SE/UHPLC(UV), RP/UHPLC(UV)-MS/MS and ELISA. The results provide an in-depth understanding of the biochemical and biophysical properties of pembrolizumab, showing that the medicine is affected by accelerated light exposure and temperature of 60 °C, demonstrated by the detection of non-natural dimers and HMWS. Light exposure also revealed different isoform profile and increase in oxidations. Regarding functionality by means of the interaction antigen-antibody binding, all the stressors promoted a decrease in pembrolizumab capacity to bind to PD-1 receptor, although the biological activity remained still high for all of them, being 60 °C and accelerated light exposure the most affected.

摘要

基于单克隆抗体的药物被广泛应用于治疗各种疾病。这些药物对暴露于不同环境条件非常敏感,其在医院中的处理方式可能会影响它们的安全性和疗效。这种情况适用于派姆单抗(Keytruda®,25mg/mL),因为目前关于其在常规处理或意外处理过程中相关风险行为的信息还不多。在这里,我们对派姆单抗药物进行了更广泛的物理化学和功能分析,包括控制降解研究:加热、冻融、搅拌、加速光照和高渗透压溶液。之后,通过一系列分析技术对样品进行分析,以评估关键质量属性:远紫外 CD、IT-FS、DLS、RP/UHPLC(UV)-MS、SE/UHPLC(UV)、RP/UHPLC(UV)-MS/MS 和 ELISA。结果深入了解了派姆单抗的生化和生物物理特性,表明该药物受到加速光照和 60°C 温度的影响,通过检测非天然二聚体和 HMWS 可以证明这一点。光照还揭示了不同的同型物谱和氧化增加。至于通过抗原-抗体结合相互作用的功能,所有应激源都促进了派姆单抗与 PD-1 受体结合能力的下降,尽管所有应激源的生物学活性仍然很高,其中 60°C 和加速光照的影响最大。

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