用体外树突状细胞试验评价中国仓鼠卵巢宿主细胞蛋白的佐剂潜能

IF 3.6 2区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Biotechnology and Bioengineering Pub Date : 2025-02-10 DOI:10.1002/bit.28950
Sherin Panikulam, Hannah Morgan, Michael Gutknecht, Anette Karle, Atchaya Rajaratnam, Jennifer Muntwyler, Oliver Anderka, Nicolas Lebesgue, Thomas K. Villiger
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引用次数: 0

摘要

宿主细胞蛋白(HCPs)是治疗性蛋白生产过程中与工艺相关的杂质,可能影响产品质量或患者安全。在临床试验中,与治疗蛋白共纯化的某些HCPs(如PLBL2或CCL2)与患者的免疫反应有关。在这项研究中,我们使用体外树突状细胞(DC)成熟实验检测了CHO细胞(PRDX1, S100A4, PLBL2, CCL2, CLU和YWHAE)中六种常见的HCPs的佐剂潜力。重组HCPs在CHO细胞中表达以模拟制造条件。PRDX1、S100A4和PLBL2导致成熟标志物在dc上的表达略有增加,而YWHAE、CLU和CCL2则没有。有趣的是,CLU和CCL2降低了利妥昔单抗诱导的DC成熟。此外,我们观察到色谱纯化过程中的工艺参数(如洗脱条件)会影响HCP的聚集,从而掩盖或增强HCP的固有辅助电位。这些发现不仅对单个HCPs的辅助潜力提供了初步的见解,而且还表明HCPs的数量和聚集程度可能会影响辅助性。
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Assessing the Adjuvant Potential of Chinese Hamster Ovary Host Cell Proteins Using an In Vitro Dendritic Cell Assay

Host cell proteins (HCPs) are process-related impurities of therapeutic protein production and may affect product quality or patient safety. In clinical trials, certain HCPs (e.g., PLBL2 or CCL2) that co-purify with the therapeutic protein have been associated with immune reactions in patients. In this study, we examined the adjuvant potential of six commonly detected HCPs from CHO cells (PRDX1, S100A4, PLBL2, CCL2, CLU, and YWHAE) using an in vitro dendritic cell (DC) maturation assay. Recombinant HCPs were expressed in CHO cells to mimic manufacturing conditions. PRDX1, S100A4, and PLBL2 caused a slight increase in the expression of maturation markers on DCs, while YWHAE, CLU, and CCL2 did not. Interestingly, CLU and CCL2 reduced the DC maturation induced by rituximab. In addition, we observed that process parameters such as elution conditions during chromatographic purification can influence HCP aggregation, which in turn can mask or enhance the intrinsic adjuvant potential of an HCP. These findings not only provide initial insights into the adjuvant potential of individual HCPs but also indicate that the quantity as well as the degree of aggregation of HCPs might influence adjuvanticity.

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来源期刊
Biotechnology and Bioengineering
Biotechnology and Bioengineering 工程技术-生物工程与应用微生物
CiteScore
7.90
自引率
5.30%
发文量
280
审稿时长
2.1 months
期刊介绍: Biotechnology & Bioengineering publishes Perspectives, Articles, Reviews, Mini-Reviews, and Communications to the Editor that embrace all aspects of biotechnology. These include: -Enzyme systems and their applications, including enzyme reactors, purification, and applied aspects of protein engineering -Animal-cell biotechnology, including media development -Applied aspects of cellular physiology, metabolism, and energetics -Biocatalysis and applied enzymology, including enzyme reactors, protein engineering, and nanobiotechnology -Biothermodynamics -Biofuels, including biomass and renewable resource engineering -Biomaterials, including delivery systems and materials for tissue engineering -Bioprocess engineering, including kinetics and modeling of biological systems, transport phenomena in bioreactors, bioreactor design, monitoring, and control -Biosensors and instrumentation -Computational and systems biology, including bioinformatics and genomic/proteomic studies -Environmental biotechnology, including biofilms, algal systems, and bioremediation -Metabolic and cellular engineering -Plant-cell biotechnology -Spectroscopic and other analytical techniques for biotechnological applications -Synthetic biology -Tissue engineering, stem-cell bioengineering, regenerative medicine, gene therapy and delivery systems The editors will consider papers for publication based on novelty, their immediate or future impact on biotechnological processes, and their contribution to the advancement of biochemical engineering science. Submission of papers dealing with routine aspects of bioprocessing, description of established equipment, and routine applications of established methodologies (e.g., control strategies, modeling, experimental methods) is discouraged. Theoretical papers will be judged based on the novelty of the approach and their potential impact, or on their novel capability to predict and elucidate experimental observations.
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