Müthing Johannes, Kemminer Sven E, Conradt Harald S, Sagi Dijana, Nimtz Manfred, Kärst Uwe, Peter-Katalinić Jasna
Institute for Medical Physics and Biophysics, Laboratory for Biomedical Analysis, University of Münster, D-48149 Münster, Germany.
Biotechnol Bioeng. 2003 Aug 5;83(3):321-34. doi: 10.1002/bit.10673.
R24, a mouse IgG3 monoclonal antibody (MAb) against ganglioside GD3 (Neu5Acalpha8Neu5Acalpha3Gal beta4Glcbeta1Cer), can block tumor growth as reported in a series of clinical trials in patients with metastatic melanoma. The IgG molecule basically contains an asparagine-linked biantennary complex type oligosaccharide on the C(H)2 domain of each heavy chain, which is necessary for its in vivo effector function. The purpose of this study was to investigate the biotechnological production and particularly the glycosylation of this clinically important MAb in CO(2)/HCO(3) (-) (pH 7.4, 7.2, and 6.9) and HEPES buffered serum-free medium. Growth, metabolism, and IgG production of hybridoma cells (ATCC HB-8445) were analyzed on a 2-L bioreactor scale using fed-batch mode. Specific growth rates (mu) and MAb production rates (q(IgG)) varied significantly with maximum product yields at pH 6.9 (q(IgG) = 42.9 microg 10(-6) cells d(-1), mu = 0.30 d(-1)) and lowest yields in pH 7.4 adjusted batches (q(IgG) = 10.8 microg 10(-6) cells d(-1), mu = 0.40 d(-1)). N-glycans were structurally characterized by high pH anion exchange chromatography with pulsed amperometric detection (HPAEC-PAD), matrix-assisted laser desorption ionization time-of-flight (MALDI-TOF), and electrospray-ionization quadrupole time-of-flight (ESI-QTOF) mass spectrometry (MS). The highest relative amounts of agalacto and monogalacto biantennary complex type oligosaccharides were detected in the pH 7.2 (46% and 38%, respectively) and pH 6.9 (44% and 40%, respectively) cultivations and the uppermost quantities of digalacto (fully galactosylated) structures in the pH 7.4 (32%) and the HEPES (26%) buffered fermentation. In the experiments with HEPES buffering, antibodies with a molar Neu5Ac/Neu5Gc ratio of 3.067 were obtained. The fermentations at pH 7.2 and 6.9 resulted in almost equal molar Neu5Ac/Neu5Gc ratios of 1.008 and 0.985, respectively, while the alkaline shift caused a moderate overexpression of Neu5Ac deduced from the Neu5Ac/Neu5Gc quotient of 1.411. Different culture buffering gave rise to altered glycosylation pattern of the MAb R24. Consequently, a detailed molecular characterization of MAb glycosylation is generally recommended as a part of the development of MAbs for targeted in vivo immunotherapy to assure biochemical consistency of product lots and oligosaccharide-dependent biological activity.
R24是一种针对神经节苷脂GD3(Neu5Acalpha8Neu5Acalpha3Gal beta4Glcbeta1Cer)的小鼠IgG3单克隆抗体(MAb),在一系列转移性黑色素瘤患者的临床试验中,它能够抑制肿瘤生长。IgG分子在每条重链的C(H)2结构域上基本都含有一个天冬酰胺连接的双触角复合型寡糖,这对其体内效应功能至关重要。本研究的目的是调查这种具有临床重要性的单克隆抗体在CO(2)/HCO(3) (-)(pH 7.4、7.2和6.9)以及HEPES缓冲的无血清培养基中的生物技术生产情况,特别是其糖基化情况。使用补料分批培养模式,在2升生物反应器规模上分析杂交瘤细胞(ATCC HB - 8445)的生长、代谢和IgG产生情况。比生长速率(μ)和单克隆抗体产生速率(q(IgG))随pH值变化显著,在pH 6.9时产品产量最高(q(IgG) = 42.9微克10(-6)细胞d(-1),μ = 0.30 d(-1)),而在pH 7.4调节的批次中产量最低(q(IgG) = 10.8微克10(-6)细胞d(-1),μ = 0.40 d(-1))。通过高pH阴离子交换色谱 - 脉冲安培检测(HPAEC - PAD)、基质辅助激光解吸电离飞行时间(MALDI - TOF)和电喷雾电离四极杆飞行时间(ESI - QTOF)质谱(MS)对N - 聚糖进行结构表征。在pH 7.2(分别为46%和38%)和pH 6.9(分别为44%和40%)培养中检测到最高相对含量的无半乳糖和单半乳糖双触角复合型寡糖,在pH 7.4(32%)和HEPES(26%)缓冲发酵中检测到最高含量的双半乳糖(完全半乳糖基化)结构。在使用HEPES缓冲的实验中,获得了摩尔Neu5Ac/Neu5Gc比率为3.067的抗体。pH 7.2和6.9的发酵分别产生了几乎相等的摩尔Neu5Ac/Neu5Gc比率,即1.008和0.985,而碱性偏移导致从Neu5Ac/Neu5Gc商数1.411推断出Neu5Ac适度过表达。不同的培养缓冲导致单克隆抗体R24的糖基化模式改变。因此,一般建议对单克隆抗体糖基化进行详细的分子表征,作为开发用于靶向体内免疫治疗的单克隆抗体的一部分,以确保产品批次的生化一致性和寡糖依赖性生物活性。