Development of a low-serum medium for the production of monoclonal antibody against congenital adrenal hyperplasia by hybridoma culture

G. K. Chua
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Abstract

ABSTRACT Statistically designed experiments were used in developing a low-serum medium for the production of a diagnostic monoclonal antibody against congenital adrenal hyperplasia using hybridoma 192. A two-level half-fractional factorial design was used for screening six components (Minimum Essential Medium Eagle amino acids, 2-mercaptoethanol, ethanolamine, ferric citrate, zinc sulfate, and sodium selenite). The experimental design was then augmented to central composite design. The basal Dulbecco’s modified Eagle’s medium (DMEM; containing 4 mM L-glutamine, 1% antibiotic–antimycotic agent) supplemented with 0.4% by volume fetal bovine serum (FBS), 311.8 mM ferric citrate, 17.3 nM sodium selenite, and 4.5 mM zinc sulfate (LSD) was found to support the growth of the hybridoma. Specific cell growth rate in the LSD (0.033 ± 0.001/h) was slightly lower than in the control medium (i.e., basal DMEM supplemented with 2% FBS; 0.0045 ± 0.003/h). Nevertheless, the specific MAb production rate for LSD was higher (0.057 ± 0.015 pg/cell · h versus 0.004 ± 0.002 pg/cell · h in LSD and control, respectively). The antibody produced in the LSD showed high specificity and no cross-reactivity with the other structural resemblance’s steroid hormones, revealing no structural changes owing to the new medium formulation developed. The new medium formulation effectively reduced the medium cost by up to 64.6%.
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用杂交瘤培养生产抗先天性肾上腺增生单克隆抗体的低血清培养基的研制
采用统计学设计的实验,开发了一种低血清培养基,用于生产针对先天性肾上腺增生的诊断性单克隆抗体。采用双水平半分数析因设计筛选6种成分(Minimum Essential Medium Eagle氨基酸、2-巯基乙醇、乙醇胺、柠檬酸铁、硫酸锌和亚硒酸钠)。然后将实验设计扩展为中心复合设计。基底Dulbecco 's改良Eagle 's培养基(DMEM;结果表明,添加0.4%胎牛血清(FBS)、311.8 mM柠檬酸铁、17.3 nM亚硒酸钠和4.5 mM硫酸锌(LSD)的培养基有利于杂杂瘤的生长。LSD中的特定细胞生长速率(0.033±0.001/h)略低于对照培养基(即在基础DMEM中添加2% FBS;0.0045±0.003/h)。然而,LSD的特异性MAb产生率更高(0.057±0.015 pg/cell·h,而LSD和对照组分别为0.004±0.002 pg/cell·h)。在LSD中产生的抗体具有高特异性,且与其他结构相似的类固醇激素无交叉反应性,表明新培养基配方未引起结构变化。新培养基配方有效降低培养基成本达64.6%。
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