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Stable production of a human growth hormone antagonist from CHO cellsadapted to serum-free suspension culture

机译:从适合无血清悬浮培养的CHO细胞稳定生产人生长激素拮抗剂

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摘要

Human growth hormone (hGH) is a polypeptide with 191 amino acids and a molecular mass of 22 kDa. An hGH analogue was created with a single amino acid substitution (glycine[G] 120 to arginine[R]) in the third alpha-helix of the hGH molecule. This hGH analogue, named hGHG120R, was found to be an hGH antagonist. It is a parenteral drug candidate for treating conditions in which hGH levels are abnormally high, as found in type I diabetics. Previously, a genetically engineered anchorage-dependent mouse L cell line was created that produced and secreted hGHG120R in culture media (Dulbecco's modified Eagle's medium, DMEM) supplemented with 5% NuSerum TV. A multistep downstream process was developed to purify hGHG120R. The process consisted of cell clarification, salt precipitation, membrane ultrafiltration, size exclusion chromatography, reversed phase high-performance liquid chromatography, phase separation, and lyophilization. Here, we present the development of a superior eukaryotic system using a proper combination of genetic elements, cell line, and media formulation. This system is suitable for the large-scale production of the recombinant protein and is superior to the previously developed system in that it increases the specific production rate and at the same time eases the burden of the purification process, in both time and efficiency. Dihydrofolate reductase mutant (DHFR-) Chinese hamster ovary (CHO) cells were used that were stably transfected with an expression vector in which the hGHG120R gene is driven by the relatively strong human cytomegalovirus-early gene regulatory region. The hGHG120R tested to be biologically active. These cells were then adapted to grow in suspension in CHO-S-SFM (serum-free media). High cell densities, typically 2.0 x 10(6) cells/mL were obtained from spinner flask cultures. Partial purification of hGHG120R from CHO cell cultured media revealed that the level of impurities in SFM was significantly lower than the serum-supplemented DMEM. This suggests that the salt precipitation and the SEC step need not be employed in the purification of hGHG120R from SFM. This would result in a reduction of the operating time by 50 h and boost the recovery yield of hGHG120R to 75%.
机译:人类生长激素(hGH)是具有191个氨基酸和22 kDa分子量的多肽。在hGH分子的第三个α-螺旋中创建了一个具有单个氨基酸取代(甘氨酸[G] 120为精氨酸[R])的hGH类似物。发现该名为hGHG120R的hGH类似物是hGH拮抗剂。如I型糖尿病患者那样,它是用于治疗hGH水平异常高的病症的肠胃外药物候选物。以前,已创建了一种基因工程改造的依赖锚固的小鼠L细胞系,该细胞系在补充了5%NuSerum TV的培养基(Dulbecco改良的Eagle培养基,DMEM)中产生并分泌了hGHG120R。开发了多步下游工艺以纯化hGHG120R。该过程包括细胞澄清,盐沉淀,膜超滤,尺寸排阻色谱,反相高效液相色谱,相分离和冻干。在这里,我们介绍了使用遗传元件,细胞系和培养基配方的适当组合开发的优质真核生物系统。该系统适用于大规模生产重组蛋白,并且优于先前开发的系统,因为它提高了比生产率,同时在时间和效率上减轻了纯化过程的负担。使用二氢叶酸还原酶突变体(DHFR-)中国仓鼠卵巢(CHO)细胞,该细胞被表达载体稳定转染,其中hGHG120R基因由相对较强的人巨细胞病毒-早期基因调控区驱动。 hGHG120R经测试具有生物活性。然后使这些细胞适应在CHO-S-SFM(无血清培养基)中的悬浮液中生长。从旋转瓶培养物中获得高细胞密度,通常为2.0 x 10(6)细胞/ mL。从CHO细胞培养基中对hGHG120R的部分纯化表明,SFM中的杂质水平显着低于补充血清的DMEM。这表明盐沉淀和SEC步骤不需要用于从SFM纯化hGHG120R。这将使操作时间减少50小时,并将hGHG120R的回收率提高到75%。

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