Percivia LLC, Cambridge, MA 02135, USA.
MAbs. 2009 Mar-Apr;1(2):163-71. doi: 10.4161/mabs.1.2.7945. Epub 2009 Mar 24.
Natural IgM antibodies play an important role in the body's defense mechanisms against transformed cells in the human body and are currently being exploited both in prognoses of malignant lesions and in the therapy of cancer patients. However, despite growing interest and clinical promise, thus far the IgM class of antibodies has failed to gain widespread commercial interest as these are considered to be difficult to produce recombinantly. IgMs are polymeric and have a relatively large mass. In addition, IgM molecules are heavily glycosylated and, when produced in non-human cell lines, they may contain non-human glycan structures which may be potentially immunogenic. Clearly, production systems capable of expressing human recombinant IgM antibodies are needed. We have successfully used PER.C6 cells-a human cell line-to generate three separate human recombinant monoclonal IgMs in suspension cultures in protein-free medium. All three of the IgMs were constructed with joining (J) chain and were expressed in the pentameric form. One of the IgMs was also expressed as a hexamer without J chain. Clones with cell specific productivities greater than 20 pg/cell/day were generated, which led to yields of 0.5 g/L to 2g/L in fed-batch production. All the IgMs expressed were biologically active as shown in binding and cytotoxicity assays. These studies demonstrate the potential of PER.C6 cells for the production of high levels of functional recombinant IgM and other polymeric molecules, using a straightforward and rapid stable cell line generation method.
天然 IgM 抗体在人体防御机制中发挥着重要作用,可以针对人体内的转化细胞,目前已被广泛用于恶性病变的预后和癌症患者的治疗。然而,尽管人们越来越感兴趣并具有临床应用前景,但迄今为止,IgM 类抗体并未获得广泛的商业关注,因为人们认为此类抗体难以通过重组方式产生。IgM 是多聚体,分子量相对较大。此外,IgM 分子高度糖基化,当在非人类细胞系中产生时,可能含有潜在免疫原性的非人类糖基结构。显然,需要能够表达人源重组 IgM 抗体的生产系统。我们已成功地使用 PER.C6 细胞(一种人细胞系)在无蛋白培养基的悬浮培养中生成三种独立的人源重组单克隆 IgM。所有三种 IgM 均带有连接(J)链,并以五聚体形式表达。其中一种 IgM 也以无 J 链的六聚体形式表达。生成了细胞特异性产物大于 20 pg/细胞/天的克隆,这导致在补料分批生产中达到 0.5 g/L 至 2 g/L 的产量。所有表达的 IgM 在结合和细胞毒性测定中均表现出生物活性。这些研究表明,PER.C6 细胞具有生产高水平功能性重组 IgM 和其他多聚体分子的潜力,采用简单快速的稳定细胞系生成方法。