CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Killer to cure: Expression and production costs calculation of tobacco plant-made cancer-immune checkpoint inhibitors.
Killer to cure: Expression and production costs calculation of tobacco plant-made cancer-immune checkpoint inhibitors.
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免疫检查点抑制剂(ICIs)已取得巨大的临床成功。然而,许多ICIs的缓解率仍然有限,且价格高昂。需要有效且可负担的ICIs,以及本地生产能力以提高可及性,尤其是对中低收入国家(LMICs)。
在此,我们成功在Nicotiana benthamiana和Nicotiana tabacum植物中瞬时表达了三种关键ICIs(anti-PD-1 Nivolumab、anti-NKG2A Monalizumab和anti-LAG-3 Relatimab)。这些ICIs以不同Fc区和糖基化谱的组合进行表达。
我们对它们进行了表征,包括蛋白积累水平、靶细胞结合、与人新生儿Fc受体(hFcRn)、人补体成分C1q(hC1q)及多种Fcγ受体的结合,以及在100 mg和kg规模纯化过程中的蛋白回收率。结果发现,所有ICIs均与预期靶细胞结合。
此外,纯化过程中的回收率以及Fcγ受体结合可根据所用Fc区和糖基化谱而改变。这为利用这两个参数精细调整ICIs以获得所需效应功能提供了可能性。还基于假设的高收入和低收入国家的两种生产场景,生成了基于情景的生产成本模型。
我们表明,植物生产平台的产品积累和回收率与哺乳动物细胞平台同样具有竞争力。这凸显了植物在提供更可负担且更易广泛市场获取的ICIs方面的潜力,包括LMICs。
Immune checkpoint inhibitors (ICIs) have achieved huge clinical success.
However, many still have limited response rates, and are prohibitively costly. There is a need for effective and affordable ICIs, as well as local manufacturing capacity to improve accessibility, especially to low-to-middle income countries (LMICs).
Here, we have successfully expressed three key ICIs (anti-PD-1 Nivolumab, anti-NKG2A Monalizumab, and anti-LAG-3 Relatimab) transiently in Nicotiana benthamiana and Nicotiana tabacum plants. The ICIs were expressed with a combination of different Fc regions and glycosylation profiles.
They were characterized in terms of protein accumulation levels, target cell binding, binding to human neonatal Fc receptors (hFcRn), human complement component C1q (hC1q) and various Fcγ receptors, as well as protein recovery during purification at 100 mg- and kg-scale. It was found that all ICIs bound to the expected target cells.
Furthermore, the recovery during purification, as well as Fcγ receptor binding, can be altered depending on the Fc region used and the glycosylation profiles. This opens the possibility of using these two parameters to fine-tune the ICIs for desired effector functions. A scenario-based production cost model was also generated based on two production scenarios in hypothetical high- and low-income countries.
We have shown that the product accumulation and recovery of plant production platforms were as competitive as mammalian cell-based platforms. This highlights the potential of plants to deliver ICIs that are more affordable and accessible to a widespread market, including LMICs.
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