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Breakage of transgenic tobacco roots for monoclonal antibody release in an ultra-scale down shearing device

机译:转基因烟草根的断裂可在超大规模的剪切装置中释放单克隆抗体

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摘要

Transgenic tobacco roots offer a potential alternative to leaves for monoclonal antibody (MAb) production. A possible method for extraction of MAbs from roots is by homogenization, breaking the roots into fragments to release the antibody. This process was assessed by shearing 10 mm root sections (“roots”) in a 24 mL ultra-scale down shearing device, including an impeller with serrated blade edges, intended to mimic the action of a large-scale homogenizer. Size distributions of the remaining intact roots and root fragments were obtained as a function of shearing time. The data suggest that about 36% of the roots could not be broken under the prevailing conditions and, beyond these unbreakable roots, the fragmentation was approximately first order with respect to intact root number. It was postulated that root breakage in such a high shearing device was due to root-impeller collisions and the particle size data suggest that roots colliding with the impeller were completely fragmented into debris particles of the order of 0.1 mm in length. IgG release normalized to release by grinding appeared to lag behind the number of roots that had fragmented, suggesting that a process of leakage followed fragmentation in the ultra-scale down shearing device.
机译:转基因烟草的根部为叶片生产单克隆抗体(MAb)提供了潜在的替代方法。从根中提取单克隆抗体的一种可能方法是通过均质化,将根分解为片段以释放抗体。该过程是通过在24 µmL超尺度向下剪切装置(包括带有锯齿状叶片边缘的叶轮)中剪切10 µmm根段(“根”)来进行评估的,该叶轮旨在模仿大型均质机的作用。获得剩余完整根和根碎片的尺寸分布,作为剪切时间的函数。数据表明,在普遍条件下约36%的根无法断裂,除这些不可断裂的根外,相对于完整根数而言,碎片化大约是一阶。据推测,在这种高剪切装置中,根部断裂是由于根部-叶轮的碰撞所致,并且粒度数据表明,与叶轮碰撞的根部完全破碎成长度为0.1毫米的碎屑颗粒。归一化为通过研磨释放的IgG释放似乎落后于已碎裂的根的数量,这表明在超规模向下剪切装置中碎裂之后是泄漏的过程。

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