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Transmission electron microscopy as an orthogonal method to characterize protein aggregates

机译:透射电子显微镜作为表征蛋白质聚集体的正交方法

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摘要

Aggregation of protein-based therapeutics is a challenging problem in the biopharmaceutical industry. Of particular concern are implications for product efficacy and clinical safety due to potentially increased immunogenicity of the aggregates. We used transmission electron microscopy (TEM) to characterize biophysical and morphological features of antibody aggregates formed upon controlled environmental stresses. TEM results were contrasted with results obtained in parallel by independent methods, including size exclusion chromatography, dynamic light scattering, microflow imaging and nanoparticle tracking. For TEM, stressed samples were imaged by negative staining and in the frozen-hydrated state. In both cases, aggregates appeared amorphous but differed in fine structural detail. Specifically, negatively stained aggregates were compact and consisted of smaller globular structures that had a notable three dimensional character. Elements of the native IgG structure were retained, suggesting that the aggregates were not assembled from denatured protein. In contrast, aggregates in frozen-hydrated samples appeared as extended, branched protein networks with large surface area. Using multiple scales of magnification, a wide range of particle sizes was observed and semi-quantitatively characterized. The detailed information provided by TEM extended observations obtained with the independent methods, demonstrating the suitability of TEM as a complementary approach to submicron particle analysis.
机译:基于蛋白质的治疗剂的聚集是生物制药工业中的挑战性问题。由于聚集体的潜在免疫原性增加,对产品功效和临床安全性的影响尤为令人关注。我们使用透射电子显微镜(TEM)来表征在受控环境压力下形成的抗体聚集体的生物物理和形态特征。 TEM结果与通过独立方法(包括尺寸排阻色谱,动态光散射,微流成像和纳米颗粒跟踪)并行获得的结果进行了对比。对于TEM,应力样品通过负染色并在冷冻水合状态下成像。在这两种情况下,聚集体均表现为无定形,但在精细的结构细节上有所不同。具体而言,负染色的聚集体是致密的,由具有明显三维特征的较小球状结构组成。天然IgG结构的元件被保留,表明聚集体不是由变性蛋白组装而成。相反,冷冻水合样品中的聚集体表现为扩展的,具有大表面积的分支蛋白网络。使用多个缩放比例,可以观察到很宽的粒径范围,并且可以进行半定量表征。 TEM提供的详细信息扩展了使用独立方法获得的观测值,表明TEM适合作为亚微米颗粒分析的补充方法。

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