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Development of a Generic Anti-PEG Antibody Assay Using BioScale’s Acoustic Membrane MicroParticle Technology

机译:利用BioScale的声学膜MicroParticle技术开发通用抗PEG抗体检测方法

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摘要

Immunogenicity testing for PEGylated biotherapeutics should include methods to detect both anti-protein and anti-PEG antibodies (anti-PEG). Although some methods have been published for the detection of anti-PEG antibodies, the information is incomplete and, in some cases, reagents used (such as Tween-20) are known to interfere with detection. This rapid communication describes the use of BioScale’s Acoustic Membrane MicroParticle (AMMP®) technology using the ViBE® Workstation to measure anti-PEG antibodies in human serum samples. Briefly, a sample spiked with monoclonal human IgG anti-PEG antibody is diluted in buffer and incubated with paramagnetic beads coated with linear chain mPEG to capture anti-PEG antibodies. The complex is then captured on an acoustic membrane coated with Protein A. The change in mass on the membrane caused by the binding of the complex to the membrane results in a signal proportional to the mass of anti-PEG antibodies. The data indicate that an assay with a sensitivity of less than 1000 ng/mL for IgG is achievable. This level of sensitivity is better than current published reports on IgG anti-PEG antibody detection.
机译:聚乙二醇化生物治疗药物的免疫原性测试应包括检测抗蛋白和抗PEG抗体(抗PEG)的方法。尽管已公开了一些检测抗PEG抗体的方法,但信息不完整,在某些情况下,已知使用的试剂(例如Tween-20)会干扰检测。这份快速的交流说明了使用ViScale®工作站通过BioScale的声学膜微颗粒(AMMP®)技术来测量人血清样品中的抗PEG抗体。简而言之,将掺有单克隆人源IgG抗PEG抗体的样品在缓冲液中稀释,并与涂有线性链mPEG的顺磁珠一起孵育以捕获抗PEG抗体。然后将复合物捕获在包有蛋白A的声膜上。由于复合物与膜的结合而引起的膜质量变化产生与抗PEG抗体质量成比例的信号。数据表明可以实现对IgG的灵敏度低于1000 ng / mL的测定。此灵敏度水平优于最新发表的有关IgG抗PEG抗体检测的报道。

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