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纳米传感器阵列的涌现特性:用于监测 IgG 亲和力分布、弱亲和性高甘露糖化和生物制造的集落选择的应用。

Emergent properties of nanosensor arrays: applications for monitoring IgG affinity distributions, weakly affined hypermannosylation, and colony selection for biomanufacturing.

机构信息

Department of Chemical Engineering, Massachusetts Institute of Technology , Cambridge, Massachusetts 02139, United States.

出版信息

ACS Nano. 2013 Sep 24;7(9):7472-82. doi: 10.1021/nn403215e. Epub 2013 Aug 15.

Abstract

It is widely recognized that an array of addressable sensors can be multiplexed for the label-free detection of a library of analytes. However, such arrays have useful properties that emerge from the ensemble, even when monofunctionalized. As examples, we show that an array of nanosensors can estimate the mean and variance of the observed dissociation constant (KD), using three different examples of binding IgG with Protein A as the recognition site, including polyclonal human IgG (KD μ = 19 μM, σ(2) = 1000 mM(2)), murine IgG (KD μ = 4.3 nM, σ(2) = 3 μM(2)), and human IgG from CHO cells (KD μ = 2.5 nM, σ(2) = 0.01 μM(2)). Second, we show that an array of nanosensors can uniquely monitor weakly affined analyte interactions via the increased number of observed interactions. One application involves monitoring the metabolically induced hypermannosylation of human IgG from CHO using PSA-lectin conjugated sensor arrays where temporal glycosylation patterns are measured and compared. Finally, the array of sensors can also spatially map the local production of an analyte from cellular biosynthesis. As an example, we rank productivity of IgG-producing HEK colonies cultured directly on the array of nanosensors itself.

摘要

人们普遍认为,一系列可寻址传感器可以被多路复用以实现对文库分析物的无标记检测。然而,即使是单功能化的,这种阵列也具有从整体中涌现出的有用特性。例如,我们展示了,通过将结合蛋白 A 的 IgG 作为识别位点的三个不同例子,包括多克隆人 IgG(KDμ=19μM,σ(2)=1000mM(2))、鼠 IgG(KDμ=4.3nM,σ(2)=3μM(2))和 CHO 细胞来源的人 IgG(KDμ=2.5nM,σ(2)=0.01μM(2)),纳米传感器阵列可以估计观察到的解离常数(KD)的平均值和方差。其次,我们展示了纳米传感器阵列可以通过增加观察到的相互作用数量来独特地监测弱亲和力分析物相互作用。一种应用涉及使用 PSA-凝集素偶联的传感器阵列监测代谢诱导的 CHO 来源人 IgG 的高甘露糖化,其中测量和比较了时间糖化模式。最后,传感器阵列还可以空间映射细胞生物合成中分析物的局部产生。例如,我们对直接在纳米传感器阵列上培养的 IgG 产生 HEK 集落的生产力进行了排序。

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