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A Systematic Investigation of Differential Effects of Cell Culture Substrates on the Extent of Artifacts in Single-Molecule Tracking

机译:细胞培养基材的不同影响对文物的单分子跟踪程度的一个系统的调查

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摘要

Single-molecule techniques are being increasingly applied to biomedical investigation, notwithstanding the numerous challenges they pose in terms of signal-to-noise ratio issues. Non-specific binding of probes to glass substrates, in particular, can produce experimental artifacts due to spurious molecules on glass, which can be particularly deleterious in live-cell tracking experiments. In order to resolve the issue of non-specific probe binding to substrates, we performed systematic testing of a range of available surface coatings, using three different proteins, and then extended our assessment to the ability of these coatings to foster cell growth and retain non-adhesive properties. Linear PEG, a passivating agent commonly used both in immobilized-molecule single-molecule techniques and in tissue engineering, is able to both successfully repel non-specific adhesion of fluorescent probes and to foster cell growth when functionalized with appropriate adhesive peptides. Linear PEG treatment results in a significant reduction of tracking artifacts in EGFR tracking with Affibody ligands on a cell line expressing EGFR-eGFP. The findings reported herein could be beneficial to a large number of experimental situations where single-molecule or single-particle precision is required.
机译:尽管单分子技术在信噪比问题上面临诸多挑战,但它们正越来越多地应用于生物医学研究。探针与玻璃基板的非特异性结合尤其会由于玻璃上的杂散分子而产生实验伪像,这在活细胞跟踪实验中尤其有害。为了解决非特异性探针与底物结合的问题,我们使用三种不同的蛋白质对一系列可用的表面涂层进行了系统测试,然后将评估范围扩展到这些涂层促进细胞生长并保留非离子表面活性的能力。粘合性能。线性PEG是一种在固定分子单分子技术和组织工程中常用的钝化剂,当用适当的粘合肽功能化时,它既可以成功地排斥荧光探针的非特异性粘附,又可以促进细胞生长。线性PEG处理可显着减少表达EGFR-eGFP的细胞系中Affibody配体的EGFR追踪中的追踪伪影。本文报道的发现对于需要单分子或单颗粒精度的大量实验情况可能是有益的。

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